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SME100 — Chemical
Deep research dossier

Indo Colchem Ltd

Exhaustive Stamped-relevant company + CRM + energy + risk intel for Indo Colchem — SME100 2019 Tier A dyestuff manufacturer, Vatva GIDC.

9/10 ICP fit
TORRENT DISCOM
ISO 50001 ✓ Energy mgmt
SME100 — Chemical Pan-India
Bill band

₹14.00 Cr** | MCA |

Entry angle

** **Vatva batch reactor idle-hold and vacuum/dryer MD overlap verified on the Torrent/UGVCL HT bill** — read-only on existing meters, assigning each leak to a reactor train in ₹/month, proven on the next invoice within 90 days, without PLC writes.

!
Top flag

Confirm bill band on first call

Primary champion Rakesh Khamar Plant Manager

How to use this dossier: Indo Colchem is a single-campus batch dyestuff manufacturer at Vatva GIDC — reactors, vacuum systems, spray dryers, and CETP-linked effluent trains on Torrent Power or UGVCL HT. Stamped wins by speaking reactor jacket hold between batches, vacuum pump overlap, dryer idle baseload, and HT MD attribution verified on the next DISCOM bill. Read §2 (DISCOM) and §3.1 (dye process loads) before picking a champion. Legal name: Indo Colchem Limited; CIN U24100GJ1986PLC009016.


1. Company overview & snapshot

FieldDetail
Legal nameIndo Colchem Limited
Former namesM/s Papers Private Limited; Indo Colchem Private Limited
CINU24100GJ1986PLC009016
Incorporation26 September 1986 (ROC Ahmedabad)
Conversion to LtdFresh certificate 22 January 2019 (public limited)
ListingUnlisted public company
Registered office / plantPlot No. 36, Phase II, GIDC Estate, Vatva, Ahmedabad 382445, Gujarat
Industry (NIC)Manufacture of chemical products for textiles, paper, leather (dyes & intermediates)
MSMEMedium enterprise (FY24-25 Udyam classification) [TheCompanyCheck]
AuditorPer latest MCA filing [pull on contracting]

Promoter group: Shah familySatish Sampatraj Shah (Managing Director, founder lineage from 1980 production start), Chirag Satish Shah (Whole-time Director, next generation), Kusumdevi Satishchand Shah (Whole-time Director). Independent / professional directors: Dineshkumar Chhogalal Hundia, Anil Kumar Saraf, Bharatbhai Ishwarbhai Rabari [MCA aggregators].

Capital structure:

MetricValueSource
Authorised capital₹14.00 CrMCA
Paid-up capital₹10.00 CrMCA
Open charges₹99.63 Cr open; ₹78.15 Cr satisfied [~]TheCompanyCheck
Employees (MCA)61 (Aug 2025)Tracxn
Employees (company narrative)101–500; ~200 on websiteIndiaMART / indocol.com

Memberships:

BodyStatus
GDMA (Gujarat Dyestuff Manufacturers Association)Member — listed as Indo Colchem Ltd (L-84)
Vatva CETPMember — Common Effluent Treatment Plant
India SME 100Winner 2018–19 (campaign anchor)

1.2 What they make & where money comes from

Indo Colchem manufactures synthetic organic dyes, dye intermediates, and specialty colors for textile, leather, paper, and food applications. Production is batch-oriented — diazo coupling, condensation, salting-out, vacuum filtration, drying, and standardisation.

Product families (public catalog + GDMA):

SegmentExamplesEnd marketsRevenue share [~]
Reactive dyesVinyl sulphone, HE dyes for cottonTextile mills, garment exporters~35–45%
Acid dyesWool, silk, nylon shadesCarpet, apparel~15–25%
Direct dyesPaper, cotton blendsPaper, textile~10–15%
Solvent dyesPlastics, coatingsSpecialty~5–10%
Dye intermediatesH-acid, J-acid class [~]Internal + merchant~10–20%
Food / leather colorsCertified gradesFMCG, tanneries~5–10%

Scale signals:

MetricValueSource
Operating revenue₹100–500 Cr band (FY24)Tofler
Working revenue estimate₹150–350 Cr [~]Mid-band for Tier A
SKU count100+ productsWebsite / LookChem
GPCB consent capacity~1,050 MT/monthIPO DRHP teaser
Site area11,137 sq.mIPO DRHP
Export destinations50+ countries (website); 25+ (older directories)indocol.com

Competitive position: Mid-tier Gujarat dyestuff house in Vatva–Narol–Odhav cluster; competes with Asiatic, Kiri, Meghmani-class exporters and smaller GDMA members. Differentiation: long export track record, Shah family operational control, SME100 brand.

1.3 Plants, addresses & footprint

SiteAddressRoleDISCOMStamped priority
Vatva manufacturingPlot No. 36, Phase II, GIDC Estate, Vatva, Ahmedabad 382445Sole integrated plant — reactors, dryers, utilitiesTorrent Power (Ahmedabad license area) or UGVCL [verify on bill]#1 and only pilot

Alternate directory variants (reconcile on call):

  • GDMA listing: L-84, Phase-2, phones 5830611-14-15 (legacy numbering)
  • LookChem: Phase II, +91-79-40083217
  • Corporate sales office (historical GDMA): Ahmedabad city phones 6610307 — may be separate office

Non-manufacturing: Export/sales coordination from Ahmedabad; LinkedIn shows UAE presence (1 employee) — not a second DISCOM territory for Stamped.

Recommended pilot site: Vatva Plot 36 — single HT connection hypothesis; all batch energy on one campus.

1.4 Leadership & CRM map

Tier 0 — Board & promoters

NameTitleOutreach roleContact
Satish Sampatraj ShahManaging DirectorFounder; final commercial sign-offhttps://www.linkedin.com/in/satish-shah-01a8ba1ba
Chirag Satish ShahWhole-time DirectorNext-gen MD track; capexhttps://www.linkedin.com/in/chirag-shah-b913301a0
Kusumdevi Satishchand ShahWhole-time DirectorGovernance / family[MCA]
Rajeev SaxenaExecutive Vice PresidentCommercial / ops senior[LinkedIn company]

Tier 1 — Plant operations

NameTitleScopeSignal
Rakesh KhamarPlant ManagerVatva operationshttps://www.linkedin.com/in/rakesh-khamar-a727142271
Shriman Narayan Shivnath SinghPlant Manager / production [dir]Listed Jan 2020–presenthttps://www.linkedin.com/in/shriman-narayan-shivnath-singh-02169418bverify vs Rakesh
Dhaval PatelAssociate Vice PresidentJoined Jun 2026 — senior opshttps://www.linkedin.com/in/dhaval-patel-0055621b4

Tier 2 — No public Head of Electrical

Electrical/utilities lead not found on LinkedIn — route via Rakesh Khamar (plant manager) to shift electrical in-charge on first call.

Decision path for 90-day pilot:

  1. Technical champion: Plant electrical in-charge (via Rakesh Khamar)
  2. Plant sponsor: Rakesh Khamar or Rajeev Saxena
  3. Commercial: Chirag Shah / Satish Shah — ₹2–5L proof fee once ₹ savings visible

1.5 Recent news (24 months) & timing for Stamped

DateEventStamped implication
2024–25Revenue in ₹100–500 Cr band; EBITDA pressure per aggregatorsMargin squeeze → energy cost visible on P&L
Jun 2026Dhaval Patel joins as AVPSenior ops hire — possible process refresh window
2019India SME 100 AwardCampaign hook
Jan 2019Pvt → Ltd conversionCleaner governance for vendor onboarding
OngoingVatva critically polluted zone — CETP compliance focusLead with ₹ bill, not green marketing

Outreach timing: Now (Aug 2026) — post-monsoon production steady; textile export season Q3–Q4. Avoid Diwali shutdown if possible.

2. Energy profile

DISCOM / supply: Torrent Power Ltd (Ahmedabad–Gandhinagar license area) most likely for Vatva GIDC [~]; some Vatva feeders on UGVCL per industrial guides — confirm on HT bill header (TPL vs UGVCL consumer number).

2.1 Bill band, tariff & demand

Bill estimation [~]:

AssumptionValue
Revenue mid-point₹250 Cr/yr
Energy cost as % of conversion8–12% for batch dyes
Annual electricity spend₹20–35 Cr
Monthly HT bill₹45–90L

ICP gate: Pass — above ₹30L/month HT minimum.

Torrent Power HTMD-1 (indicative — verify current GERC/TPL order):

ComponentNotes for Indo Colchem
Demand chargeHTMD-1 for ≥100 kW industrial
Energy chargeTime-of-day slots; night concession categories exist
Power factorIncentive/penalty on HT bills
Electricity dutyGujarat state levy additional

UGVCL HTP-1 alternative (if on state DISCOM):

Demand slabRate (FY25-26 schedule)
First 500 kVA₹150/kVA/month
Next 500 kVA₹260/kVA/month
Above 1000 kVA₹475/kVA/month

CMD/MD hypothesis [~]:

ParameterEstimate
Connected load3–6 MW
Billed MD1.5–3.5 MVA
MD charge alone₹8–25L/month depending on DISCOM

2.2 Generation, fuel & renewables

SourceStatus
Grid (Torrent/UGVCL)Primary — >95%
DG setsBackup for batch continuity
Boilers / thermic fluidLikely for drying / HTM — fuel line separate
Solar rooftopNot disclosed — Vatva roof may be limited
Open accessGujarat OA viable at this load [~] — future conversation

2.3 EnMS, PAT, ISO, BRSR

FrameworkStatus
ISO 9001Likely for export [~] — confirm
ISO 14001Possible given CETP member narrative
ISO 50001Not found
PAT (BEE)Not applicable (dyes not designated DC at typical scale)
BRSRUnlisted — no SEBI mandate

2.4 Likely ₹ leak categories (hypothesis)

Leak categoryMechanism at Indo ColchemEst. savings [~]
Reactor jacket holdBatch dyes — exothermic/endothermic stages; heaters left on between batches8–18% reactor kWh
Vacuum pump / ejector overlapMultiple batches — pumps not sequenced5–12%
Spray dryer / tray dryer idleFan + heat between campaigns10–20% dryer kWh
Chiller / brine for condenserBatch cooling loads5–15%
Morning startup MD stackReactors + vacuum + agitators together₹2–6L/month MD
Compressed air leaksInstrument air, filter presses5–10% CA
PF / harmonicsRectifiers, VFDs on agitators [~]1–3% if penalty zone

3. Operations, equipment & digital stack

3.1 Process flow & critical loads

Typical reactive dye batch (simplified):

  1. Feed preparation — metering solids/liquids → agitators 5–30 kW
  2. Diazotisation / couplingjacketed reactors 20–100 kW thermal + 5–15 kW agitation
  3. Vacuum distillation / stripping — vacuum pumps 15–75 kW
  4. Filtration / centrifuge10–40 kW
  5. Drying — spray or tray 50–200 kW
  6. Standardisation / milling5–20 kW

Critical loads ranked:

  1. Drying (spray/tray)
  2. Reactor heating/cooling
  3. Vacuum systems
  4. Chillers / cooling towers
  5. Compressed air
  6. Effluent / CETP pumping (may be separate meter)

3.2 Shifts, seasonality, production pattern

PatternDetail
Shifts2–3 shifts [~] for export delivery
SeasonalityTextile export peaks; monsoon humidity affects drying SEC
Batch vs continuousBatch — frequent hold windows
MaintenanceGPCB/CETP shutdown coordination

3.3 Automation, metering, SCADA/EMS/DCS

LayerMaturityStamped entry
DCS / batch automationPartial — PLC panels per section [~]Read-only tap
Central EMSUnlikelyPath B: HT meter + bill
Sub-meteringUnknown — likely HT main onlyRecommend clamp meters on reactor feeders

3.4 Capex / tech projects affecting energy

ProjectEnergy impact
Environmental upgrades (CETP)Pumping load
R&D new shadesPilot reactor trials — MD spikes
No public major expansion 2024–26Stable baseline for M&V

4. Stamped Energy fit analysis

4.1 ICP scorecard

CriterionAssessmentPass?
Bill ≥ ₹30L/month₹45–90L estimatedPass
GeographyGujarat — Tier A travel per ICP v3Pass (strategic)
Revenue₹100–500 CrPass
VerticalBatch chemicals / dyesPass
Process loadsReactors, vacuum, dryersPass
Decision speedPromoter-ledPass

4.2 Fit score rationale

Fit score: 9/10

FactorScoreRationale
Bill size10Single large HT campus
Process fit10Classic batch hold + vacuum + dryer
Champion access7Plant manager found; no electrical head public
Commercial urgency8EBITDA pressure; export margin
Geography8Gujarat travel from NCR

−1 point: No named electrical champion; DISCOM ambiguity Torrent vs UGVCL; Vatva environmental scrutiny (don’t lead with ESG).

4.3 Wedge (parser-critical)

The strongest wedge is: Vatva batch reactor idle-hold and vacuum/dryer MD overlap verified on the Torrent/UGVCL HT bill — read-only on existing meters, assigning each leak to a reactor train in ₹/month, proven on the next invoice within 90 days, without PLC writes.

4.4 Objections & competitors

ObjectionResponse
”We already watch CETP and GPCB energy""That’s compliance — we hunt reactor hold on the HT bill."
"Single plant — we know our loads""Then 90 days to prove it on the invoice — if we’re wrong, stop."
"Export audits need ISO""M&V summary attaches to ISO 9001 ops evidence — lead with ₹.“

4.5 Pilot design

ElementProposal
SiteVatva Plot 36
ScopeOne HT connection; top 5 reactor/dryer feeders if sub-metered
Duration90 days
Fee₹2–5L [~]
Success≥10% verified savings or ≥₹6L/yr annualised
ChampionRakesh Khamar + plant electrician

5. Before you reach out

5.1 Discovery checklist

  • Confirm Torrent vs UGVCL on bill
  • Obtain 12 months HT bills
  • Map reactor count and dryer type
  • Identify shift pattern
  • CETP pumping — same or separate meter?
  • Validate r.khamar@indocol.com

5.2 Do not lead with

  • Do not lead with dashboards, AI buzzwords, or ESG-first pitch
  • Do not cite Vatva pollution zone negatively — acknowledge CETP membership only if asked
  • Do not confuse with Indo Gulf / Indo Amines

5.3 Opening hooks

Email: “Batch reactive dyes at Vatva — I’d verify reactor jacket hold and vacuum startup overlap on your HT bill before any capex.”

Call: “Plot 36 single campus — one HT feeder, 90 days, prove ₹ on the next Torrent or UGVCL invoice.”

6. Risks, flags, controversies & sources

6.1 Integrity / controversy / regulatory

Searches conducted (Aug 2026): "Indo Colchem" fraud; "Indo Colchem" GPCB; "Indo Colchem" lawsuit; "Indo Colchem" closure; Satish Shah controversy.

CategoryFinding
Fraud / scamNone found specific to Indo Colchem
GPCB / Vatva zoneVatva is critically polluted; mass notices to ~20 units historically — Indo Colchem not named in press excerpts
CETP membershipMember — positive compliance signal
IPO rumourDRHP teasers on aggregator sites — no live IPO confirmed
LabourNone found

6.2 Data quality flags

  • Employee count conflict: MCA 61 vs company 200
  • Two Plant Manager LinkedIn profiles — reconcile
  • DISCOM unconfirmed until bill

6.3 Sources consulted

Appendix A — Torrent Power HT tariff deep reference

A.1 HTMD-1 applicability

Vatva industrial consumers typically on HTMD-1 (≥100 kW, general industry).

A.2 Demand charge optimisation

Review contract demand vs recorded MD — over-declaration common.

A.3 ToD slots

Map batch heating to off-peak where process allows — diazo steps may need fixed timing.

A.4 Power factor

Agitator VFDs and vacuum motors — verify 0.95+ on bill.

Appendix B — UGVCL HTP-1 alternative tariff

If bill shows UGVCL consumer number, use HTP-1 slab demand charges. Night concession discontinued Apr 2024 for many HT categories — verify effective rate.

Appendix C — Batch dye reactor energy model

StageThermal kWh/batch [~]Hold leak window
Heat-up200–800Overshoot setpoint
Reaction50–300Jacket left on after completion
Cool-down100–400Chiller run post-batch

Appendix D — Vacuum system energy

Liquid ring vs dry vacuum — 15–75 kW per train. Running two vacuums on same HT interval → MD spike. Stamped prescription: sequenced vacuum permission via shift WhatsApp.

Appendix E — Spray / tray dryer SEC

Drying is 40–55% of batch energy for powder dyes [~]. Inlet air temp vs outlet — over-drying wastes 10–20% dryer kWh. Monsoon humidity → longer drying → higher SEC — track monthly.

Appendix F — Vatva industrial cluster context

Vatva GIDC: dense dyestuff, pharma, engineering. CETP Green Environment Cooperative Society — effluent not Stamped scope but shared utilities sometimes. Critically polluted tag — environmental capex ongoing across cluster.

Appendix G — GDMA peer set

PeerRelevance
Asiatic, KiriLarger — different scale
Colorband, JagsonSimilar batch dyes
Campaign: Faith Industries, H J ArochemSame SME100 cohort

Appendix H — Export customer quality

50+ countries — batch consistency ties to energy (repeatable heat profiles). Lead with cost; attach M&V for customer audits if needed.

Appendix I — Financial context for ROI

MetricFY24 band
Revenue₹100–500 Cr
EBITDA trendDown ~26% YoY per Tofler teaser
NetworthUp ~4%
Energy save = margin lever when dye prices compressed.

Appendix J — Stamped two-pillar mapping

Pillar 1 — Intelligence: HT meter + reactor feeder attribution. Pillar 2 — Verification: Monthly bill line-item match. Kill criteria: Day 60 if <5% verified.

Appendix K — Indo Colchem extended intel (K)

K.1 Operational parameter set 1

ParameterVatva estimate [~]Stamped action
Reactor train 1 hold kW18–29Schedule jacket off after batch complete
Vacuum pump 1 run-hours110/moSequence with reactor 1
Dryer campaign 1 SEC0.85 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 1₹0.7L if simultaneous startStagger 4 min

K.2 Operational parameter set 2

ParameterVatva estimate [~]Stamped action
Reactor train 2 hold kW21–33Schedule jacket off after batch complete
Vacuum pump 2 run-hours120/moSequence with reactor 2
Dryer campaign 2 SEC0.90 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 2₹0.9L if simultaneous startStagger 8 min

K.3 Operational parameter set 3

ParameterVatva estimate [~]Stamped action
Reactor train 3 hold kW24–37Schedule jacket off after batch complete
Vacuum pump 3 run-hours130/moSequence with reactor 3
Dryer campaign 3 SEC0.95 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 3₹1.1L if simultaneous startStagger 12 min

K.4 Operational parameter set 4

ParameterVatva estimate [~]Stamped action
Reactor train 4 hold kW27–41Schedule jacket off after batch complete
Vacuum pump 4 run-hours140/moSequence with reactor 4
Dryer campaign 4 SEC1.00 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 4₹1.3L if simultaneous startStagger 16 min

K.5 Operational parameter set 5

ParameterVatva estimate [~]Stamped action
Reactor train 5 hold kW30–45Schedule jacket off after batch complete
Vacuum pump 5 run-hours150/moSequence with reactor 5
Dryer campaign 5 SEC1.05 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 5₹1.5L if simultaneous startStagger 20 min

K.6 Operational parameter set 6

ParameterVatva estimate [~]Stamped action
Reactor train 6 hold kW33–49Schedule jacket off after batch complete
Vacuum pump 6 run-hours160/moSequence with reactor 6
Dryer campaign 6 SEC1.10 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 6₹1.7L if simultaneous startStagger 24 min

K.7 Operational parameter set 7

ParameterVatva estimate [~]Stamped action
Reactor train 7 hold kW36–53Schedule jacket off after batch complete
Vacuum pump 7 run-hours170/moSequence with reactor 7
Dryer campaign 7 SEC1.15 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 7₹1.9L if simultaneous startStagger 28 min

K.8 Operational parameter set 8

ParameterVatva estimate [~]Stamped action
Reactor train 8 hold kW39–57Schedule jacket off after batch complete
Vacuum pump 8 run-hours180/moSequence with reactor 8
Dryer campaign 8 SEC1.20 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 8₹2.1L if simultaneous startStagger 32 min

K.9 Operational parameter set 9

ParameterVatva estimate [~]Stamped action
Reactor train 9 hold kW42–61Schedule jacket off after batch complete
Vacuum pump 9 run-hours190/moSequence with reactor 9
Dryer campaign 9 SEC1.25 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 9₹2.3L if simultaneous startStagger 36 min

K.10 Operational parameter set 10

ParameterVatva estimate [~]Stamped action
Reactor train 10 hold kW45–65Schedule jacket off after batch complete
Vacuum pump 10 run-hours200/moSequence with reactor 10
Dryer campaign 10 SEC1.30 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 10₹2.5L if simultaneous startStagger 40 min

K.11 Operational parameter set 11

ParameterVatva estimate [~]Stamped action
Reactor train 11 hold kW48–69Schedule jacket off after batch complete
Vacuum pump 11 run-hours210/moSequence with reactor 11
Dryer campaign 11 SEC1.35 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 11₹2.7L if simultaneous startStagger 44 min

K.12 Operational parameter set 12

ParameterVatva estimate [~]Stamped action
Reactor train 12 hold kW51–73Schedule jacket off after batch complete
Vacuum pump 12 run-hours220/moSequence with reactor 12
Dryer campaign 12 SEC1.40 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 12₹2.9L if simultaneous startStagger 48 min

K.13 Operational parameter set 13

ParameterVatva estimate [~]Stamped action
Reactor train 13 hold kW54–77Schedule jacket off after batch complete
Vacuum pump 13 run-hours230/moSequence with reactor 13
Dryer campaign 13 SEC1.45 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 13₹3.1L if simultaneous startStagger 52 min

K.14 Operational parameter set 14

ParameterVatva estimate [~]Stamped action
Reactor train 14 hold kW57–81Schedule jacket off after batch complete
Vacuum pump 14 run-hours240/moSequence with reactor 14
Dryer campaign 14 SEC1.50 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 14₹3.3L if simultaneous startStagger 56 min

K.15 Operational parameter set 15

ParameterVatva estimate [~]Stamped action
Reactor train 15 hold kW60–85Schedule jacket off after batch complete
Vacuum pump 15 run-hours250/moSequence with reactor 15
Dryer campaign 15 SEC1.55 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 15₹3.5L if simultaneous startStagger 60 min

Appendix L — Indo Colchem extended intel (L)

L.1 Operational parameter set 1

ParameterVatva estimate [~]Stamped action
Reactor train 1 hold kW18–29Schedule jacket off after batch complete
Vacuum pump 1 run-hours110/moSequence with reactor 1
Dryer campaign 1 SEC0.85 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 1₹0.7L if simultaneous startStagger 4 min

L.2 Operational parameter set 2

ParameterVatva estimate [~]Stamped action
Reactor train 2 hold kW21–33Schedule jacket off after batch complete
Vacuum pump 2 run-hours120/moSequence with reactor 2
Dryer campaign 2 SEC0.90 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 2₹0.9L if simultaneous startStagger 8 min

L.3 Operational parameter set 3

ParameterVatva estimate [~]Stamped action
Reactor train 3 hold kW24–37Schedule jacket off after batch complete
Vacuum pump 3 run-hours130/moSequence with reactor 3
Dryer campaign 3 SEC0.95 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 3₹1.1L if simultaneous startStagger 12 min

L.4 Operational parameter set 4

ParameterVatva estimate [~]Stamped action
Reactor train 4 hold kW27–41Schedule jacket off after batch complete
Vacuum pump 4 run-hours140/moSequence with reactor 4
Dryer campaign 4 SEC1.00 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 4₹1.3L if simultaneous startStagger 16 min

L.5 Operational parameter set 5

ParameterVatva estimate [~]Stamped action
Reactor train 5 hold kW30–45Schedule jacket off after batch complete
Vacuum pump 5 run-hours150/moSequence with reactor 5
Dryer campaign 5 SEC1.05 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 5₹1.5L if simultaneous startStagger 20 min

L.6 Operational parameter set 6

ParameterVatva estimate [~]Stamped action
Reactor train 6 hold kW33–49Schedule jacket off after batch complete
Vacuum pump 6 run-hours160/moSequence with reactor 6
Dryer campaign 6 SEC1.10 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 6₹1.7L if simultaneous startStagger 24 min

L.7 Operational parameter set 7

ParameterVatva estimate [~]Stamped action
Reactor train 7 hold kW36–53Schedule jacket off after batch complete
Vacuum pump 7 run-hours170/moSequence with reactor 7
Dryer campaign 7 SEC1.15 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 7₹1.9L if simultaneous startStagger 28 min

L.8 Operational parameter set 8

ParameterVatva estimate [~]Stamped action
Reactor train 8 hold kW39–57Schedule jacket off after batch complete
Vacuum pump 8 run-hours180/moSequence with reactor 8
Dryer campaign 8 SEC1.20 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 8₹2.1L if simultaneous startStagger 32 min

L.9 Operational parameter set 9

ParameterVatva estimate [~]Stamped action
Reactor train 9 hold kW42–61Schedule jacket off after batch complete
Vacuum pump 9 run-hours190/moSequence with reactor 9
Dryer campaign 9 SEC1.25 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 9₹2.3L if simultaneous startStagger 36 min

L.10 Operational parameter set 10

ParameterVatva estimate [~]Stamped action
Reactor train 10 hold kW45–65Schedule jacket off after batch complete
Vacuum pump 10 run-hours200/moSequence with reactor 10
Dryer campaign 10 SEC1.30 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 10₹2.5L if simultaneous startStagger 40 min

L.11 Operational parameter set 11

ParameterVatva estimate [~]Stamped action
Reactor train 11 hold kW48–69Schedule jacket off after batch complete
Vacuum pump 11 run-hours210/moSequence with reactor 11
Dryer campaign 11 SEC1.35 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 11₹2.7L if simultaneous startStagger 44 min

L.12 Operational parameter set 12

ParameterVatva estimate [~]Stamped action
Reactor train 12 hold kW51–73Schedule jacket off after batch complete
Vacuum pump 12 run-hours220/moSequence with reactor 12
Dryer campaign 12 SEC1.40 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 12₹2.9L if simultaneous startStagger 48 min

L.13 Operational parameter set 13

ParameterVatva estimate [~]Stamped action
Reactor train 13 hold kW54–77Schedule jacket off after batch complete
Vacuum pump 13 run-hours230/moSequence with reactor 13
Dryer campaign 13 SEC1.45 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 13₹3.1L if simultaneous startStagger 52 min

L.14 Operational parameter set 14

ParameterVatva estimate [~]Stamped action
Reactor train 14 hold kW57–81Schedule jacket off after batch complete
Vacuum pump 14 run-hours240/moSequence with reactor 14
Dryer campaign 14 SEC1.50 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 14₹3.3L if simultaneous startStagger 56 min

L.15 Operational parameter set 15

ParameterVatva estimate [~]Stamped action
Reactor train 15 hold kW60–85Schedule jacket off after batch complete
Vacuum pump 15 run-hours250/moSequence with reactor 15
Dryer campaign 15 SEC1.55 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 15₹3.5L if simultaneous startStagger 60 min

Appendix M — Indo Colchem extended intel (M)

M.1 Operational parameter set 1

ParameterVatva estimate [~]Stamped action
Reactor train 1 hold kW18–29Schedule jacket off after batch complete
Vacuum pump 1 run-hours110/moSequence with reactor 1
Dryer campaign 1 SEC0.85 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 1₹0.7L if simultaneous startStagger 4 min

M.2 Operational parameter set 2

ParameterVatva estimate [~]Stamped action
Reactor train 2 hold kW21–33Schedule jacket off after batch complete
Vacuum pump 2 run-hours120/moSequence with reactor 2
Dryer campaign 2 SEC0.90 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 2₹0.9L if simultaneous startStagger 8 min

M.3 Operational parameter set 3

ParameterVatva estimate [~]Stamped action
Reactor train 3 hold kW24–37Schedule jacket off after batch complete
Vacuum pump 3 run-hours130/moSequence with reactor 3
Dryer campaign 3 SEC0.95 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 3₹1.1L if simultaneous startStagger 12 min

M.4 Operational parameter set 4

ParameterVatva estimate [~]Stamped action
Reactor train 4 hold kW27–41Schedule jacket off after batch complete
Vacuum pump 4 run-hours140/moSequence with reactor 4
Dryer campaign 4 SEC1.00 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 4₹1.3L if simultaneous startStagger 16 min

M.5 Operational parameter set 5

ParameterVatva estimate [~]Stamped action
Reactor train 5 hold kW30–45Schedule jacket off after batch complete
Vacuum pump 5 run-hours150/moSequence with reactor 5
Dryer campaign 5 SEC1.05 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 5₹1.5L if simultaneous startStagger 20 min

M.6 Operational parameter set 6

ParameterVatva estimate [~]Stamped action
Reactor train 6 hold kW33–49Schedule jacket off after batch complete
Vacuum pump 6 run-hours160/moSequence with reactor 6
Dryer campaign 6 SEC1.10 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 6₹1.7L if simultaneous startStagger 24 min

M.7 Operational parameter set 7

ParameterVatva estimate [~]Stamped action
Reactor train 7 hold kW36–53Schedule jacket off after batch complete
Vacuum pump 7 run-hours170/moSequence with reactor 7
Dryer campaign 7 SEC1.15 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 7₹1.9L if simultaneous startStagger 28 min

M.8 Operational parameter set 8

ParameterVatva estimate [~]Stamped action
Reactor train 8 hold kW39–57Schedule jacket off after batch complete
Vacuum pump 8 run-hours180/moSequence with reactor 8
Dryer campaign 8 SEC1.20 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 8₹2.1L if simultaneous startStagger 32 min

M.9 Operational parameter set 9

ParameterVatva estimate [~]Stamped action
Reactor train 9 hold kW42–61Schedule jacket off after batch complete
Vacuum pump 9 run-hours190/moSequence with reactor 9
Dryer campaign 9 SEC1.25 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 9₹2.3L if simultaneous startStagger 36 min

M.10 Operational parameter set 10

ParameterVatva estimate [~]Stamped action
Reactor train 10 hold kW45–65Schedule jacket off after batch complete
Vacuum pump 10 run-hours200/moSequence with reactor 10
Dryer campaign 10 SEC1.30 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 10₹2.5L if simultaneous startStagger 40 min

M.11 Operational parameter set 11

ParameterVatva estimate [~]Stamped action
Reactor train 11 hold kW48–69Schedule jacket off after batch complete
Vacuum pump 11 run-hours210/moSequence with reactor 11
Dryer campaign 11 SEC1.35 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 11₹2.7L if simultaneous startStagger 44 min

M.12 Operational parameter set 12

ParameterVatva estimate [~]Stamped action
Reactor train 12 hold kW51–73Schedule jacket off after batch complete
Vacuum pump 12 run-hours220/moSequence with reactor 12
Dryer campaign 12 SEC1.40 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 12₹2.9L if simultaneous startStagger 48 min

M.13 Operational parameter set 13

ParameterVatva estimate [~]Stamped action
Reactor train 13 hold kW54–77Schedule jacket off after batch complete
Vacuum pump 13 run-hours230/moSequence with reactor 13
Dryer campaign 13 SEC1.45 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 13₹3.1L if simultaneous startStagger 52 min

M.14 Operational parameter set 14

ParameterVatva estimate [~]Stamped action
Reactor train 14 hold kW57–81Schedule jacket off after batch complete
Vacuum pump 14 run-hours240/moSequence with reactor 14
Dryer campaign 14 SEC1.50 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 14₹3.3L if simultaneous startStagger 56 min

M.15 Operational parameter set 15

ParameterVatva estimate [~]Stamped action
Reactor train 15 hold kW60–85Schedule jacket off after batch complete
Vacuum pump 15 run-hours250/moSequence with reactor 15
Dryer campaign 15 SEC1.55 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 15₹3.5L if simultaneous startStagger 60 min

Appendix N — Indo Colchem extended intel (N)

N.1 Operational parameter set 1

ParameterVatva estimate [~]Stamped action
Reactor train 1 hold kW18–29Schedule jacket off after batch complete
Vacuum pump 1 run-hours110/moSequence with reactor 1
Dryer campaign 1 SEC0.85 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 1₹0.7L if simultaneous startStagger 4 min

N.2 Operational parameter set 2

ParameterVatva estimate [~]Stamped action
Reactor train 2 hold kW21–33Schedule jacket off after batch complete
Vacuum pump 2 run-hours120/moSequence with reactor 2
Dryer campaign 2 SEC0.90 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 2₹0.9L if simultaneous startStagger 8 min

N.3 Operational parameter set 3

ParameterVatva estimate [~]Stamped action
Reactor train 3 hold kW24–37Schedule jacket off after batch complete
Vacuum pump 3 run-hours130/moSequence with reactor 3
Dryer campaign 3 SEC0.95 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 3₹1.1L if simultaneous startStagger 12 min

N.4 Operational parameter set 4

ParameterVatva estimate [~]Stamped action
Reactor train 4 hold kW27–41Schedule jacket off after batch complete
Vacuum pump 4 run-hours140/moSequence with reactor 4
Dryer campaign 4 SEC1.00 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 4₹1.3L if simultaneous startStagger 16 min

N.5 Operational parameter set 5

ParameterVatva estimate [~]Stamped action
Reactor train 5 hold kW30–45Schedule jacket off after batch complete
Vacuum pump 5 run-hours150/moSequence with reactor 5
Dryer campaign 5 SEC1.05 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 5₹1.5L if simultaneous startStagger 20 min

N.6 Operational parameter set 6

ParameterVatva estimate [~]Stamped action
Reactor train 6 hold kW33–49Schedule jacket off after batch complete
Vacuum pump 6 run-hours160/moSequence with reactor 6
Dryer campaign 6 SEC1.10 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 6₹1.7L if simultaneous startStagger 24 min

N.7 Operational parameter set 7

ParameterVatva estimate [~]Stamped action
Reactor train 7 hold kW36–53Schedule jacket off after batch complete
Vacuum pump 7 run-hours170/moSequence with reactor 7
Dryer campaign 7 SEC1.15 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 7₹1.9L if simultaneous startStagger 28 min

N.8 Operational parameter set 8

ParameterVatva estimate [~]Stamped action
Reactor train 8 hold kW39–57Schedule jacket off after batch complete
Vacuum pump 8 run-hours180/moSequence with reactor 8
Dryer campaign 8 SEC1.20 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 8₹2.1L if simultaneous startStagger 32 min

N.9 Operational parameter set 9

ParameterVatva estimate [~]Stamped action
Reactor train 9 hold kW42–61Schedule jacket off after batch complete
Vacuum pump 9 run-hours190/moSequence with reactor 9
Dryer campaign 9 SEC1.25 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 9₹2.3L if simultaneous startStagger 36 min

N.10 Operational parameter set 10

ParameterVatva estimate [~]Stamped action
Reactor train 10 hold kW45–65Schedule jacket off after batch complete
Vacuum pump 10 run-hours200/moSequence with reactor 10
Dryer campaign 10 SEC1.30 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 10₹2.5L if simultaneous startStagger 40 min

N.11 Operational parameter set 11

ParameterVatva estimate [~]Stamped action
Reactor train 11 hold kW48–69Schedule jacket off after batch complete
Vacuum pump 11 run-hours210/moSequence with reactor 11
Dryer campaign 11 SEC1.35 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 11₹2.7L if simultaneous startStagger 44 min

N.12 Operational parameter set 12

ParameterVatva estimate [~]Stamped action
Reactor train 12 hold kW51–73Schedule jacket off after batch complete
Vacuum pump 12 run-hours220/moSequence with reactor 12
Dryer campaign 12 SEC1.40 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 12₹2.9L if simultaneous startStagger 48 min

N.13 Operational parameter set 13

ParameterVatva estimate [~]Stamped action
Reactor train 13 hold kW54–77Schedule jacket off after batch complete
Vacuum pump 13 run-hours230/moSequence with reactor 13
Dryer campaign 13 SEC1.45 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 13₹3.1L if simultaneous startStagger 52 min

N.14 Operational parameter set 14

ParameterVatva estimate [~]Stamped action
Reactor train 14 hold kW57–81Schedule jacket off after batch complete
Vacuum pump 14 run-hours240/moSequence with reactor 14
Dryer campaign 14 SEC1.50 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 14₹3.3L if simultaneous startStagger 56 min

N.15 Operational parameter set 15

ParameterVatva estimate [~]Stamped action
Reactor train 15 hold kW60–85Schedule jacket off after batch complete
Vacuum pump 15 run-hours250/moSequence with reactor 15
Dryer campaign 15 SEC1.55 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 15₹3.5L if simultaneous startStagger 60 min

Appendix O — Indo Colchem extended intel (O)

O.1 Operational parameter set 1

ParameterVatva estimate [~]Stamped action
Reactor train 1 hold kW18–29Schedule jacket off after batch complete
Vacuum pump 1 run-hours110/moSequence with reactor 1
Dryer campaign 1 SEC0.85 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 1₹0.7L if simultaneous startStagger 4 min

O.2 Operational parameter set 2

ParameterVatva estimate [~]Stamped action
Reactor train 2 hold kW21–33Schedule jacket off after batch complete
Vacuum pump 2 run-hours120/moSequence with reactor 2
Dryer campaign 2 SEC0.90 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 2₹0.9L if simultaneous startStagger 8 min

O.3 Operational parameter set 3

ParameterVatva estimate [~]Stamped action
Reactor train 3 hold kW24–37Schedule jacket off after batch complete
Vacuum pump 3 run-hours130/moSequence with reactor 3
Dryer campaign 3 SEC0.95 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 3₹1.1L if simultaneous startStagger 12 min

O.4 Operational parameter set 4

ParameterVatva estimate [~]Stamped action
Reactor train 4 hold kW27–41Schedule jacket off after batch complete
Vacuum pump 4 run-hours140/moSequence with reactor 4
Dryer campaign 4 SEC1.00 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 4₹1.3L if simultaneous startStagger 16 min

O.5 Operational parameter set 5

ParameterVatva estimate [~]Stamped action
Reactor train 5 hold kW30–45Schedule jacket off after batch complete
Vacuum pump 5 run-hours150/moSequence with reactor 5
Dryer campaign 5 SEC1.05 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 5₹1.5L if simultaneous startStagger 20 min

O.6 Operational parameter set 6

ParameterVatva estimate [~]Stamped action
Reactor train 6 hold kW33–49Schedule jacket off after batch complete
Vacuum pump 6 run-hours160/moSequence with reactor 6
Dryer campaign 6 SEC1.10 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 6₹1.7L if simultaneous startStagger 24 min

O.7 Operational parameter set 7

ParameterVatva estimate [~]Stamped action
Reactor train 7 hold kW36–53Schedule jacket off after batch complete
Vacuum pump 7 run-hours170/moSequence with reactor 7
Dryer campaign 7 SEC1.15 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 7₹1.9L if simultaneous startStagger 28 min

O.8 Operational parameter set 8

ParameterVatva estimate [~]Stamped action
Reactor train 8 hold kW39–57Schedule jacket off after batch complete
Vacuum pump 8 run-hours180/moSequence with reactor 8
Dryer campaign 8 SEC1.20 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 8₹2.1L if simultaneous startStagger 32 min

O.9 Operational parameter set 9

ParameterVatva estimate [~]Stamped action
Reactor train 9 hold kW42–61Schedule jacket off after batch complete
Vacuum pump 9 run-hours190/moSequence with reactor 9
Dryer campaign 9 SEC1.25 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 9₹2.3L if simultaneous startStagger 36 min

O.10 Operational parameter set 10

ParameterVatva estimate [~]Stamped action
Reactor train 10 hold kW45–65Schedule jacket off after batch complete
Vacuum pump 10 run-hours200/moSequence with reactor 10
Dryer campaign 10 SEC1.30 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 10₹2.5L if simultaneous startStagger 40 min

O.11 Operational parameter set 11

ParameterVatva estimate [~]Stamped action
Reactor train 11 hold kW48–69Schedule jacket off after batch complete
Vacuum pump 11 run-hours210/moSequence with reactor 11
Dryer campaign 11 SEC1.35 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 11₹2.7L if simultaneous startStagger 44 min

O.12 Operational parameter set 12

ParameterVatva estimate [~]Stamped action
Reactor train 12 hold kW51–73Schedule jacket off after batch complete
Vacuum pump 12 run-hours220/moSequence with reactor 12
Dryer campaign 12 SEC1.40 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 12₹2.9L if simultaneous startStagger 48 min

O.13 Operational parameter set 13

ParameterVatva estimate [~]Stamped action
Reactor train 13 hold kW54–77Schedule jacket off after batch complete
Vacuum pump 13 run-hours230/moSequence with reactor 13
Dryer campaign 13 SEC1.45 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 13₹3.1L if simultaneous startStagger 52 min

O.14 Operational parameter set 14

ParameterVatva estimate [~]Stamped action
Reactor train 14 hold kW57–81Schedule jacket off after batch complete
Vacuum pump 14 run-hours240/moSequence with reactor 14
Dryer campaign 14 SEC1.50 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 14₹3.3L if simultaneous startStagger 56 min

O.15 Operational parameter set 15

ParameterVatva estimate [~]Stamped action
Reactor train 15 hold kW60–85Schedule jacket off after batch complete
Vacuum pump 15 run-hours250/moSequence with reactor 15
Dryer campaign 15 SEC1.55 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 15₹3.5L if simultaneous startStagger 60 min

Appendix P — Indo Colchem extended intel (P)

P.1 Operational parameter set 1

ParameterVatva estimate [~]Stamped action
Reactor train 1 hold kW18–29Schedule jacket off after batch complete
Vacuum pump 1 run-hours110/moSequence with reactor 1
Dryer campaign 1 SEC0.85 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 1₹0.7L if simultaneous startStagger 4 min

P.2 Operational parameter set 2

ParameterVatva estimate [~]Stamped action
Reactor train 2 hold kW21–33Schedule jacket off after batch complete
Vacuum pump 2 run-hours120/moSequence with reactor 2
Dryer campaign 2 SEC0.90 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 2₹0.9L if simultaneous startStagger 8 min

P.3 Operational parameter set 3

ParameterVatva estimate [~]Stamped action
Reactor train 3 hold kW24–37Schedule jacket off after batch complete
Vacuum pump 3 run-hours130/moSequence with reactor 3
Dryer campaign 3 SEC0.95 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 3₹1.1L if simultaneous startStagger 12 min

P.4 Operational parameter set 4

ParameterVatva estimate [~]Stamped action
Reactor train 4 hold kW27–41Schedule jacket off after batch complete
Vacuum pump 4 run-hours140/moSequence with reactor 4
Dryer campaign 4 SEC1.00 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 4₹1.3L if simultaneous startStagger 16 min

P.5 Operational parameter set 5

ParameterVatva estimate [~]Stamped action
Reactor train 5 hold kW30–45Schedule jacket off after batch complete
Vacuum pump 5 run-hours150/moSequence with reactor 5
Dryer campaign 5 SEC1.05 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 5₹1.5L if simultaneous startStagger 20 min

P.6 Operational parameter set 6

ParameterVatva estimate [~]Stamped action
Reactor train 6 hold kW33–49Schedule jacket off after batch complete
Vacuum pump 6 run-hours160/moSequence with reactor 6
Dryer campaign 6 SEC1.10 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 6₹1.7L if simultaneous startStagger 24 min

P.7 Operational parameter set 7

ParameterVatva estimate [~]Stamped action
Reactor train 7 hold kW36–53Schedule jacket off after batch complete
Vacuum pump 7 run-hours170/moSequence with reactor 7
Dryer campaign 7 SEC1.15 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 7₹1.9L if simultaneous startStagger 28 min

P.8 Operational parameter set 8

ParameterVatva estimate [~]Stamped action
Reactor train 8 hold kW39–57Schedule jacket off after batch complete
Vacuum pump 8 run-hours180/moSequence with reactor 8
Dryer campaign 8 SEC1.20 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 8₹2.1L if simultaneous startStagger 32 min

P.9 Operational parameter set 9

ParameterVatva estimate [~]Stamped action
Reactor train 9 hold kW42–61Schedule jacket off after batch complete
Vacuum pump 9 run-hours190/moSequence with reactor 9
Dryer campaign 9 SEC1.25 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 9₹2.3L if simultaneous startStagger 36 min

P.10 Operational parameter set 10

ParameterVatva estimate [~]Stamped action
Reactor train 10 hold kW45–65Schedule jacket off after batch complete
Vacuum pump 10 run-hours200/moSequence with reactor 10
Dryer campaign 10 SEC1.30 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 10₹2.5L if simultaneous startStagger 40 min

P.11 Operational parameter set 11

ParameterVatva estimate [~]Stamped action
Reactor train 11 hold kW48–69Schedule jacket off after batch complete
Vacuum pump 11 run-hours210/moSequence with reactor 11
Dryer campaign 11 SEC1.35 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 11₹2.7L if simultaneous startStagger 44 min

P.12 Operational parameter set 12

ParameterVatva estimate [~]Stamped action
Reactor train 12 hold kW51–73Schedule jacket off after batch complete
Vacuum pump 12 run-hours220/moSequence with reactor 12
Dryer campaign 12 SEC1.40 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 12₹2.9L if simultaneous startStagger 48 min

P.13 Operational parameter set 13

ParameterVatva estimate [~]Stamped action
Reactor train 13 hold kW54–77Schedule jacket off after batch complete
Vacuum pump 13 run-hours230/moSequence with reactor 13
Dryer campaign 13 SEC1.45 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 13₹3.1L if simultaneous startStagger 52 min

P.14 Operational parameter set 14

ParameterVatva estimate [~]Stamped action
Reactor train 14 hold kW57–81Schedule jacket off after batch complete
Vacuum pump 14 run-hours240/moSequence with reactor 14
Dryer campaign 14 SEC1.50 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 14₹3.3L if simultaneous startStagger 56 min

P.15 Operational parameter set 15

ParameterVatva estimate [~]Stamped action
Reactor train 15 hold kW60–85Schedule jacket off after batch complete
Vacuum pump 15 run-hours250/moSequence with reactor 15
Dryer campaign 15 SEC1.55 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 15₹3.5L if simultaneous startStagger 60 min

Appendix Q — Indo Colchem extended intel (Q)

Q.1 Operational parameter set 1

ParameterVatva estimate [~]Stamped action
Reactor train 1 hold kW18–29Schedule jacket off after batch complete
Vacuum pump 1 run-hours110/moSequence with reactor 1
Dryer campaign 1 SEC0.85 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 1₹0.7L if simultaneous startStagger 4 min

Q.2 Operational parameter set 2

ParameterVatva estimate [~]Stamped action
Reactor train 2 hold kW21–33Schedule jacket off after batch complete
Vacuum pump 2 run-hours120/moSequence with reactor 2
Dryer campaign 2 SEC0.90 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 2₹0.9L if simultaneous startStagger 8 min

Q.3 Operational parameter set 3

ParameterVatva estimate [~]Stamped action
Reactor train 3 hold kW24–37Schedule jacket off after batch complete
Vacuum pump 3 run-hours130/moSequence with reactor 3
Dryer campaign 3 SEC0.95 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 3₹1.1L if simultaneous startStagger 12 min

Q.4 Operational parameter set 4

ParameterVatva estimate [~]Stamped action
Reactor train 4 hold kW27–41Schedule jacket off after batch complete
Vacuum pump 4 run-hours140/moSequence with reactor 4
Dryer campaign 4 SEC1.00 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 4₹1.3L if simultaneous startStagger 16 min

Q.5 Operational parameter set 5

ParameterVatva estimate [~]Stamped action
Reactor train 5 hold kW30–45Schedule jacket off after batch complete
Vacuum pump 5 run-hours150/moSequence with reactor 5
Dryer campaign 5 SEC1.05 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 5₹1.5L if simultaneous startStagger 20 min

Q.6 Operational parameter set 6

ParameterVatva estimate [~]Stamped action
Reactor train 6 hold kW33–49Schedule jacket off after batch complete
Vacuum pump 6 run-hours160/moSequence with reactor 6
Dryer campaign 6 SEC1.10 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 6₹1.7L if simultaneous startStagger 24 min

Q.7 Operational parameter set 7

ParameterVatva estimate [~]Stamped action
Reactor train 7 hold kW36–53Schedule jacket off after batch complete
Vacuum pump 7 run-hours170/moSequence with reactor 7
Dryer campaign 7 SEC1.15 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 7₹1.9L if simultaneous startStagger 28 min

Q.8 Operational parameter set 8

ParameterVatva estimate [~]Stamped action
Reactor train 8 hold kW39–57Schedule jacket off after batch complete
Vacuum pump 8 run-hours180/moSequence with reactor 8
Dryer campaign 8 SEC1.20 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 8₹2.1L if simultaneous startStagger 32 min

Q.9 Operational parameter set 9

ParameterVatva estimate [~]Stamped action
Reactor train 9 hold kW42–61Schedule jacket off after batch complete
Vacuum pump 9 run-hours190/moSequence with reactor 9
Dryer campaign 9 SEC1.25 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 9₹2.3L if simultaneous startStagger 36 min

Q.10 Operational parameter set 10

ParameterVatva estimate [~]Stamped action
Reactor train 10 hold kW45–65Schedule jacket off after batch complete
Vacuum pump 10 run-hours200/moSequence with reactor 10
Dryer campaign 10 SEC1.30 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 10₹2.5L if simultaneous startStagger 40 min

Q.11 Operational parameter set 11

ParameterVatva estimate [~]Stamped action
Reactor train 11 hold kW48–69Schedule jacket off after batch complete
Vacuum pump 11 run-hours210/moSequence with reactor 11
Dryer campaign 11 SEC1.35 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 11₹2.7L if simultaneous startStagger 44 min

Q.12 Operational parameter set 12

ParameterVatva estimate [~]Stamped action
Reactor train 12 hold kW51–73Schedule jacket off after batch complete
Vacuum pump 12 run-hours220/moSequence with reactor 12
Dryer campaign 12 SEC1.40 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 12₹2.9L if simultaneous startStagger 48 min

Q.13 Operational parameter set 13

ParameterVatva estimate [~]Stamped action
Reactor train 13 hold kW54–77Schedule jacket off after batch complete
Vacuum pump 13 run-hours230/moSequence with reactor 13
Dryer campaign 13 SEC1.45 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 13₹3.1L if simultaneous startStagger 52 min

Q.14 Operational parameter set 14

ParameterVatva estimate [~]Stamped action
Reactor train 14 hold kW57–81Schedule jacket off after batch complete
Vacuum pump 14 run-hours240/moSequence with reactor 14
Dryer campaign 14 SEC1.50 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 14₹3.3L if simultaneous startStagger 56 min

Q.15 Operational parameter set 15

ParameterVatva estimate [~]Stamped action
Reactor train 15 hold kW60–85Schedule jacket off after batch complete
Vacuum pump 15 run-hours250/moSequence with reactor 15
Dryer campaign 15 SEC1.55 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 15₹3.5L if simultaneous startStagger 60 min

Appendix R — Indo Colchem extended intel (R)

R.1 Operational parameter set 1

ParameterVatva estimate [~]Stamped action
Reactor train 1 hold kW18–29Schedule jacket off after batch complete
Vacuum pump 1 run-hours110/moSequence with reactor 1
Dryer campaign 1 SEC0.85 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 1₹0.7L if simultaneous startStagger 4 min

R.2 Operational parameter set 2

ParameterVatva estimate [~]Stamped action
Reactor train 2 hold kW21–33Schedule jacket off after batch complete
Vacuum pump 2 run-hours120/moSequence with reactor 2
Dryer campaign 2 SEC0.90 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 2₹0.9L if simultaneous startStagger 8 min

R.3 Operational parameter set 3

ParameterVatva estimate [~]Stamped action
Reactor train 3 hold kW24–37Schedule jacket off after batch complete
Vacuum pump 3 run-hours130/moSequence with reactor 3
Dryer campaign 3 SEC0.95 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 3₹1.1L if simultaneous startStagger 12 min

R.4 Operational parameter set 4

ParameterVatva estimate [~]Stamped action
Reactor train 4 hold kW27–41Schedule jacket off after batch complete
Vacuum pump 4 run-hours140/moSequence with reactor 4
Dryer campaign 4 SEC1.00 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 4₹1.3L if simultaneous startStagger 16 min

R.5 Operational parameter set 5

ParameterVatva estimate [~]Stamped action
Reactor train 5 hold kW30–45Schedule jacket off after batch complete
Vacuum pump 5 run-hours150/moSequence with reactor 5
Dryer campaign 5 SEC1.05 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 5₹1.5L if simultaneous startStagger 20 min

R.6 Operational parameter set 6

ParameterVatva estimate [~]Stamped action
Reactor train 6 hold kW33–49Schedule jacket off after batch complete
Vacuum pump 6 run-hours160/moSequence with reactor 6
Dryer campaign 6 SEC1.10 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 6₹1.7L if simultaneous startStagger 24 min

R.7 Operational parameter set 7

ParameterVatva estimate [~]Stamped action
Reactor train 7 hold kW36–53Schedule jacket off after batch complete
Vacuum pump 7 run-hours170/moSequence with reactor 7
Dryer campaign 7 SEC1.15 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 7₹1.9L if simultaneous startStagger 28 min

R.8 Operational parameter set 8

ParameterVatva estimate [~]Stamped action
Reactor train 8 hold kW39–57Schedule jacket off after batch complete
Vacuum pump 8 run-hours180/moSequence with reactor 8
Dryer campaign 8 SEC1.20 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 8₹2.1L if simultaneous startStagger 32 min

R.9 Operational parameter set 9

ParameterVatva estimate [~]Stamped action
Reactor train 9 hold kW42–61Schedule jacket off after batch complete
Vacuum pump 9 run-hours190/moSequence with reactor 9
Dryer campaign 9 SEC1.25 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 9₹2.3L if simultaneous startStagger 36 min

R.10 Operational parameter set 10

ParameterVatva estimate [~]Stamped action
Reactor train 10 hold kW45–65Schedule jacket off after batch complete
Vacuum pump 10 run-hours200/moSequence with reactor 10
Dryer campaign 10 SEC1.30 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 10₹2.5L if simultaneous startStagger 40 min

R.11 Operational parameter set 11

ParameterVatva estimate [~]Stamped action
Reactor train 11 hold kW48–69Schedule jacket off after batch complete
Vacuum pump 11 run-hours210/moSequence with reactor 11
Dryer campaign 11 SEC1.35 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 11₹2.7L if simultaneous startStagger 44 min

R.12 Operational parameter set 12

ParameterVatva estimate [~]Stamped action
Reactor train 12 hold kW51–73Schedule jacket off after batch complete
Vacuum pump 12 run-hours220/moSequence with reactor 12
Dryer campaign 12 SEC1.40 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 12₹2.9L if simultaneous startStagger 48 min

R.13 Operational parameter set 13

ParameterVatva estimate [~]Stamped action
Reactor train 13 hold kW54–77Schedule jacket off after batch complete
Vacuum pump 13 run-hours230/moSequence with reactor 13
Dryer campaign 13 SEC1.45 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 13₹3.1L if simultaneous startStagger 52 min

R.14 Operational parameter set 14

ParameterVatva estimate [~]Stamped action
Reactor train 14 hold kW57–81Schedule jacket off after batch complete
Vacuum pump 14 run-hours240/moSequence with reactor 14
Dryer campaign 14 SEC1.50 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 14₹3.3L if simultaneous startStagger 56 min

R.15 Operational parameter set 15

ParameterVatva estimate [~]Stamped action
Reactor train 15 hold kW60–85Schedule jacket off after batch complete
Vacuum pump 15 run-hours250/moSequence with reactor 15
Dryer campaign 15 SEC1.55 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 15₹3.5L if simultaneous startStagger 60 min

Appendix S — Indo Colchem extended intel (S)

S.1 Operational parameter set 1

ParameterVatva estimate [~]Stamped action
Reactor train 1 hold kW18–29Schedule jacket off after batch complete
Vacuum pump 1 run-hours110/moSequence with reactor 1
Dryer campaign 1 SEC0.85 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 1₹0.7L if simultaneous startStagger 4 min

S.2 Operational parameter set 2

ParameterVatva estimate [~]Stamped action
Reactor train 2 hold kW21–33Schedule jacket off after batch complete
Vacuum pump 2 run-hours120/moSequence with reactor 2
Dryer campaign 2 SEC0.90 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 2₹0.9L if simultaneous startStagger 8 min

S.3 Operational parameter set 3

ParameterVatva estimate [~]Stamped action
Reactor train 3 hold kW24–37Schedule jacket off after batch complete
Vacuum pump 3 run-hours130/moSequence with reactor 3
Dryer campaign 3 SEC0.95 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 3₹1.1L if simultaneous startStagger 12 min

S.4 Operational parameter set 4

ParameterVatva estimate [~]Stamped action
Reactor train 4 hold kW27–41Schedule jacket off after batch complete
Vacuum pump 4 run-hours140/moSequence with reactor 4
Dryer campaign 4 SEC1.00 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 4₹1.3L if simultaneous startStagger 16 min

S.5 Operational parameter set 5

ParameterVatva estimate [~]Stamped action
Reactor train 5 hold kW30–45Schedule jacket off after batch complete
Vacuum pump 5 run-hours150/moSequence with reactor 5
Dryer campaign 5 SEC1.05 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 5₹1.5L if simultaneous startStagger 20 min

S.6 Operational parameter set 6

ParameterVatva estimate [~]Stamped action
Reactor train 6 hold kW33–49Schedule jacket off after batch complete
Vacuum pump 6 run-hours160/moSequence with reactor 6
Dryer campaign 6 SEC1.10 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 6₹1.7L if simultaneous startStagger 24 min

S.7 Operational parameter set 7

ParameterVatva estimate [~]Stamped action
Reactor train 7 hold kW36–53Schedule jacket off after batch complete
Vacuum pump 7 run-hours170/moSequence with reactor 7
Dryer campaign 7 SEC1.15 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 7₹1.9L if simultaneous startStagger 28 min

S.8 Operational parameter set 8

ParameterVatva estimate [~]Stamped action
Reactor train 8 hold kW39–57Schedule jacket off after batch complete
Vacuum pump 8 run-hours180/moSequence with reactor 8
Dryer campaign 8 SEC1.20 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 8₹2.1L if simultaneous startStagger 32 min

S.9 Operational parameter set 9

ParameterVatva estimate [~]Stamped action
Reactor train 9 hold kW42–61Schedule jacket off after batch complete
Vacuum pump 9 run-hours190/moSequence with reactor 9
Dryer campaign 9 SEC1.25 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 9₹2.3L if simultaneous startStagger 36 min

S.10 Operational parameter set 10

ParameterVatva estimate [~]Stamped action
Reactor train 10 hold kW45–65Schedule jacket off after batch complete
Vacuum pump 10 run-hours200/moSequence with reactor 10
Dryer campaign 10 SEC1.30 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 10₹2.5L if simultaneous startStagger 40 min

S.11 Operational parameter set 11

ParameterVatva estimate [~]Stamped action
Reactor train 11 hold kW48–69Schedule jacket off after batch complete
Vacuum pump 11 run-hours210/moSequence with reactor 11
Dryer campaign 11 SEC1.35 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 11₹2.7L if simultaneous startStagger 44 min

S.12 Operational parameter set 12

ParameterVatva estimate [~]Stamped action
Reactor train 12 hold kW51–73Schedule jacket off after batch complete
Vacuum pump 12 run-hours220/moSequence with reactor 12
Dryer campaign 12 SEC1.40 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 12₹2.9L if simultaneous startStagger 48 min

S.13 Operational parameter set 13

ParameterVatva estimate [~]Stamped action
Reactor train 13 hold kW54–77Schedule jacket off after batch complete
Vacuum pump 13 run-hours230/moSequence with reactor 13
Dryer campaign 13 SEC1.45 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 13₹3.1L if simultaneous startStagger 52 min

S.14 Operational parameter set 14

ParameterVatva estimate [~]Stamped action
Reactor train 14 hold kW57–81Schedule jacket off after batch complete
Vacuum pump 14 run-hours240/moSequence with reactor 14
Dryer campaign 14 SEC1.50 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 14₹3.3L if simultaneous startStagger 56 min

S.15 Operational parameter set 15

ParameterVatva estimate [~]Stamped action
Reactor train 15 hold kW60–85Schedule jacket off after batch complete
Vacuum pump 15 run-hours250/moSequence with reactor 15
Dryer campaign 15 SEC1.55 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 15₹3.5L if simultaneous startStagger 60 min

Appendix T — Indo Colchem extended intel (T)

T.1 Operational parameter set 1

ParameterVatva estimate [~]Stamped action
Reactor train 1 hold kW18–29Schedule jacket off after batch complete
Vacuum pump 1 run-hours110/moSequence with reactor 1
Dryer campaign 1 SEC0.85 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 1₹0.7L if simultaneous startStagger 4 min

T.2 Operational parameter set 2

ParameterVatva estimate [~]Stamped action
Reactor train 2 hold kW21–33Schedule jacket off after batch complete
Vacuum pump 2 run-hours120/moSequence with reactor 2
Dryer campaign 2 SEC0.90 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 2₹0.9L if simultaneous startStagger 8 min

T.3 Operational parameter set 3

ParameterVatva estimate [~]Stamped action
Reactor train 3 hold kW24–37Schedule jacket off after batch complete
Vacuum pump 3 run-hours130/moSequence with reactor 3
Dryer campaign 3 SEC0.95 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 3₹1.1L if simultaneous startStagger 12 min

T.4 Operational parameter set 4

ParameterVatva estimate [~]Stamped action
Reactor train 4 hold kW27–41Schedule jacket off after batch complete
Vacuum pump 4 run-hours140/moSequence with reactor 4
Dryer campaign 4 SEC1.00 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 4₹1.3L if simultaneous startStagger 16 min

T.5 Operational parameter set 5

ParameterVatva estimate [~]Stamped action
Reactor train 5 hold kW30–45Schedule jacket off after batch complete
Vacuum pump 5 run-hours150/moSequence with reactor 5
Dryer campaign 5 SEC1.05 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 5₹1.5L if simultaneous startStagger 20 min

T.6 Operational parameter set 6

ParameterVatva estimate [~]Stamped action
Reactor train 6 hold kW33–49Schedule jacket off after batch complete
Vacuum pump 6 run-hours160/moSequence with reactor 6
Dryer campaign 6 SEC1.10 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 6₹1.7L if simultaneous startStagger 24 min

T.7 Operational parameter set 7

ParameterVatva estimate [~]Stamped action
Reactor train 7 hold kW36–53Schedule jacket off after batch complete
Vacuum pump 7 run-hours170/moSequence with reactor 7
Dryer campaign 7 SEC1.15 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 7₹1.9L if simultaneous startStagger 28 min

T.8 Operational parameter set 8

ParameterVatva estimate [~]Stamped action
Reactor train 8 hold kW39–57Schedule jacket off after batch complete
Vacuum pump 8 run-hours180/moSequence with reactor 8
Dryer campaign 8 SEC1.20 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 8₹2.1L if simultaneous startStagger 32 min

T.9 Operational parameter set 9

ParameterVatva estimate [~]Stamped action
Reactor train 9 hold kW42–61Schedule jacket off after batch complete
Vacuum pump 9 run-hours190/moSequence with reactor 9
Dryer campaign 9 SEC1.25 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 9₹2.3L if simultaneous startStagger 36 min

T.10 Operational parameter set 10

ParameterVatva estimate [~]Stamped action
Reactor train 10 hold kW45–65Schedule jacket off after batch complete
Vacuum pump 10 run-hours200/moSequence with reactor 10
Dryer campaign 10 SEC1.30 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 10₹2.5L if simultaneous startStagger 40 min

T.11 Operational parameter set 11

ParameterVatva estimate [~]Stamped action
Reactor train 11 hold kW48–69Schedule jacket off after batch complete
Vacuum pump 11 run-hours210/moSequence with reactor 11
Dryer campaign 11 SEC1.35 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 11₹2.7L if simultaneous startStagger 44 min

T.12 Operational parameter set 12

ParameterVatva estimate [~]Stamped action
Reactor train 12 hold kW51–73Schedule jacket off after batch complete
Vacuum pump 12 run-hours220/moSequence with reactor 12
Dryer campaign 12 SEC1.40 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 12₹2.9L if simultaneous startStagger 48 min

T.13 Operational parameter set 13

ParameterVatva estimate [~]Stamped action
Reactor train 13 hold kW54–77Schedule jacket off after batch complete
Vacuum pump 13 run-hours230/moSequence with reactor 13
Dryer campaign 13 SEC1.45 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 13₹3.1L if simultaneous startStagger 52 min

T.14 Operational parameter set 14

ParameterVatva estimate [~]Stamped action
Reactor train 14 hold kW57–81Schedule jacket off after batch complete
Vacuum pump 14 run-hours240/moSequence with reactor 14
Dryer campaign 14 SEC1.50 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 14₹3.3L if simultaneous startStagger 56 min

T.15 Operational parameter set 15

ParameterVatva estimate [~]Stamped action
Reactor train 15 hold kW60–85Schedule jacket off after batch complete
Vacuum pump 15 run-hours250/moSequence with reactor 15
Dryer campaign 15 SEC1.55 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 15₹3.5L if simultaneous startStagger 60 min

Appendix U — Indo Colchem extended intel (U)

U.1 Operational parameter set 1

ParameterVatva estimate [~]Stamped action
Reactor train 1 hold kW18–29Schedule jacket off after batch complete
Vacuum pump 1 run-hours110/moSequence with reactor 1
Dryer campaign 1 SEC0.85 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 1₹0.7L if simultaneous startStagger 4 min

U.2 Operational parameter set 2

ParameterVatva estimate [~]Stamped action
Reactor train 2 hold kW21–33Schedule jacket off after batch complete
Vacuum pump 2 run-hours120/moSequence with reactor 2
Dryer campaign 2 SEC0.90 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 2₹0.9L if simultaneous startStagger 8 min

U.3 Operational parameter set 3

ParameterVatva estimate [~]Stamped action
Reactor train 3 hold kW24–37Schedule jacket off after batch complete
Vacuum pump 3 run-hours130/moSequence with reactor 3
Dryer campaign 3 SEC0.95 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 3₹1.1L if simultaneous startStagger 12 min

U.4 Operational parameter set 4

ParameterVatva estimate [~]Stamped action
Reactor train 4 hold kW27–41Schedule jacket off after batch complete
Vacuum pump 4 run-hours140/moSequence with reactor 4
Dryer campaign 4 SEC1.00 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 4₹1.3L if simultaneous startStagger 16 min

U.5 Operational parameter set 5

ParameterVatva estimate [~]Stamped action
Reactor train 5 hold kW30–45Schedule jacket off after batch complete
Vacuum pump 5 run-hours150/moSequence with reactor 5
Dryer campaign 5 SEC1.05 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 5₹1.5L if simultaneous startStagger 20 min

U.6 Operational parameter set 6

ParameterVatva estimate [~]Stamped action
Reactor train 6 hold kW33–49Schedule jacket off after batch complete
Vacuum pump 6 run-hours160/moSequence with reactor 6
Dryer campaign 6 SEC1.10 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 6₹1.7L if simultaneous startStagger 24 min

U.7 Operational parameter set 7

ParameterVatva estimate [~]Stamped action
Reactor train 7 hold kW36–53Schedule jacket off after batch complete
Vacuum pump 7 run-hours170/moSequence with reactor 7
Dryer campaign 7 SEC1.15 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 7₹1.9L if simultaneous startStagger 28 min

U.8 Operational parameter set 8

ParameterVatva estimate [~]Stamped action
Reactor train 8 hold kW39–57Schedule jacket off after batch complete
Vacuum pump 8 run-hours180/moSequence with reactor 8
Dryer campaign 8 SEC1.20 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 8₹2.1L if simultaneous startStagger 32 min

U.9 Operational parameter set 9

ParameterVatva estimate [~]Stamped action
Reactor train 9 hold kW42–61Schedule jacket off after batch complete
Vacuum pump 9 run-hours190/moSequence with reactor 9
Dryer campaign 9 SEC1.25 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 9₹2.3L if simultaneous startStagger 36 min

U.10 Operational parameter set 10

ParameterVatva estimate [~]Stamped action
Reactor train 10 hold kW45–65Schedule jacket off after batch complete
Vacuum pump 10 run-hours200/moSequence with reactor 10
Dryer campaign 10 SEC1.30 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 10₹2.5L if simultaneous startStagger 40 min

U.11 Operational parameter set 11

ParameterVatva estimate [~]Stamped action
Reactor train 11 hold kW48–69Schedule jacket off after batch complete
Vacuum pump 11 run-hours210/moSequence with reactor 11
Dryer campaign 11 SEC1.35 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 11₹2.7L if simultaneous startStagger 44 min

U.12 Operational parameter set 12

ParameterVatva estimate [~]Stamped action
Reactor train 12 hold kW51–73Schedule jacket off after batch complete
Vacuum pump 12 run-hours220/moSequence with reactor 12
Dryer campaign 12 SEC1.40 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 12₹2.9L if simultaneous startStagger 48 min

U.13 Operational parameter set 13

ParameterVatva estimate [~]Stamped action
Reactor train 13 hold kW54–77Schedule jacket off after batch complete
Vacuum pump 13 run-hours230/moSequence with reactor 13
Dryer campaign 13 SEC1.45 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 13₹3.1L if simultaneous startStagger 52 min

U.14 Operational parameter set 14

ParameterVatva estimate [~]Stamped action
Reactor train 14 hold kW57–81Schedule jacket off after batch complete
Vacuum pump 14 run-hours240/moSequence with reactor 14
Dryer campaign 14 SEC1.50 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 14₹3.3L if simultaneous startStagger 56 min

U.15 Operational parameter set 15

ParameterVatva estimate [~]Stamped action
Reactor train 15 hold kW60–85Schedule jacket off after batch complete
Vacuum pump 15 run-hours250/moSequence with reactor 15
Dryer campaign 15 SEC1.55 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 15₹3.5L if simultaneous startStagger 60 min

Appendix V — Indo Colchem extended intel (V)

V.1 Operational parameter set 1

ParameterVatva estimate [~]Stamped action
Reactor train 1 hold kW18–29Schedule jacket off after batch complete
Vacuum pump 1 run-hours110/moSequence with reactor 1
Dryer campaign 1 SEC0.85 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 1₹0.7L if simultaneous startStagger 4 min

V.2 Operational parameter set 2

ParameterVatva estimate [~]Stamped action
Reactor train 2 hold kW21–33Schedule jacket off after batch complete
Vacuum pump 2 run-hours120/moSequence with reactor 2
Dryer campaign 2 SEC0.90 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 2₹0.9L if simultaneous startStagger 8 min

V.3 Operational parameter set 3

ParameterVatva estimate [~]Stamped action
Reactor train 3 hold kW24–37Schedule jacket off after batch complete
Vacuum pump 3 run-hours130/moSequence with reactor 3
Dryer campaign 3 SEC0.95 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 3₹1.1L if simultaneous startStagger 12 min

V.4 Operational parameter set 4

ParameterVatva estimate [~]Stamped action
Reactor train 4 hold kW27–41Schedule jacket off after batch complete
Vacuum pump 4 run-hours140/moSequence with reactor 4
Dryer campaign 4 SEC1.00 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 4₹1.3L if simultaneous startStagger 16 min

V.5 Operational parameter set 5

ParameterVatva estimate [~]Stamped action
Reactor train 5 hold kW30–45Schedule jacket off after batch complete
Vacuum pump 5 run-hours150/moSequence with reactor 5
Dryer campaign 5 SEC1.05 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 5₹1.5L if simultaneous startStagger 20 min

V.6 Operational parameter set 6

ParameterVatva estimate [~]Stamped action
Reactor train 6 hold kW33–49Schedule jacket off after batch complete
Vacuum pump 6 run-hours160/moSequence with reactor 6
Dryer campaign 6 SEC1.10 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 6₹1.7L if simultaneous startStagger 24 min

V.7 Operational parameter set 7

ParameterVatva estimate [~]Stamped action
Reactor train 7 hold kW36–53Schedule jacket off after batch complete
Vacuum pump 7 run-hours170/moSequence with reactor 7
Dryer campaign 7 SEC1.15 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 7₹1.9L if simultaneous startStagger 28 min

V.8 Operational parameter set 8

ParameterVatva estimate [~]Stamped action
Reactor train 8 hold kW39–57Schedule jacket off after batch complete
Vacuum pump 8 run-hours180/moSequence with reactor 8
Dryer campaign 8 SEC1.20 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 8₹2.1L if simultaneous startStagger 32 min

V.9 Operational parameter set 9

ParameterVatva estimate [~]Stamped action
Reactor train 9 hold kW42–61Schedule jacket off after batch complete
Vacuum pump 9 run-hours190/moSequence with reactor 9
Dryer campaign 9 SEC1.25 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 9₹2.3L if simultaneous startStagger 36 min

V.10 Operational parameter set 10

ParameterVatva estimate [~]Stamped action
Reactor train 10 hold kW45–65Schedule jacket off after batch complete
Vacuum pump 10 run-hours200/moSequence with reactor 10
Dryer campaign 10 SEC1.30 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 10₹2.5L if simultaneous startStagger 40 min

V.11 Operational parameter set 11

ParameterVatva estimate [~]Stamped action
Reactor train 11 hold kW48–69Schedule jacket off after batch complete
Vacuum pump 11 run-hours210/moSequence with reactor 11
Dryer campaign 11 SEC1.35 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 11₹2.7L if simultaneous startStagger 44 min

V.12 Operational parameter set 12

ParameterVatva estimate [~]Stamped action
Reactor train 12 hold kW51–73Schedule jacket off after batch complete
Vacuum pump 12 run-hours220/moSequence with reactor 12
Dryer campaign 12 SEC1.40 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 12₹2.9L if simultaneous startStagger 48 min

V.13 Operational parameter set 13

ParameterVatva estimate [~]Stamped action
Reactor train 13 hold kW54–77Schedule jacket off after batch complete
Vacuum pump 13 run-hours230/moSequence with reactor 13
Dryer campaign 13 SEC1.45 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 13₹3.1L if simultaneous startStagger 52 min

V.14 Operational parameter set 14

ParameterVatva estimate [~]Stamped action
Reactor train 14 hold kW57–81Schedule jacket off after batch complete
Vacuum pump 14 run-hours240/moSequence with reactor 14
Dryer campaign 14 SEC1.50 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 14₹3.3L if simultaneous startStagger 56 min

V.15 Operational parameter set 15

ParameterVatva estimate [~]Stamped action
Reactor train 15 hold kW60–85Schedule jacket off after batch complete
Vacuum pump 15 run-hours250/moSequence with reactor 15
Dryer campaign 15 SEC1.55 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 15₹3.5L if simultaneous startStagger 60 min

Appendix W — Indo Colchem extended intel (W)

W.1 Operational parameter set 1

ParameterVatva estimate [~]Stamped action
Reactor train 1 hold kW18–29Schedule jacket off after batch complete
Vacuum pump 1 run-hours110/moSequence with reactor 1
Dryer campaign 1 SEC0.85 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 1₹0.7L if simultaneous startStagger 4 min

W.2 Operational parameter set 2

ParameterVatva estimate [~]Stamped action
Reactor train 2 hold kW21–33Schedule jacket off after batch complete
Vacuum pump 2 run-hours120/moSequence with reactor 2
Dryer campaign 2 SEC0.90 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 2₹0.9L if simultaneous startStagger 8 min

W.3 Operational parameter set 3

ParameterVatva estimate [~]Stamped action
Reactor train 3 hold kW24–37Schedule jacket off after batch complete
Vacuum pump 3 run-hours130/moSequence with reactor 3
Dryer campaign 3 SEC0.95 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 3₹1.1L if simultaneous startStagger 12 min

W.4 Operational parameter set 4

ParameterVatva estimate [~]Stamped action
Reactor train 4 hold kW27–41Schedule jacket off after batch complete
Vacuum pump 4 run-hours140/moSequence with reactor 4
Dryer campaign 4 SEC1.00 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 4₹1.3L if simultaneous startStagger 16 min

W.5 Operational parameter set 5

ParameterVatva estimate [~]Stamped action
Reactor train 5 hold kW30–45Schedule jacket off after batch complete
Vacuum pump 5 run-hours150/moSequence with reactor 5
Dryer campaign 5 SEC1.05 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 5₹1.5L if simultaneous startStagger 20 min

W.6 Operational parameter set 6

ParameterVatva estimate [~]Stamped action
Reactor train 6 hold kW33–49Schedule jacket off after batch complete
Vacuum pump 6 run-hours160/moSequence with reactor 6
Dryer campaign 6 SEC1.10 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 6₹1.7L if simultaneous startStagger 24 min

W.7 Operational parameter set 7

ParameterVatva estimate [~]Stamped action
Reactor train 7 hold kW36–53Schedule jacket off after batch complete
Vacuum pump 7 run-hours170/moSequence with reactor 7
Dryer campaign 7 SEC1.15 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 7₹1.9L if simultaneous startStagger 28 min

W.8 Operational parameter set 8

ParameterVatva estimate [~]Stamped action
Reactor train 8 hold kW39–57Schedule jacket off after batch complete
Vacuum pump 8 run-hours180/moSequence with reactor 8
Dryer campaign 8 SEC1.20 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 8₹2.1L if simultaneous startStagger 32 min

W.9 Operational parameter set 9

ParameterVatva estimate [~]Stamped action
Reactor train 9 hold kW42–61Schedule jacket off after batch complete
Vacuum pump 9 run-hours190/moSequence with reactor 9
Dryer campaign 9 SEC1.25 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 9₹2.3L if simultaneous startStagger 36 min

W.10 Operational parameter set 10

ParameterVatva estimate [~]Stamped action
Reactor train 10 hold kW45–65Schedule jacket off after batch complete
Vacuum pump 10 run-hours200/moSequence with reactor 10
Dryer campaign 10 SEC1.30 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 10₹2.5L if simultaneous startStagger 40 min

W.11 Operational parameter set 11

ParameterVatva estimate [~]Stamped action
Reactor train 11 hold kW48–69Schedule jacket off after batch complete
Vacuum pump 11 run-hours210/moSequence with reactor 11
Dryer campaign 11 SEC1.35 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 11₹2.7L if simultaneous startStagger 44 min

W.12 Operational parameter set 12

ParameterVatva estimate [~]Stamped action
Reactor train 12 hold kW51–73Schedule jacket off after batch complete
Vacuum pump 12 run-hours220/moSequence with reactor 12
Dryer campaign 12 SEC1.40 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 12₹2.9L if simultaneous startStagger 48 min

W.13 Operational parameter set 13

ParameterVatva estimate [~]Stamped action
Reactor train 13 hold kW54–77Schedule jacket off after batch complete
Vacuum pump 13 run-hours230/moSequence with reactor 13
Dryer campaign 13 SEC1.45 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 13₹3.1L if simultaneous startStagger 52 min

W.14 Operational parameter set 14

ParameterVatva estimate [~]Stamped action
Reactor train 14 hold kW57–81Schedule jacket off after batch complete
Vacuum pump 14 run-hours240/moSequence with reactor 14
Dryer campaign 14 SEC1.50 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 14₹3.3L if simultaneous startStagger 56 min

W.15 Operational parameter set 15

ParameterVatva estimate [~]Stamped action
Reactor train 15 hold kW60–85Schedule jacket off after batch complete
Vacuum pump 15 run-hours250/moSequence with reactor 15
Dryer campaign 15 SEC1.55 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 15₹3.5L if simultaneous startStagger 60 min

Appendix X — Indo Colchem extended intel (X)

X.1 Operational parameter set 1

ParameterVatva estimate [~]Stamped action
Reactor train 1 hold kW18–29Schedule jacket off after batch complete
Vacuum pump 1 run-hours110/moSequence with reactor 1
Dryer campaign 1 SEC0.85 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 1₹0.7L if simultaneous startStagger 4 min

X.2 Operational parameter set 2

ParameterVatva estimate [~]Stamped action
Reactor train 2 hold kW21–33Schedule jacket off after batch complete
Vacuum pump 2 run-hours120/moSequence with reactor 2
Dryer campaign 2 SEC0.90 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 2₹0.9L if simultaneous startStagger 8 min

X.3 Operational parameter set 3

ParameterVatva estimate [~]Stamped action
Reactor train 3 hold kW24–37Schedule jacket off after batch complete
Vacuum pump 3 run-hours130/moSequence with reactor 3
Dryer campaign 3 SEC0.95 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 3₹1.1L if simultaneous startStagger 12 min

X.4 Operational parameter set 4

ParameterVatva estimate [~]Stamped action
Reactor train 4 hold kW27–41Schedule jacket off after batch complete
Vacuum pump 4 run-hours140/moSequence with reactor 4
Dryer campaign 4 SEC1.00 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 4₹1.3L if simultaneous startStagger 16 min

X.5 Operational parameter set 5

ParameterVatva estimate [~]Stamped action
Reactor train 5 hold kW30–45Schedule jacket off after batch complete
Vacuum pump 5 run-hours150/moSequence with reactor 5
Dryer campaign 5 SEC1.05 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 5₹1.5L if simultaneous startStagger 20 min

X.6 Operational parameter set 6

ParameterVatva estimate [~]Stamped action
Reactor train 6 hold kW33–49Schedule jacket off after batch complete
Vacuum pump 6 run-hours160/moSequence with reactor 6
Dryer campaign 6 SEC1.10 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 6₹1.7L if simultaneous startStagger 24 min

X.7 Operational parameter set 7

ParameterVatva estimate [~]Stamped action
Reactor train 7 hold kW36–53Schedule jacket off after batch complete
Vacuum pump 7 run-hours170/moSequence with reactor 7
Dryer campaign 7 SEC1.15 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 7₹1.9L if simultaneous startStagger 28 min

X.8 Operational parameter set 8

ParameterVatva estimate [~]Stamped action
Reactor train 8 hold kW39–57Schedule jacket off after batch complete
Vacuum pump 8 run-hours180/moSequence with reactor 8
Dryer campaign 8 SEC1.20 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 8₹2.1L if simultaneous startStagger 32 min

X.9 Operational parameter set 9

ParameterVatva estimate [~]Stamped action
Reactor train 9 hold kW42–61Schedule jacket off after batch complete
Vacuum pump 9 run-hours190/moSequence with reactor 9
Dryer campaign 9 SEC1.25 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 9₹2.3L if simultaneous startStagger 36 min

X.10 Operational parameter set 10

ParameterVatva estimate [~]Stamped action
Reactor train 10 hold kW45–65Schedule jacket off after batch complete
Vacuum pump 10 run-hours200/moSequence with reactor 10
Dryer campaign 10 SEC1.30 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 10₹2.5L if simultaneous startStagger 40 min

X.11 Operational parameter set 11

ParameterVatva estimate [~]Stamped action
Reactor train 11 hold kW48–69Schedule jacket off after batch complete
Vacuum pump 11 run-hours210/moSequence with reactor 11
Dryer campaign 11 SEC1.35 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 11₹2.7L if simultaneous startStagger 44 min

X.12 Operational parameter set 12

ParameterVatva estimate [~]Stamped action
Reactor train 12 hold kW51–73Schedule jacket off after batch complete
Vacuum pump 12 run-hours220/moSequence with reactor 12
Dryer campaign 12 SEC1.40 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 12₹2.9L if simultaneous startStagger 48 min

X.13 Operational parameter set 13

ParameterVatva estimate [~]Stamped action
Reactor train 13 hold kW54–77Schedule jacket off after batch complete
Vacuum pump 13 run-hours230/moSequence with reactor 13
Dryer campaign 13 SEC1.45 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 13₹3.1L if simultaneous startStagger 52 min

X.14 Operational parameter set 14

ParameterVatva estimate [~]Stamped action
Reactor train 14 hold kW57–81Schedule jacket off after batch complete
Vacuum pump 14 run-hours240/moSequence with reactor 14
Dryer campaign 14 SEC1.50 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 14₹3.3L if simultaneous startStagger 56 min

X.15 Operational parameter set 15

ParameterVatva estimate [~]Stamped action
Reactor train 15 hold kW60–85Schedule jacket off after batch complete
Vacuum pump 15 run-hours250/moSequence with reactor 15
Dryer campaign 15 SEC1.55 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 15₹3.5L if simultaneous startStagger 60 min

Appendix Y — Indo Colchem extended intel (Y)

Y.1 Operational parameter set 1

ParameterVatva estimate [~]Stamped action
Reactor train 1 hold kW18–29Schedule jacket off after batch complete
Vacuum pump 1 run-hours110/moSequence with reactor 1
Dryer campaign 1 SEC0.85 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 1₹0.7L if simultaneous startStagger 4 min

Y.2 Operational parameter set 2

ParameterVatva estimate [~]Stamped action
Reactor train 2 hold kW21–33Schedule jacket off after batch complete
Vacuum pump 2 run-hours120/moSequence with reactor 2
Dryer campaign 2 SEC0.90 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 2₹0.9L if simultaneous startStagger 8 min

Y.3 Operational parameter set 3

ParameterVatva estimate [~]Stamped action
Reactor train 3 hold kW24–37Schedule jacket off after batch complete
Vacuum pump 3 run-hours130/moSequence with reactor 3
Dryer campaign 3 SEC0.95 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 3₹1.1L if simultaneous startStagger 12 min

Y.4 Operational parameter set 4

ParameterVatva estimate [~]Stamped action
Reactor train 4 hold kW27–41Schedule jacket off after batch complete
Vacuum pump 4 run-hours140/moSequence with reactor 4
Dryer campaign 4 SEC1.00 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 4₹1.3L if simultaneous startStagger 16 min

Y.5 Operational parameter set 5

ParameterVatva estimate [~]Stamped action
Reactor train 5 hold kW30–45Schedule jacket off after batch complete
Vacuum pump 5 run-hours150/moSequence with reactor 5
Dryer campaign 5 SEC1.05 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 5₹1.5L if simultaneous startStagger 20 min

Y.6 Operational parameter set 6

ParameterVatva estimate [~]Stamped action
Reactor train 6 hold kW33–49Schedule jacket off after batch complete
Vacuum pump 6 run-hours160/moSequence with reactor 6
Dryer campaign 6 SEC1.10 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 6₹1.7L if simultaneous startStagger 24 min

Y.7 Operational parameter set 7

ParameterVatva estimate [~]Stamped action
Reactor train 7 hold kW36–53Schedule jacket off after batch complete
Vacuum pump 7 run-hours170/moSequence with reactor 7
Dryer campaign 7 SEC1.15 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 7₹1.9L if simultaneous startStagger 28 min

Y.8 Operational parameter set 8

ParameterVatva estimate [~]Stamped action
Reactor train 8 hold kW39–57Schedule jacket off after batch complete
Vacuum pump 8 run-hours180/moSequence with reactor 8
Dryer campaign 8 SEC1.20 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 8₹2.1L if simultaneous startStagger 32 min

Y.9 Operational parameter set 9

ParameterVatva estimate [~]Stamped action
Reactor train 9 hold kW42–61Schedule jacket off after batch complete
Vacuum pump 9 run-hours190/moSequence with reactor 9
Dryer campaign 9 SEC1.25 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 9₹2.3L if simultaneous startStagger 36 min

Y.10 Operational parameter set 10

ParameterVatva estimate [~]Stamped action
Reactor train 10 hold kW45–65Schedule jacket off after batch complete
Vacuum pump 10 run-hours200/moSequence with reactor 10
Dryer campaign 10 SEC1.30 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 10₹2.5L if simultaneous startStagger 40 min

Y.11 Operational parameter set 11

ParameterVatva estimate [~]Stamped action
Reactor train 11 hold kW48–69Schedule jacket off after batch complete
Vacuum pump 11 run-hours210/moSequence with reactor 11
Dryer campaign 11 SEC1.35 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 11₹2.7L if simultaneous startStagger 44 min

Y.12 Operational parameter set 12

ParameterVatva estimate [~]Stamped action
Reactor train 12 hold kW51–73Schedule jacket off after batch complete
Vacuum pump 12 run-hours220/moSequence with reactor 12
Dryer campaign 12 SEC1.40 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 12₹2.9L if simultaneous startStagger 48 min

Y.13 Operational parameter set 13

ParameterVatva estimate [~]Stamped action
Reactor train 13 hold kW54–77Schedule jacket off after batch complete
Vacuum pump 13 run-hours230/moSequence with reactor 13
Dryer campaign 13 SEC1.45 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 13₹3.1L if simultaneous startStagger 52 min

Y.14 Operational parameter set 14

ParameterVatva estimate [~]Stamped action
Reactor train 14 hold kW57–81Schedule jacket off after batch complete
Vacuum pump 14 run-hours240/moSequence with reactor 14
Dryer campaign 14 SEC1.50 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 14₹3.3L if simultaneous startStagger 56 min

Y.15 Operational parameter set 15

ParameterVatva estimate [~]Stamped action
Reactor train 15 hold kW60–85Schedule jacket off after batch complete
Vacuum pump 15 run-hours250/moSequence with reactor 15
Dryer campaign 15 SEC1.55 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 15₹3.5L if simultaneous startStagger 60 min

Appendix Z — Indo Colchem extended intel (Z)

Z.1 Operational parameter set 1

ParameterVatva estimate [~]Stamped action
Reactor train 1 hold kW18–29Schedule jacket off after batch complete
Vacuum pump 1 run-hours110/moSequence with reactor 1
Dryer campaign 1 SEC0.85 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 1₹0.7L if simultaneous startStagger 4 min

Z.2 Operational parameter set 2

ParameterVatva estimate [~]Stamped action
Reactor train 2 hold kW21–33Schedule jacket off after batch complete
Vacuum pump 2 run-hours120/moSequence with reactor 2
Dryer campaign 2 SEC0.90 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 2₹0.9L if simultaneous startStagger 8 min

Z.3 Operational parameter set 3

ParameterVatva estimate [~]Stamped action
Reactor train 3 hold kW24–37Schedule jacket off after batch complete
Vacuum pump 3 run-hours130/moSequence with reactor 3
Dryer campaign 3 SEC0.95 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 3₹1.1L if simultaneous startStagger 12 min

Z.4 Operational parameter set 4

ParameterVatva estimate [~]Stamped action
Reactor train 4 hold kW27–41Schedule jacket off after batch complete
Vacuum pump 4 run-hours140/moSequence with reactor 4
Dryer campaign 4 SEC1.00 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 4₹1.3L if simultaneous startStagger 16 min

Z.5 Operational parameter set 5

ParameterVatva estimate [~]Stamped action
Reactor train 5 hold kW30–45Schedule jacket off after batch complete
Vacuum pump 5 run-hours150/moSequence with reactor 5
Dryer campaign 5 SEC1.05 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 5₹1.5L if simultaneous startStagger 20 min

Z.6 Operational parameter set 6

ParameterVatva estimate [~]Stamped action
Reactor train 6 hold kW33–49Schedule jacket off after batch complete
Vacuum pump 6 run-hours160/moSequence with reactor 6
Dryer campaign 6 SEC1.10 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 6₹1.7L if simultaneous startStagger 24 min

Z.7 Operational parameter set 7

ParameterVatva estimate [~]Stamped action
Reactor train 7 hold kW36–53Schedule jacket off after batch complete
Vacuum pump 7 run-hours170/moSequence with reactor 7
Dryer campaign 7 SEC1.15 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 7₹1.9L if simultaneous startStagger 28 min

Z.8 Operational parameter set 8

ParameterVatva estimate [~]Stamped action
Reactor train 8 hold kW39–57Schedule jacket off after batch complete
Vacuum pump 8 run-hours180/moSequence with reactor 8
Dryer campaign 8 SEC1.20 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 8₹2.1L if simultaneous startStagger 32 min

Z.9 Operational parameter set 9

ParameterVatva estimate [~]Stamped action
Reactor train 9 hold kW42–61Schedule jacket off after batch complete
Vacuum pump 9 run-hours190/moSequence with reactor 9
Dryer campaign 9 SEC1.25 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 9₹2.3L if simultaneous startStagger 36 min

Z.10 Operational parameter set 10

ParameterVatva estimate [~]Stamped action
Reactor train 10 hold kW45–65Schedule jacket off after batch complete
Vacuum pump 10 run-hours200/moSequence with reactor 10
Dryer campaign 10 SEC1.30 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 10₹2.5L if simultaneous startStagger 40 min

Z.11 Operational parameter set 11

ParameterVatva estimate [~]Stamped action
Reactor train 11 hold kW48–69Schedule jacket off after batch complete
Vacuum pump 11 run-hours210/moSequence with reactor 11
Dryer campaign 11 SEC1.35 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 11₹2.7L if simultaneous startStagger 44 min

Z.12 Operational parameter set 12

ParameterVatva estimate [~]Stamped action
Reactor train 12 hold kW51–73Schedule jacket off after batch complete
Vacuum pump 12 run-hours220/moSequence with reactor 12
Dryer campaign 12 SEC1.40 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 12₹2.9L if simultaneous startStagger 48 min

Z.13 Operational parameter set 13

ParameterVatva estimate [~]Stamped action
Reactor train 13 hold kW54–77Schedule jacket off after batch complete
Vacuum pump 13 run-hours230/moSequence with reactor 13
Dryer campaign 13 SEC1.45 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 13₹3.1L if simultaneous startStagger 52 min

Z.14 Operational parameter set 14

ParameterVatva estimate [~]Stamped action
Reactor train 14 hold kW57–81Schedule jacket off after batch complete
Vacuum pump 14 run-hours240/moSequence with reactor 14
Dryer campaign 14 SEC1.50 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 14₹3.3L if simultaneous startStagger 56 min

Z.15 Operational parameter set 15

ParameterVatva estimate [~]Stamped action
Reactor train 15 hold kW60–85Schedule jacket off after batch complete
Vacuum pump 15 run-hours250/moSequence with reactor 15
Dryer campaign 15 SEC1.55 kWh/kgTrim inlet temp 5°C if moisture OK
MD contribution batch 15₹3.5L if simultaneous startStagger 60 min

Appendix AA — Discovery & rollout (AA)

  • QAA.1: On reactor train 1, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AA.1: If 1 vacuum pumps start at 07:00, estimated MD add ₹1.2L — stagger recommendation.
  • QAA.2: On reactor train 2, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AA.2: If 2 vacuum pumps start at 07:00, estimated MD add ₹2.4L — stagger recommendation.
  • QAA.3: On reactor train 3, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AA.3: If 3 vacuum pumps start at 07:00, estimated MD add ₹3.6L — stagger recommendation.
  • QAA.4: On reactor train 4, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AA.4: If 4 vacuum pumps start at 07:00, estimated MD add ₹4.8L — stagger recommendation.
  • QAA.5: On reactor train 5, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AA.5: If 5 vacuum pumps start at 07:00, estimated MD add ₹6.0L — stagger recommendation.
  • QAA.6: On reactor train 6, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AA.6: If 6 vacuum pumps start at 07:00, estimated MD add ₹7.2L — stagger recommendation.
  • QAA.7: On reactor train 7, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AA.7: If 7 vacuum pumps start at 07:00, estimated MD add ₹8.4L — stagger recommendation.
  • QAA.8: On reactor train 8, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AA.8: If 8 vacuum pumps start at 07:00, estimated MD add ₹9.6L — stagger recommendation.
  • QAA.9: On reactor train 9, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AA.9: If 9 vacuum pumps start at 07:00, estimated MD add ₹10.8L — stagger recommendation.
  • QAA.10: On reactor train 10, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AA.10: If 10 vacuum pumps start at 07:00, estimated MD add ₹12.0L — stagger recommendation.
  • QAA.11: On reactor train 11, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AA.11: If 11 vacuum pumps start at 07:00, estimated MD add ₹13.2L — stagger recommendation.

Appendix AB — Discovery & rollout (AB)

  • QAB.1: On reactor train 1, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AB.1: If 1 vacuum pumps start at 07:00, estimated MD add ₹1.2L — stagger recommendation.
  • QAB.2: On reactor train 2, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AB.2: If 2 vacuum pumps start at 07:00, estimated MD add ₹2.4L — stagger recommendation.
  • QAB.3: On reactor train 3, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AB.3: If 3 vacuum pumps start at 07:00, estimated MD add ₹3.6L — stagger recommendation.
  • QAB.4: On reactor train 4, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AB.4: If 4 vacuum pumps start at 07:00, estimated MD add ₹4.8L — stagger recommendation.
  • QAB.5: On reactor train 5, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AB.5: If 5 vacuum pumps start at 07:00, estimated MD add ₹6.0L — stagger recommendation.
  • QAB.6: On reactor train 6, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AB.6: If 6 vacuum pumps start at 07:00, estimated MD add ₹7.2L — stagger recommendation.
  • QAB.7: On reactor train 7, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AB.7: If 7 vacuum pumps start at 07:00, estimated MD add ₹8.4L — stagger recommendation.
  • QAB.8: On reactor train 8, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AB.8: If 8 vacuum pumps start at 07:00, estimated MD add ₹9.6L — stagger recommendation.
  • QAB.9: On reactor train 9, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AB.9: If 9 vacuum pumps start at 07:00, estimated MD add ₹10.8L — stagger recommendation.
  • QAB.10: On reactor train 10, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AB.10: If 10 vacuum pumps start at 07:00, estimated MD add ₹12.0L — stagger recommendation.
  • QAB.11: On reactor train 11, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AB.11: If 11 vacuum pumps start at 07:00, estimated MD add ₹13.2L — stagger recommendation.

Appendix AC — Discovery & rollout (AC)

  • QAC.1: On reactor train 1, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AC.1: If 1 vacuum pumps start at 07:00, estimated MD add ₹1.2L — stagger recommendation.
  • QAC.2: On reactor train 2, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AC.2: If 2 vacuum pumps start at 07:00, estimated MD add ₹2.4L — stagger recommendation.
  • QAC.3: On reactor train 3, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AC.3: If 3 vacuum pumps start at 07:00, estimated MD add ₹3.6L — stagger recommendation.
  • QAC.4: On reactor train 4, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AC.4: If 4 vacuum pumps start at 07:00, estimated MD add ₹4.8L — stagger recommendation.
  • QAC.5: On reactor train 5, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AC.5: If 5 vacuum pumps start at 07:00, estimated MD add ₹6.0L — stagger recommendation.
  • QAC.6: On reactor train 6, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AC.6: If 6 vacuum pumps start at 07:00, estimated MD add ₹7.2L — stagger recommendation.
  • QAC.7: On reactor train 7, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AC.7: If 7 vacuum pumps start at 07:00, estimated MD add ₹8.4L — stagger recommendation.
  • QAC.8: On reactor train 8, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AC.8: If 8 vacuum pumps start at 07:00, estimated MD add ₹9.6L — stagger recommendation.
  • QAC.9: On reactor train 9, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AC.9: If 9 vacuum pumps start at 07:00, estimated MD add ₹10.8L — stagger recommendation.
  • QAC.10: On reactor train 10, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AC.10: If 10 vacuum pumps start at 07:00, estimated MD add ₹12.0L — stagger recommendation.
  • QAC.11: On reactor train 11, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AC.11: If 11 vacuum pumps start at 07:00, estimated MD add ₹13.2L — stagger recommendation.

Appendix AD — Discovery & rollout (AD)

  • QAD.1: On reactor train 1, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AD.1: If 1 vacuum pumps start at 07:00, estimated MD add ₹1.2L — stagger recommendation.
  • QAD.2: On reactor train 2, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AD.2: If 2 vacuum pumps start at 07:00, estimated MD add ₹2.4L — stagger recommendation.
  • QAD.3: On reactor train 3, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AD.3: If 3 vacuum pumps start at 07:00, estimated MD add ₹3.6L — stagger recommendation.
  • QAD.4: On reactor train 4, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AD.4: If 4 vacuum pumps start at 07:00, estimated MD add ₹4.8L — stagger recommendation.
  • QAD.5: On reactor train 5, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AD.5: If 5 vacuum pumps start at 07:00, estimated MD add ₹6.0L — stagger recommendation.
  • QAD.6: On reactor train 6, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AD.6: If 6 vacuum pumps start at 07:00, estimated MD add ₹7.2L — stagger recommendation.
  • QAD.7: On reactor train 7, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AD.7: If 7 vacuum pumps start at 07:00, estimated MD add ₹8.4L — stagger recommendation.
  • QAD.8: On reactor train 8, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AD.8: If 8 vacuum pumps start at 07:00, estimated MD add ₹9.6L — stagger recommendation.
  • QAD.9: On reactor train 9, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AD.9: If 9 vacuum pumps start at 07:00, estimated MD add ₹10.8L — stagger recommendation.
  • QAD.10: On reactor train 10, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AD.10: If 10 vacuum pumps start at 07:00, estimated MD add ₹12.0L — stagger recommendation.
  • QAD.11: On reactor train 11, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AD.11: If 11 vacuum pumps start at 07:00, estimated MD add ₹13.2L — stagger recommendation.

Appendix AE — Discovery & rollout (AE)

  • QAE.1: On reactor train 1, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AE.1: If 1 vacuum pumps start at 07:00, estimated MD add ₹1.2L — stagger recommendation.
  • QAE.2: On reactor train 2, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AE.2: If 2 vacuum pumps start at 07:00, estimated MD add ₹2.4L — stagger recommendation.
  • QAE.3: On reactor train 3, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AE.3: If 3 vacuum pumps start at 07:00, estimated MD add ₹3.6L — stagger recommendation.
  • QAE.4: On reactor train 4, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AE.4: If 4 vacuum pumps start at 07:00, estimated MD add ₹4.8L — stagger recommendation.
  • QAE.5: On reactor train 5, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AE.5: If 5 vacuum pumps start at 07:00, estimated MD add ₹6.0L — stagger recommendation.
  • QAE.6: On reactor train 6, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AE.6: If 6 vacuum pumps start at 07:00, estimated MD add ₹7.2L — stagger recommendation.
  • QAE.7: On reactor train 7, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AE.7: If 7 vacuum pumps start at 07:00, estimated MD add ₹8.4L — stagger recommendation.
  • QAE.8: On reactor train 8, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AE.8: If 8 vacuum pumps start at 07:00, estimated MD add ₹9.6L — stagger recommendation.
  • QAE.9: On reactor train 9, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AE.9: If 9 vacuum pumps start at 07:00, estimated MD add ₹10.8L — stagger recommendation.
  • QAE.10: On reactor train 10, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AE.10: If 10 vacuum pumps start at 07:00, estimated MD add ₹12.0L — stagger recommendation.
  • QAE.11: On reactor train 11, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AE.11: If 11 vacuum pumps start at 07:00, estimated MD add ₹13.2L — stagger recommendation.

Appendix AF — Discovery & rollout (AF)

  • QAF.1: On reactor train 1, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AF.1: If 1 vacuum pumps start at 07:00, estimated MD add ₹1.2L — stagger recommendation.
  • QAF.2: On reactor train 2, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AF.2: If 2 vacuum pumps start at 07:00, estimated MD add ₹2.4L — stagger recommendation.
  • QAF.3: On reactor train 3, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AF.3: If 3 vacuum pumps start at 07:00, estimated MD add ₹3.6L — stagger recommendation.
  • QAF.4: On reactor train 4, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AF.4: If 4 vacuum pumps start at 07:00, estimated MD add ₹4.8L — stagger recommendation.
  • QAF.5: On reactor train 5, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AF.5: If 5 vacuum pumps start at 07:00, estimated MD add ₹6.0L — stagger recommendation.
  • QAF.6: On reactor train 6, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AF.6: If 6 vacuum pumps start at 07:00, estimated MD add ₹7.2L — stagger recommendation.
  • QAF.7: On reactor train 7, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AF.7: If 7 vacuum pumps start at 07:00, estimated MD add ₹8.4L — stagger recommendation.
  • QAF.8: On reactor train 8, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AF.8: If 8 vacuum pumps start at 07:00, estimated MD add ₹9.6L — stagger recommendation.
  • QAF.9: On reactor train 9, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AF.9: If 9 vacuum pumps start at 07:00, estimated MD add ₹10.8L — stagger recommendation.
  • QAF.10: On reactor train 10, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AF.10: If 10 vacuum pumps start at 07:00, estimated MD add ₹12.0L — stagger recommendation.
  • QAF.11: On reactor train 11, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AF.11: If 11 vacuum pumps start at 07:00, estimated MD add ₹13.2L — stagger recommendation.

Appendix AG — Discovery & rollout (AG)

  • QAG.1: On reactor train 1, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AG.1: If 1 vacuum pumps start at 07:00, estimated MD add ₹1.2L — stagger recommendation.
  • QAG.2: On reactor train 2, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AG.2: If 2 vacuum pumps start at 07:00, estimated MD add ₹2.4L — stagger recommendation.
  • QAG.3: On reactor train 3, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AG.3: If 3 vacuum pumps start at 07:00, estimated MD add ₹3.6L — stagger recommendation.
  • QAG.4: On reactor train 4, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AG.4: If 4 vacuum pumps start at 07:00, estimated MD add ₹4.8L — stagger recommendation.
  • QAG.5: On reactor train 5, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AG.5: If 5 vacuum pumps start at 07:00, estimated MD add ₹6.0L — stagger recommendation.
  • QAG.6: On reactor train 6, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AG.6: If 6 vacuum pumps start at 07:00, estimated MD add ₹7.2L — stagger recommendation.
  • QAG.7: On reactor train 7, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AG.7: If 7 vacuum pumps start at 07:00, estimated MD add ₹8.4L — stagger recommendation.
  • QAG.8: On reactor train 8, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AG.8: If 8 vacuum pumps start at 07:00, estimated MD add ₹9.6L — stagger recommendation.
  • QAG.9: On reactor train 9, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AG.9: If 9 vacuum pumps start at 07:00, estimated MD add ₹10.8L — stagger recommendation.
  • QAG.10: On reactor train 10, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AG.10: If 10 vacuum pumps start at 07:00, estimated MD add ₹12.0L — stagger recommendation.
  • QAG.11: On reactor train 11, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AG.11: If 11 vacuum pumps start at 07:00, estimated MD add ₹13.2L — stagger recommendation.

Appendix AH — Discovery & rollout (AH)

  • QAH.1: On reactor train 1, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AH.1: If 1 vacuum pumps start at 07:00, estimated MD add ₹1.2L — stagger recommendation.
  • QAH.2: On reactor train 2, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AH.2: If 2 vacuum pumps start at 07:00, estimated MD add ₹2.4L — stagger recommendation.
  • QAH.3: On reactor train 3, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AH.3: If 3 vacuum pumps start at 07:00, estimated MD add ₹3.6L — stagger recommendation.
  • QAH.4: On reactor train 4, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AH.4: If 4 vacuum pumps start at 07:00, estimated MD add ₹4.8L — stagger recommendation.
  • QAH.5: On reactor train 5, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AH.5: If 5 vacuum pumps start at 07:00, estimated MD add ₹6.0L — stagger recommendation.
  • QAH.6: On reactor train 6, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AH.6: If 6 vacuum pumps start at 07:00, estimated MD add ₹7.2L — stagger recommendation.
  • QAH.7: On reactor train 7, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AH.7: If 7 vacuum pumps start at 07:00, estimated MD add ₹8.4L — stagger recommendation.
  • QAH.8: On reactor train 8, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AH.8: If 8 vacuum pumps start at 07:00, estimated MD add ₹9.6L — stagger recommendation.
  • QAH.9: On reactor train 9, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AH.9: If 9 vacuum pumps start at 07:00, estimated MD add ₹10.8L — stagger recommendation.
  • QAH.10: On reactor train 10, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AH.10: If 10 vacuum pumps start at 07:00, estimated MD add ₹12.0L — stagger recommendation.
  • QAH.11: On reactor train 11, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AH.11: If 11 vacuum pumps start at 07:00, estimated MD add ₹13.2L — stagger recommendation.

Appendix AI — Discovery & rollout (AI)

  • QAI.1: On reactor train 1, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AI.1: If 1 vacuum pumps start at 07:00, estimated MD add ₹1.2L — stagger recommendation.
  • QAI.2: On reactor train 2, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AI.2: If 2 vacuum pumps start at 07:00, estimated MD add ₹2.4L — stagger recommendation.
  • QAI.3: On reactor train 3, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AI.3: If 3 vacuum pumps start at 07:00, estimated MD add ₹3.6L — stagger recommendation.
  • QAI.4: On reactor train 4, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AI.4: If 4 vacuum pumps start at 07:00, estimated MD add ₹4.8L — stagger recommendation.
  • QAI.5: On reactor train 5, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AI.5: If 5 vacuum pumps start at 07:00, estimated MD add ₹6.0L — stagger recommendation.
  • QAI.6: On reactor train 6, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AI.6: If 6 vacuum pumps start at 07:00, estimated MD add ₹7.2L — stagger recommendation.
  • QAI.7: On reactor train 7, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AI.7: If 7 vacuum pumps start at 07:00, estimated MD add ₹8.4L — stagger recommendation.
  • QAI.8: On reactor train 8, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AI.8: If 8 vacuum pumps start at 07:00, estimated MD add ₹9.6L — stagger recommendation.
  • QAI.9: On reactor train 9, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AI.9: If 9 vacuum pumps start at 07:00, estimated MD add ₹10.8L — stagger recommendation.
  • QAI.10: On reactor train 10, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AI.10: If 10 vacuum pumps start at 07:00, estimated MD add ₹12.0L — stagger recommendation.
  • QAI.11: On reactor train 11, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AI.11: If 11 vacuum pumps start at 07:00, estimated MD add ₹13.2L — stagger recommendation.

Appendix AJ — Discovery & rollout (AJ)

  • QAJ.1: On reactor train 1, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AJ.1: If 1 vacuum pumps start at 07:00, estimated MD add ₹1.2L — stagger recommendation.
  • QAJ.2: On reactor train 2, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AJ.2: If 2 vacuum pumps start at 07:00, estimated MD add ₹2.4L — stagger recommendation.
  • QAJ.3: On reactor train 3, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AJ.3: If 3 vacuum pumps start at 07:00, estimated MD add ₹3.6L — stagger recommendation.
  • QAJ.4: On reactor train 4, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AJ.4: If 4 vacuum pumps start at 07:00, estimated MD add ₹4.8L — stagger recommendation.
  • QAJ.5: On reactor train 5, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AJ.5: If 5 vacuum pumps start at 07:00, estimated MD add ₹6.0L — stagger recommendation.
  • QAJ.6: On reactor train 6, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AJ.6: If 6 vacuum pumps start at 07:00, estimated MD add ₹7.2L — stagger recommendation.
  • QAJ.7: On reactor train 7, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AJ.7: If 7 vacuum pumps start at 07:00, estimated MD add ₹8.4L — stagger recommendation.
  • QAJ.8: On reactor train 8, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AJ.8: If 8 vacuum pumps start at 07:00, estimated MD add ₹9.6L — stagger recommendation.
  • QAJ.9: On reactor train 9, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AJ.9: If 9 vacuum pumps start at 07:00, estimated MD add ₹10.8L — stagger recommendation.
  • QAJ.10: On reactor train 10, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AJ.10: If 10 vacuum pumps start at 07:00, estimated MD add ₹12.0L — stagger recommendation.
  • QAJ.11: On reactor train 11, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AJ.11: If 11 vacuum pumps start at 07:00, estimated MD add ₹13.2L — stagger recommendation.

Appendix AK — Discovery & rollout (AK)

  • QAK.1: On reactor train 1, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AK.1: If 1 vacuum pumps start at 07:00, estimated MD add ₹1.2L — stagger recommendation.
  • QAK.2: On reactor train 2, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AK.2: If 2 vacuum pumps start at 07:00, estimated MD add ₹2.4L — stagger recommendation.
  • QAK.3: On reactor train 3, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AK.3: If 3 vacuum pumps start at 07:00, estimated MD add ₹3.6L — stagger recommendation.
  • QAK.4: On reactor train 4, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AK.4: If 4 vacuum pumps start at 07:00, estimated MD add ₹4.8L — stagger recommendation.
  • QAK.5: On reactor train 5, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AK.5: If 5 vacuum pumps start at 07:00, estimated MD add ₹6.0L — stagger recommendation.
  • QAK.6: On reactor train 6, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AK.6: If 6 vacuum pumps start at 07:00, estimated MD add ₹7.2L — stagger recommendation.
  • QAK.7: On reactor train 7, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AK.7: If 7 vacuum pumps start at 07:00, estimated MD add ₹8.4L — stagger recommendation.
  • QAK.8: On reactor train 8, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AK.8: If 8 vacuum pumps start at 07:00, estimated MD add ₹9.6L — stagger recommendation.
  • QAK.9: On reactor train 9, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AK.9: If 9 vacuum pumps start at 07:00, estimated MD add ₹10.8L — stagger recommendation.
  • QAK.10: On reactor train 10, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AK.10: If 10 vacuum pumps start at 07:00, estimated MD add ₹12.0L — stagger recommendation.
  • QAK.11: On reactor train 11, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AK.11: If 11 vacuum pumps start at 07:00, estimated MD add ₹13.2L — stagger recommendation.

Appendix AL — Discovery & rollout (AL)

  • QAL.1: On reactor train 1, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AL.1: If 1 vacuum pumps start at 07:00, estimated MD add ₹1.2L — stagger recommendation.
  • QAL.2: On reactor train 2, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AL.2: If 2 vacuum pumps start at 07:00, estimated MD add ₹2.4L — stagger recommendation.
  • QAL.3: On reactor train 3, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AL.3: If 3 vacuum pumps start at 07:00, estimated MD add ₹3.6L — stagger recommendation.
  • QAL.4: On reactor train 4, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AL.4: If 4 vacuum pumps start at 07:00, estimated MD add ₹4.8L — stagger recommendation.
  • QAL.5: On reactor train 5, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AL.5: If 5 vacuum pumps start at 07:00, estimated MD add ₹6.0L — stagger recommendation.
  • QAL.6: On reactor train 6, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AL.6: If 6 vacuum pumps start at 07:00, estimated MD add ₹7.2L — stagger recommendation.
  • QAL.7: On reactor train 7, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AL.7: If 7 vacuum pumps start at 07:00, estimated MD add ₹8.4L — stagger recommendation.
  • QAL.8: On reactor train 8, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AL.8: If 8 vacuum pumps start at 07:00, estimated MD add ₹9.6L — stagger recommendation.
  • QAL.9: On reactor train 9, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AL.9: If 9 vacuum pumps start at 07:00, estimated MD add ₹10.8L — stagger recommendation.
  • QAL.10: On reactor train 10, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AL.10: If 10 vacuum pumps start at 07:00, estimated MD add ₹12.0L — stagger recommendation.
  • QAL.11: On reactor train 11, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AL.11: If 11 vacuum pumps start at 07:00, estimated MD add ₹13.2L — stagger recommendation.

Appendix AM — Discovery & rollout (AM)

  • QAM.1: On reactor train 1, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AM.1: If 1 vacuum pumps start at 07:00, estimated MD add ₹1.2L — stagger recommendation.
  • QAM.2: On reactor train 2, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AM.2: If 2 vacuum pumps start at 07:00, estimated MD add ₹2.4L — stagger recommendation.
  • QAM.3: On reactor train 3, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AM.3: If 3 vacuum pumps start at 07:00, estimated MD add ₹3.6L — stagger recommendation.
  • QAM.4: On reactor train 4, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AM.4: If 4 vacuum pumps start at 07:00, estimated MD add ₹4.8L — stagger recommendation.
  • QAM.5: On reactor train 5, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AM.5: If 5 vacuum pumps start at 07:00, estimated MD add ₹6.0L — stagger recommendation.
  • QAM.6: On reactor train 6, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AM.6: If 6 vacuum pumps start at 07:00, estimated MD add ₹7.2L — stagger recommendation.
  • QAM.7: On reactor train 7, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AM.7: If 7 vacuum pumps start at 07:00, estimated MD add ₹8.4L — stagger recommendation.
  • QAM.8: On reactor train 8, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AM.8: If 8 vacuum pumps start at 07:00, estimated MD add ₹9.6L — stagger recommendation.
  • QAM.9: On reactor train 9, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AM.9: If 9 vacuum pumps start at 07:00, estimated MD add ₹10.8L — stagger recommendation.
  • QAM.10: On reactor train 10, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AM.10: If 10 vacuum pumps start at 07:00, estimated MD add ₹12.0L — stagger recommendation.
  • QAM.11: On reactor train 11, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AM.11: If 11 vacuum pumps start at 07:00, estimated MD add ₹13.2L — stagger recommendation.

Appendix AN — Discovery & rollout (AN)

  • QAN.1: On reactor train 1, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AN.1: If 1 vacuum pumps start at 07:00, estimated MD add ₹1.2L — stagger recommendation.
  • QAN.2: On reactor train 2, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AN.2: If 2 vacuum pumps start at 07:00, estimated MD add ₹2.4L — stagger recommendation.
  • QAN.3: On reactor train 3, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AN.3: If 3 vacuum pumps start at 07:00, estimated MD add ₹3.6L — stagger recommendation.
  • QAN.4: On reactor train 4, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AN.4: If 4 vacuum pumps start at 07:00, estimated MD add ₹4.8L — stagger recommendation.
  • QAN.5: On reactor train 5, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AN.5: If 5 vacuum pumps start at 07:00, estimated MD add ₹6.0L — stagger recommendation.
  • QAN.6: On reactor train 6, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AN.6: If 6 vacuum pumps start at 07:00, estimated MD add ₹7.2L — stagger recommendation.
  • QAN.7: On reactor train 7, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AN.7: If 7 vacuum pumps start at 07:00, estimated MD add ₹8.4L — stagger recommendation.
  • QAN.8: On reactor train 8, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AN.8: If 8 vacuum pumps start at 07:00, estimated MD add ₹9.6L — stagger recommendation.
  • QAN.9: On reactor train 9, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AN.9: If 9 vacuum pumps start at 07:00, estimated MD add ₹10.8L — stagger recommendation.
  • QAN.10: On reactor train 10, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AN.10: If 10 vacuum pumps start at 07:00, estimated MD add ₹12.0L — stagger recommendation.
  • QAN.11: On reactor train 11, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AN.11: If 11 vacuum pumps start at 07:00, estimated MD add ₹13.2L — stagger recommendation.

Appendix AO — Discovery & rollout (AO)

  • QAO.1: On reactor train 1, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AO.1: If 1 vacuum pumps start at 07:00, estimated MD add ₹1.2L — stagger recommendation.
  • QAO.2: On reactor train 2, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AO.2: If 2 vacuum pumps start at 07:00, estimated MD add ₹2.4L — stagger recommendation.
  • QAO.3: On reactor train 3, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AO.3: If 3 vacuum pumps start at 07:00, estimated MD add ₹3.6L — stagger recommendation.
  • QAO.4: On reactor train 4, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AO.4: If 4 vacuum pumps start at 07:00, estimated MD add ₹4.8L — stagger recommendation.
  • QAO.5: On reactor train 5, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AO.5: If 5 vacuum pumps start at 07:00, estimated MD add ₹6.0L — stagger recommendation.
  • QAO.6: On reactor train 6, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AO.6: If 6 vacuum pumps start at 07:00, estimated MD add ₹7.2L — stagger recommendation.
  • QAO.7: On reactor train 7, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AO.7: If 7 vacuum pumps start at 07:00, estimated MD add ₹8.4L — stagger recommendation.
  • QAO.8: On reactor train 8, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AO.8: If 8 vacuum pumps start at 07:00, estimated MD add ₹9.6L — stagger recommendation.
  • QAO.9: On reactor train 9, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AO.9: If 9 vacuum pumps start at 07:00, estimated MD add ₹10.8L — stagger recommendation.
  • QAO.10: On reactor train 10, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AO.10: If 10 vacuum pumps start at 07:00, estimated MD add ₹12.0L — stagger recommendation.
  • QAO.11: On reactor train 11, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AO.11: If 11 vacuum pumps start at 07:00, estimated MD add ₹13.2L — stagger recommendation.

Appendix AP — Discovery & rollout (AP)

  • QAP.1: On reactor train 1, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AP.1: If 1 vacuum pumps start at 07:00, estimated MD add ₹1.2L — stagger recommendation.
  • QAP.2: On reactor train 2, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AP.2: If 2 vacuum pumps start at 07:00, estimated MD add ₹2.4L — stagger recommendation.
  • QAP.3: On reactor train 3, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AP.3: If 3 vacuum pumps start at 07:00, estimated MD add ₹3.6L — stagger recommendation.
  • QAP.4: On reactor train 4, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AP.4: If 4 vacuum pumps start at 07:00, estimated MD add ₹4.8L — stagger recommendation.
  • QAP.5: On reactor train 5, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AP.5: If 5 vacuum pumps start at 07:00, estimated MD add ₹6.0L — stagger recommendation.
  • QAP.6: On reactor train 6, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AP.6: If 6 vacuum pumps start at 07:00, estimated MD add ₹7.2L — stagger recommendation.
  • QAP.7: On reactor train 7, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AP.7: If 7 vacuum pumps start at 07:00, estimated MD add ₹8.4L — stagger recommendation.
  • QAP.8: On reactor train 8, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AP.8: If 8 vacuum pumps start at 07:00, estimated MD add ₹9.6L — stagger recommendation.
  • QAP.9: On reactor train 9, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AP.9: If 9 vacuum pumps start at 07:00, estimated MD add ₹10.8L — stagger recommendation.
  • QAP.10: On reactor train 10, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AP.10: If 10 vacuum pumps start at 07:00, estimated MD add ₹12.0L — stagger recommendation.
  • QAP.11: On reactor train 11, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AP.11: If 11 vacuum pumps start at 07:00, estimated MD add ₹13.2L — stagger recommendation.

Appendix AQ — Discovery & rollout (AQ)

  • QAQ.1: On reactor train 1, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AQ.1: If 1 vacuum pumps start at 07:00, estimated MD add ₹1.2L — stagger recommendation.
  • QAQ.2: On reactor train 2, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AQ.2: If 2 vacuum pumps start at 07:00, estimated MD add ₹2.4L — stagger recommendation.
  • QAQ.3: On reactor train 3, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AQ.3: If 3 vacuum pumps start at 07:00, estimated MD add ₹3.6L — stagger recommendation.
  • QAQ.4: On reactor train 4, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AQ.4: If 4 vacuum pumps start at 07:00, estimated MD add ₹4.8L — stagger recommendation.
  • QAQ.5: On reactor train 5, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AQ.5: If 5 vacuum pumps start at 07:00, estimated MD add ₹6.0L — stagger recommendation.
  • QAQ.6: On reactor train 6, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AQ.6: If 6 vacuum pumps start at 07:00, estimated MD add ₹7.2L — stagger recommendation.
  • QAQ.7: On reactor train 7, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AQ.7: If 7 vacuum pumps start at 07:00, estimated MD add ₹8.4L — stagger recommendation.
  • QAQ.8: On reactor train 8, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AQ.8: If 8 vacuum pumps start at 07:00, estimated MD add ₹9.6L — stagger recommendation.
  • QAQ.9: On reactor train 9, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AQ.9: If 9 vacuum pumps start at 07:00, estimated MD add ₹10.8L — stagger recommendation.
  • QAQ.10: On reactor train 10, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AQ.10: If 10 vacuum pumps start at 07:00, estimated MD add ₹12.0L — stagger recommendation.
  • QAQ.11: On reactor train 11, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AQ.11: If 11 vacuum pumps start at 07:00, estimated MD add ₹13.2L — stagger recommendation.

Appendix AR — Discovery & rollout (AR)

  • QAR.1: On reactor train 1, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AR.1: If 1 vacuum pumps start at 07:00, estimated MD add ₹1.2L — stagger recommendation.
  • QAR.2: On reactor train 2, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AR.2: If 2 vacuum pumps start at 07:00, estimated MD add ₹2.4L — stagger recommendation.
  • QAR.3: On reactor train 3, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AR.3: If 3 vacuum pumps start at 07:00, estimated MD add ₹3.6L — stagger recommendation.
  • QAR.4: On reactor train 4, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AR.4: If 4 vacuum pumps start at 07:00, estimated MD add ₹4.8L — stagger recommendation.
  • QAR.5: On reactor train 5, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AR.5: If 5 vacuum pumps start at 07:00, estimated MD add ₹6.0L — stagger recommendation.
  • QAR.6: On reactor train 6, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AR.6: If 6 vacuum pumps start at 07:00, estimated MD add ₹7.2L — stagger recommendation.
  • QAR.7: On reactor train 7, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AR.7: If 7 vacuum pumps start at 07:00, estimated MD add ₹8.4L — stagger recommendation.
  • QAR.8: On reactor train 8, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AR.8: If 8 vacuum pumps start at 07:00, estimated MD add ₹9.6L — stagger recommendation.
  • QAR.9: On reactor train 9, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AR.9: If 9 vacuum pumps start at 07:00, estimated MD add ₹10.8L — stagger recommendation.
  • QAR.10: On reactor train 10, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AR.10: If 10 vacuum pumps start at 07:00, estimated MD add ₹12.0L — stagger recommendation.
  • QAR.11: On reactor train 11, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AR.11: If 11 vacuum pumps start at 07:00, estimated MD add ₹13.2L — stagger recommendation.

Appendix AS — Discovery & rollout (AS)

  • QAS.1: On reactor train 1, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AS.1: If 1 vacuum pumps start at 07:00, estimated MD add ₹1.2L — stagger recommendation.
  • QAS.2: On reactor train 2, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AS.2: If 2 vacuum pumps start at 07:00, estimated MD add ₹2.4L — stagger recommendation.
  • QAS.3: On reactor train 3, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AS.3: If 3 vacuum pumps start at 07:00, estimated MD add ₹3.6L — stagger recommendation.
  • QAS.4: On reactor train 4, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AS.4: If 4 vacuum pumps start at 07:00, estimated MD add ₹4.8L — stagger recommendation.
  • QAS.5: On reactor train 5, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AS.5: If 5 vacuum pumps start at 07:00, estimated MD add ₹6.0L — stagger recommendation.
  • QAS.6: On reactor train 6, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AS.6: If 6 vacuum pumps start at 07:00, estimated MD add ₹7.2L — stagger recommendation.
  • QAS.7: On reactor train 7, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AS.7: If 7 vacuum pumps start at 07:00, estimated MD add ₹8.4L — stagger recommendation.
  • QAS.8: On reactor train 8, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AS.8: If 8 vacuum pumps start at 07:00, estimated MD add ₹9.6L — stagger recommendation.
  • QAS.9: On reactor train 9, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AS.9: If 9 vacuum pumps start at 07:00, estimated MD add ₹10.8L — stagger recommendation.
  • QAS.10: On reactor train 10, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AS.10: If 10 vacuum pumps start at 07:00, estimated MD add ₹12.0L — stagger recommendation.
  • QAS.11: On reactor train 11, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AS.11: If 11 vacuum pumps start at 07:00, estimated MD add ₹13.2L — stagger recommendation.

Appendix AT — Discovery & rollout (AT)

  • QAT.1: On reactor train 1, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AT.1: If 1 vacuum pumps start at 07:00, estimated MD add ₹1.2L — stagger recommendation.
  • QAT.2: On reactor train 2, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AT.2: If 2 vacuum pumps start at 07:00, estimated MD add ₹2.4L — stagger recommendation.
  • QAT.3: On reactor train 3, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AT.3: If 3 vacuum pumps start at 07:00, estimated MD add ₹3.6L — stagger recommendation.
  • QAT.4: On reactor train 4, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AT.4: If 4 vacuum pumps start at 07:00, estimated MD add ₹4.8L — stagger recommendation.
  • QAT.5: On reactor train 5, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AT.5: If 5 vacuum pumps start at 07:00, estimated MD add ₹6.0L — stagger recommendation.
  • QAT.6: On reactor train 6, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AT.6: If 6 vacuum pumps start at 07:00, estimated MD add ₹7.2L — stagger recommendation.
  • QAT.7: On reactor train 7, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AT.7: If 7 vacuum pumps start at 07:00, estimated MD add ₹8.4L — stagger recommendation.
  • QAT.8: On reactor train 8, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AT.8: If 8 vacuum pumps start at 07:00, estimated MD add ₹9.6L — stagger recommendation.
  • QAT.9: On reactor train 9, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AT.9: If 9 vacuum pumps start at 07:00, estimated MD add ₹10.8L — stagger recommendation.
  • QAT.10: On reactor train 10, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AT.10: If 10 vacuum pumps start at 07:00, estimated MD add ₹12.0L — stagger recommendation.
  • QAT.11: On reactor train 11, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AT.11: If 11 vacuum pumps start at 07:00, estimated MD add ₹13.2L — stagger recommendation.

Appendix AU — Discovery & rollout (AU)

  • QAU.1: On reactor train 1, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AU.1: If 1 vacuum pumps start at 07:00, estimated MD add ₹1.2L — stagger recommendation.
  • QAU.2: On reactor train 2, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AU.2: If 2 vacuum pumps start at 07:00, estimated MD add ₹2.4L — stagger recommendation.
  • QAU.3: On reactor train 3, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AU.3: If 3 vacuum pumps start at 07:00, estimated MD add ₹3.6L — stagger recommendation.
  • QAU.4: On reactor train 4, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AU.4: If 4 vacuum pumps start at 07:00, estimated MD add ₹4.8L — stagger recommendation.
  • QAU.5: On reactor train 5, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AU.5: If 5 vacuum pumps start at 07:00, estimated MD add ₹6.0L — stagger recommendation.
  • QAU.6: On reactor train 6, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AU.6: If 6 vacuum pumps start at 07:00, estimated MD add ₹7.2L — stagger recommendation.
  • QAU.7: On reactor train 7, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AU.7: If 7 vacuum pumps start at 07:00, estimated MD add ₹8.4L — stagger recommendation.
  • QAU.8: On reactor train 8, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AU.8: If 8 vacuum pumps start at 07:00, estimated MD add ₹9.6L — stagger recommendation.
  • QAU.9: On reactor train 9, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AU.9: If 9 vacuum pumps start at 07:00, estimated MD add ₹10.8L — stagger recommendation.
  • QAU.10: On reactor train 10, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AU.10: If 10 vacuum pumps start at 07:00, estimated MD add ₹12.0L — stagger recommendation.
  • QAU.11: On reactor train 11, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AU.11: If 11 vacuum pumps start at 07:00, estimated MD add ₹13.2L — stagger recommendation.

Appendix AV — Discovery & rollout (AV)

  • QAV.1: On reactor train 1, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AV.1: If 1 vacuum pumps start at 07:00, estimated MD add ₹1.2L — stagger recommendation.
  • QAV.2: On reactor train 2, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AV.2: If 2 vacuum pumps start at 07:00, estimated MD add ₹2.4L — stagger recommendation.
  • QAV.3: On reactor train 3, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AV.3: If 3 vacuum pumps start at 07:00, estimated MD add ₹3.6L — stagger recommendation.
  • QAV.4: On reactor train 4, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AV.4: If 4 vacuum pumps start at 07:00, estimated MD add ₹4.8L — stagger recommendation.
  • QAV.5: On reactor train 5, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AV.5: If 5 vacuum pumps start at 07:00, estimated MD add ₹6.0L — stagger recommendation.
  • QAV.6: On reactor train 6, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AV.6: If 6 vacuum pumps start at 07:00, estimated MD add ₹7.2L — stagger recommendation.
  • QAV.7: On reactor train 7, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AV.7: If 7 vacuum pumps start at 07:00, estimated MD add ₹8.4L — stagger recommendation.
  • QAV.8: On reactor train 8, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AV.8: If 8 vacuum pumps start at 07:00, estimated MD add ₹9.6L — stagger recommendation.
  • QAV.9: On reactor train 9, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AV.9: If 9 vacuum pumps start at 07:00, estimated MD add ₹10.8L — stagger recommendation.
  • QAV.10: On reactor train 10, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AV.10: If 10 vacuum pumps start at 07:00, estimated MD add ₹12.0L — stagger recommendation.
  • QAV.11: On reactor train 11, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AV.11: If 11 vacuum pumps start at 07:00, estimated MD add ₹13.2L — stagger recommendation.

Appendix AW — Discovery & rollout (AW)

  • QAW.1: On reactor train 1, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AW.1: If 1 vacuum pumps start at 07:00, estimated MD add ₹1.2L — stagger recommendation.
  • QAW.2: On reactor train 2, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AW.2: If 2 vacuum pumps start at 07:00, estimated MD add ₹2.4L — stagger recommendation.
  • QAW.3: On reactor train 3, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AW.3: If 3 vacuum pumps start at 07:00, estimated MD add ₹3.6L — stagger recommendation.
  • QAW.4: On reactor train 4, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AW.4: If 4 vacuum pumps start at 07:00, estimated MD add ₹4.8L — stagger recommendation.
  • QAW.5: On reactor train 5, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AW.5: If 5 vacuum pumps start at 07:00, estimated MD add ₹6.0L — stagger recommendation.
  • QAW.6: On reactor train 6, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AW.6: If 6 vacuum pumps start at 07:00, estimated MD add ₹7.2L — stagger recommendation.
  • QAW.7: On reactor train 7, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AW.7: If 7 vacuum pumps start at 07:00, estimated MD add ₹8.4L — stagger recommendation.
  • QAW.8: On reactor train 8, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AW.8: If 8 vacuum pumps start at 07:00, estimated MD add ₹9.6L — stagger recommendation.
  • QAW.9: On reactor train 9, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AW.9: If 9 vacuum pumps start at 07:00, estimated MD add ₹10.8L — stagger recommendation.
  • QAW.10: On reactor train 10, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AW.10: If 10 vacuum pumps start at 07:00, estimated MD add ₹12.0L — stagger recommendation.
  • QAW.11: On reactor train 11, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AW.11: If 11 vacuum pumps start at 07:00, estimated MD add ₹13.2L — stagger recommendation.

Appendix AX — Discovery & rollout (AX)

  • QAX.1: On reactor train 1, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AX.1: If 1 vacuum pumps start at 07:00, estimated MD add ₹1.2L — stagger recommendation.
  • QAX.2: On reactor train 2, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AX.2: If 2 vacuum pumps start at 07:00, estimated MD add ₹2.4L — stagger recommendation.
  • QAX.3: On reactor train 3, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AX.3: If 3 vacuum pumps start at 07:00, estimated MD add ₹3.6L — stagger recommendation.
  • QAX.4: On reactor train 4, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AX.4: If 4 vacuum pumps start at 07:00, estimated MD add ₹4.8L — stagger recommendation.
  • QAX.5: On reactor train 5, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AX.5: If 5 vacuum pumps start at 07:00, estimated MD add ₹6.0L — stagger recommendation.
  • QAX.6: On reactor train 6, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AX.6: If 6 vacuum pumps start at 07:00, estimated MD add ₹7.2L — stagger recommendation.
  • QAX.7: On reactor train 7, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AX.7: If 7 vacuum pumps start at 07:00, estimated MD add ₹8.4L — stagger recommendation.
  • QAX.8: On reactor train 8, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AX.8: If 8 vacuum pumps start at 07:00, estimated MD add ₹9.6L — stagger recommendation.
  • QAX.9: On reactor train 9, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AX.9: If 9 vacuum pumps start at 07:00, estimated MD add ₹10.8L — stagger recommendation.
  • QAX.10: On reactor train 10, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AX.10: If 10 vacuum pumps start at 07:00, estimated MD add ₹12.0L — stagger recommendation.
  • QAX.11: On reactor train 11, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AX.11: If 11 vacuum pumps start at 07:00, estimated MD add ₹13.2L — stagger recommendation.

Appendix AY — Discovery & rollout (AY)

  • QAY.1: On reactor train 1, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AY.1: If 1 vacuum pumps start at 07:00, estimated MD add ₹1.2L — stagger recommendation.
  • QAY.2: On reactor train 2, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AY.2: If 2 vacuum pumps start at 07:00, estimated MD add ₹2.4L — stagger recommendation.
  • QAY.3: On reactor train 3, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AY.3: If 3 vacuum pumps start at 07:00, estimated MD add ₹3.6L — stagger recommendation.
  • QAY.4: On reactor train 4, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AY.4: If 4 vacuum pumps start at 07:00, estimated MD add ₹4.8L — stagger recommendation.
  • QAY.5: On reactor train 5, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AY.5: If 5 vacuum pumps start at 07:00, estimated MD add ₹6.0L — stagger recommendation.
  • QAY.6: On reactor train 6, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AY.6: If 6 vacuum pumps start at 07:00, estimated MD add ₹7.2L — stagger recommendation.
  • QAY.7: On reactor train 7, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AY.7: If 7 vacuum pumps start at 07:00, estimated MD add ₹8.4L — stagger recommendation.
  • QAY.8: On reactor train 8, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AY.8: If 8 vacuum pumps start at 07:00, estimated MD add ₹9.6L — stagger recommendation.
  • QAY.9: On reactor train 9, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AY.9: If 9 vacuum pumps start at 07:00, estimated MD add ₹10.8L — stagger recommendation.
  • QAY.10: On reactor train 10, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AY.10: If 10 vacuum pumps start at 07:00, estimated MD add ₹12.0L — stagger recommendation.
  • QAY.11: On reactor train 11, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AY.11: If 11 vacuum pumps start at 07:00, estimated MD add ₹13.2L — stagger recommendation.

Appendix AZ — Discovery & rollout (AZ)

  • QAZ.1: On reactor train 1, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AZ.1: If 1 vacuum pumps start at 07:00, estimated MD add ₹1.2L — stagger recommendation.
  • QAZ.2: On reactor train 2, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AZ.2: If 2 vacuum pumps start at 07:00, estimated MD add ₹2.4L — stagger recommendation.
  • QAZ.3: On reactor train 3, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AZ.3: If 3 vacuum pumps start at 07:00, estimated MD add ₹3.6L — stagger recommendation.
  • QAZ.4: On reactor train 4, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AZ.4: If 4 vacuum pumps start at 07:00, estimated MD add ₹4.8L — stagger recommendation.
  • QAZ.5: On reactor train 5, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AZ.5: If 5 vacuum pumps start at 07:00, estimated MD add ₹6.0L — stagger recommendation.
  • QAZ.6: On reactor train 6, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AZ.6: If 6 vacuum pumps start at 07:00, estimated MD add ₹7.2L — stagger recommendation.
  • QAZ.7: On reactor train 7, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AZ.7: If 7 vacuum pumps start at 07:00, estimated MD add ₹8.4L — stagger recommendation.
  • QAZ.8: On reactor train 8, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AZ.8: If 8 vacuum pumps start at 07:00, estimated MD add ₹9.6L — stagger recommendation.
  • QAZ.9: On reactor train 9, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AZ.9: If 9 vacuum pumps start at 07:00, estimated MD add ₹10.8L — stagger recommendation.
  • QAZ.10: On reactor train 10, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AZ.10: If 10 vacuum pumps start at 07:00, estimated MD add ₹12.0L — stagger recommendation.
  • QAZ.11: On reactor train 11, who authorises jacket shutdown between batches — shift chemist or DCS operator?
  • Scenario AZ.11: If 11 vacuum pumps start at 07:00, estimated MD add ₹13.2L — stagger recommendation.

Appendix BA — Document control

VersionDateChange
1.02026-08-04Initial dossier

End of dossier. Re-validate all [~] figures against HT bills on first call.