Working Document — Pre-Release Engineering Development
Initial release. Authorized ARM-2026-002 §14. Four-zone architecture established ARM-2026-002 Cluster D.
D-ZEP-APS-01 CLOSED — ZEP H&sub2; purge recycle routed to NXS-Z3 (no flare path). Open: D-H2-01 (NXS-Z3 pressure / pipe class), D-THM-02 (NXS-Z2 high-temp connector physical standard), D-48V-01 (Z1 controls bus), D-66 (PIMB footprint), D-67 (RMB footprint), D-ASI-01.
| Document Number | CBT-NXS-TDS-001 |
| Revision | Rev 0 — April 2026 |
| Scope | Overhead Spine · NXS-Z1 Electrical · NXS-Z2 Thermal/Fluid · NXS-Z3 Gas · NXS-Z4 Material & APS |
| Canonical Basis | 400 TPD / 32 MW / PIMB + RMB |
| Governing ARMs | ARM-2026-001 · ARM-2026-002 |
| Revenue Baseline | RevCon 3 — $150M–$325M/yr, 400 TPD baseline |
| ASI | Authorized Strategic Integrator — pending D-ASI-01 |
| Chairman | Allen Witters |
1. Executive Summary
Near-Zero Design Intent
The NEXUS™ Modular Utilities Interconnect is engineered as a closed-loop manufacturing subsystem designed for near-zero emissions, near-zero discharge, and near-zero residual. All APS Capture Streams route via NXS-Z4 to internal recovery — no atmospheric discharge. No utility fluid is discharged to drain or to ambient without internal recovery first. Environmental performance outcomes contingent on execution at commercial scale and validated through SAT and FPT procedures.
NEXUS as Module-Swappability Infrastructure
NEXUS is the physical infrastructure that enables true module-swappability as a Serial-Numbered OEM Product design requirement. Module replacement requires only isolation of four overhead zone drops — no building intervention, no civil work, no underground access.
NEXUS™ is the Carbotura-branded overhead Modular Utilities Interconnect system. NEXUS is a Carbotura OEM product specification — not a site utility system. It is designed, assembled, tested, and warranted by the ASI to Carbotura specification.
NEXUS routes all four utility categories — electrical, thermal, gas, and material/APS — overhead within the PIMB and RMB. Zero utilities are routed underfloor or at grade within manufacturing buildings. Every module position receives standardized drops from all four zones.
At the 400 TPD canonical engineering baseline, NEXUS serves 16 Recyclotron reactor positions, 4 T2 processing positions, all Pregenesis module positions in the PIMB, and all Regenesis module positions in the RMB. NEXUS routes continuously through both buildings with an inter-building crossing at the PIMB/RMB shared wall via the ASI-RFH-FLG interface point.
2. Facility Context & Module Boundaries
2.1 System Position in the ACM Facility
NEXUS is the connecting infrastructure between all protocol-zone modules and all facility utility sources. It physically enables the Serialized Product Model — every module in the ACM Facility connects to NEXUS at defined interface points and no other location.
| Buildings served | PIMB (Pregenesis building, with airlocks) and RMB (Regenesis building) |
| Routing principle | 100% overhead within both buildings — zero underfloor, zero at-grade |
| Zone count | Four — NXS-Z1 (Electrical), NXS-Z2 (Thermal/Fluid), NXS-Z3 (Gas), NXS-Z4 (Material/APS) |
| Canonical basis | 400 TPD / 16 Recyclotron reactors / full Pregenesis and Regenesis module complements |
| Inter-building interface | Overhead spine crosses at shared wall; feed header (ASI-RFH-FLG) at shared wall crossing |
| PIMB footprint | D-66 OPEN — governing value pending modular design review |
| RMB footprint | D-67 OPEN — governing value pending modular design review |
2.2 Module Boundaries
| Zone | NEXUS Upstream Boundary | NEXUS Downstream (Module Drop) |
NXS-Z1-ELEC | ZEP MVDC Backbone aggregation point (ZEP-MVB-001 output) | ASI-PBK-QC device link at each module skid; ASI-ZBK-MPC zone bus tap; ASI-DAT-MOD-TCP data port |
NXS-Z2 (High-Temp) | REG-WHSG-001 High-Temp Thermal outlet → NXS-Z2 high-temp header inlet | ASI-THM-HT drop valve at each T2-ITD and PRE-EVP-001 position |
NXS-Z2 (Low-Temp) | ZEP-TRL-001 Zero-E Thermal Recovery Loop outlet | Low-temp hot water drop at each module position requiring preconditioning heat |
NXS-Z3 (H&sub2;) | REG-BSH-001 H&sub2; buffer storage outlet | Dual-stage pressure regulation (ZEP-H2R) + HVIL-linked fail-closed valve at each position |
NXS-Z3 (N&sub2;) | GPU N&sub2; generation unit | N&sub2; drop valve at each reactor injection position |
NXS-Z3 (recycle) | ZEP PEM enclosure purge → APS-ZEP-001 | Recycle return inlet at NXS-Z3 header (D-ZEP-APS-01 CLOSED) |
NXS-Z4 (APS) | All process APS capture points throughout PIMB and RMB | APS main collection header → APS fan/recovery equipment |
NXS-Z4 (RFH) | PIMB Shredder Train / RFB output | ASI-RFH-FLG (12-in. ANSI 150# RF) at PIMB/RMB shared wall |
2.3 Excluded Scope
| Zero-E PowerBlock generation equipment | ZEP scope — NEXUS receives at MVDC Backbone aggregation point |
| REG-BSH-001 H&sub2; buffer storage vessel | Regenesis scope |
| REG-WHSG-001 Process Gas Heat Recovery Unit | Regenesis scope |
| APS fan units, filters, and recovery equipment | APS Protocol scope — NEXUS provides Z4 ductwork collection spine only |
| GPU N&sub2; generation unit | Owner-supplied utility at battery limit |
| Instrument air compressors | Owner-supplied utility at battery limit |
| Module skid equipment | Per protocol TDS |
| PIMB and RMB structural steelwork for NEXUS support | Structural engineering scope — NEXUS provides load data |
3. Process Description
3.1 Zone-by-Zone Narrative
NXS-Z1 — Electrical Spine
Zone 1 is the overhead electrical and data distribution spine serving all module positions in both buildings. The 20kV MVDC Backbone routes overhead from the Zero-E PowerBlock aggregation point through cable trays to each zone bus segment (ZEP-ZBS). From each zone bus segment, 1,500V DC zone bus drop cables feed local 250 kW PEM module device links via Amphenol ePower-Lite connectors (ASI-PBK-QC). Safety interlock chain hardwire and Modbus TCP/IP data cable run in the same Z1 cable tray zone, physically separated from power cables. The 48V DC controls bus routes in Z1 pending D-48V-01 resolution.
NXS-Z2 — Thermal and Fluid Spine
Zone 2 is the overhead insulated pipe rack carrying two thermally distinct circuits. The High-Temperature Thermal header (200–400°C, steam or thermal oil — D-THM-02 physical standard open) carries WHSG thermal recovery from REG-WHSG-001 to T2-ITD dryers and PRE-EVP-001 evaporators via ASI-THM-HT drop connections. The Low-Temperature Thermal header (85–95°C, water-glycol) carries the Zero-E Thermal Recovery Stream from ZEP-TRL-001. Both headers run on thermally isolated pipe rack sections. Process cooling water supply and return run in Z2 as a third circuit.
NXS-Z3 — Gas Spine
Zone 3 is the overhead pipe rack carrying H&sub2;, N&sub2;, compressed air, and recycle gas. The H&sub2; high-pressure distribution header supplies PEM module positions via dual-stage regulation stations (ZEP-H2R-001 to -004) and HVIL-linked fail-closed valves — no H&sub2; flows downstream of a failed HVIL. The N&sub2; header supplies the Dense-Phase N&sub2; Pneumatic Injection System at each Recyclotron reactor position. The ZEP H&sub2; purge recycle return line connects into the NXS-Z3 recycle header at each PEM enclosure — D-ZEP-APS-01 CLOSED, no flare path. NXS-Z3 sized for both primary H&sub2; distribution and recycle return (50–120 CFM aggregate purge, 400 CFM peak).
NXS-Z4 — Material and APS Spine
Zone 4 is the overhead APS Capture Stream ductwork collection spine and material transfer routing. All APS capture points throughout PIMB and RMB connect to the Z4 main collection duct via ASI-APS-FLG flange connections. Zone 4 also carries the Recyclotron Feed Header (RFH) — the 12-in. ANSI 150# RF carbon steel rubber-lined transfer pipe (ASI-RFH-FLG) — from PIMB Shredder Train RFB output to the PIMB/RMB shared wall crossing. Zone 4 is physically separated from Zones 1–3 on a dedicated structure to prevent APS Capture Stream cross-contamination of electrical or fluid infrastructure.
3.2 Module Drop Standard — Per Position
Every module position receives a standardized four-zone drop set. Module replacement requires only isolation of these four drop points:
| Drop | Zone | Isolation Device | Reconnect Connector |
| Electrical device link | Z1 | HVIL break — automatic H&sub2; isolation + circuit isolation | ASI-PBK-QC |
| Zone bus tap | Z1 | DC isolator switch | ASI-ZBK-MPC |
| Data port | Z1 | Network patch disconnect | ASI-DAT-MOD-TCP |
| High-temp thermal | Z2 | Isolation valve (manual + actuated) | ASI-THM-HT |
| Low-temp thermal | Z2 | Isolation valve (manual) | ASI-THM-ZE |
| H&sub2; supply | Z3 | HVIL-linked pneumatic fail-closed valve | ASI-H2-HPS |
| N&sub2; supply | Z3 | Manual isolation valve | 1-in. NPT (standard) |
| Compressed air | Z3 | Manual isolation valve | ½-in. NPT (standard) |
| APS capture duct | Z4 | Manual butterfly damper | ASI-APS-FLG |
| RFH (Recyclotron only) | Z4 | Manual ball valve | ASI-RFH-FLG |
3.3 Inter-Building Spine Crossing
All four NEXUS zones cross the PIMB/RMB shared wall via dedicated penetrations with fire-rated seals. The crossing is continuous routing through the wall — not a break in the spine. The RFH (ASI-RFH-FLG) is the only positively pressured manufacturing stream crossing this wall.
4. Design Envelope
NEXUS distributes facility utilities and collects APS Capture Streams. It does not process manufacturing feedstock.
4.1 Utility Supply Specifications at NEXUS Battery Limit
| Utility | Zone | Supply Spec | Status |
| 20kV MVDC Backbone | Z1 | 32 MW at 400 TPD from ZEP-MVB-001 | LOCKED — ZEP-TDS-001 |
| WHSG High-Temp Thermal | Z2 | 200–400°C / 10–40 bar (steam or oil) — 2–8 MW thermal | CLOSED PARAMETRIC — D-35, D-THM-01 |
| Zero-E Thermal Recovery Stream | Z2 | 85–95°C water-glycol — ~1.5–3.0 MW thermal | LOCKED — ZEP-TDS-001 Cluster G |
| H&sub2; supply | Z3 | ≥99.97% ISO 14687 Type D · Pressure D-H2-01 OPEN (20–50 bar parametric) | OER Gate 2 — D-H2-01 |
| N&sub2; supply | Z3 | ≥99.999% (5N) · 8–12 bar · dew point ≤–40°C | OER Gate 2 OEM |
| Instrument compressed air | Z3 | Oil-free · 7 bar · dew point ≤–40°C | OER Gate 2 OEM |
| APS capture pressure | Z4 | Negative pressure at all Z4 APS capture points | APS Protocol scope |
| H&sub2; purge recycle return | Z3 | 50–120 CFM aggregate (400 CFM peak) | DEFINED — D-ZEP-APS-01 CLOSED |
4.2 Design Envelope Limits
| Condition | Consequence | Interlock Response |
| H&sub2; supply pressure below minimum regulation envelope | All HVIL-linked zones — PEM modules isolate | HVIL fail-closed at every Z3 H&sub2; drop |
| MVDC Backbone loss | All module positions lose power — Black Start sequence | ZEP-BSS-001 Black Start protocol |
| APS Z4 negative pressure loss | APS capture fails — process zones remain enclosed but recovery path interrupted | APS fault alarm |
| WHSG thermal supply loss | T2-ITD and PRE-EVP-001 lose heating — production derate | T2-ITD and EVP derate per OPS |
5. Module Equipment Specifications
5.1 NXS-Z1 — Electrical Spine Infrastructure
| Function | Overhead distribution of 20kV MVDC Backbone, 1,500V DC zone bus, 800V DC device links, 48V controls bus (D-48V-01), Modbus TCP/IP data, safety hardwire to all module positions |
| MVDC Backbone routing | Overhead cable tray — 20kV MVDC, HARTING Han® HPR (ASI-MVDC-HPR) |
| Zone bus routing | 1,500V DC liquid-cooled laminated busbars — overhead per zone; Stäubli MPC (ASI-ZBK-MPC) |
| Device link drops | 800V DC, Amphenol ePower-Lite (ASI-PBK-QC), <3 m run to module skid |
| Data routing | Modbus TCP/IP over shielded Cat6A — overhead cable tray, physically separated from power cables |
| Safety hardwire | HVIL chain hardwire — physically separate from data cables within Z1 tray |
| 48V controls bus | D-48V-01 OPEN — overhead if retained; eliminated if D-48V-01 resolves against retention |
| Cable tray type | Aluminum ventilated cable tray — NEMA VE-1; NEC Article 392 |
| CAPEX | $1.5M–$4.5M parametric [Class 2 ±15%, 2026 USD] |
5.2 NXS-Z2 — Thermal and Fluid Spine Infrastructure
| Function | Overhead insulated pipe rack routing WHSG High-Temp Thermal, Zero-E Thermal Recovery Stream, process cooling water, and building heating hot water |
| High-temp thermal header | 200–400°C / 10–40 bar · 316L SS or Inconel-lined CS (pending D-THM-02) · mineral wool insulation · expansion loops each building section · Connector: ASI-THM-HT (D-THM-02 OPEN) |
| Low-temp thermal header | Water-glycol 85–95°C · 316L SS · closed-cell foam · ASI-THM-ZE |
| Process cooling water | CS with corrosion inhibitor · OER Gate 2 OEM cooling load confirmation |
| Pipe rack type | Overhead insulated pipe rack — thermally segregated sections per fluid service · minimum 3 m clearance above finished floor |
| CAPEX | $1.8M–$5.5M parametric [Class 2 ±15%, 2026 USD] |
5.3 NXS-Z3 — Gas Spine Infrastructure
| Function | Overhead pipe rack routing H&sub2; high-pressure, N&sub2;, instrument/utility compressed air, vacuum, and H&sub2; purge recycle return |
| H&sub2; high-pressure header | D-H2-01 supply pressure (20–50 bar parametric) · 316L SS (700-bar conservative per ZEP-TDS-001 R-02) · HVIL-linked pneumatic fail-closed valve at each drop · ASI-H2-HPS · H&sub2; point detectors at 10 m intervals |
| H&sub2; purge recycle return | ZEP PEM enclosure purge — 50–120 CFM aggregate / 400 CFM peak · 316L SS · check valve at each return inlet · flow totalizer at ZEP-BSH-001 inlet |
| N&sub2; header | 8–12 bar · ≥99.999% · CS · sized for Dense-Phase N&sub2; peak demand (D-46 OPEN) |
| Instrument compressed air | Oil-free 7 bar · CS with stainless sub-headers at actuated valve drops |
| Gas detection | Continuous H&sub2; monitoring along full Z3 header · 10% LFL alarm · 25% LFL auto-isolation · SCADA via ASI-DAT-MOD-TCP |
| CAPEX | $1.2M–$3.8M parametric [Class 2 ±15%, 2026 USD] |
5.4 NXS-Z4 — Material and APS Spine Infrastructure
| Function | Overhead APS Capture Stream ductwork collection spine and Recyclotron Feed Header (RFH) routing. Physically isolated from Zones 1–3. |
| APS collection duct | 16-gauge galvanized steel · fan-maintained negative pressure · ASI-APS-FLG at each capture point · OER Gate 2 sizing |
| Recyclotron Feed Header | Conditioned Manufacturing Feedstock from SHRD-RFB to Recyclotron feed airlock · 12-in. ANSI 150# RF CS rubber-lined · ASI-RFH-FLG · overhead through PIMB/RMB shared wall |
| Zone 4 physical isolation | Z4 structure physically separated from Z1/Z2/Z3 throughout both buildings. No shared cable tray, pipe rack, or structural member. (ARM-2026-002 §5.3) |
| CAPEX | $0.8M–$2.5M parametric [Class 2 ±15%, 2026 USD] |
5.5 Overhead Structural Spine
| Function | Structural support for all four NEXUS zones within both PIMB and RMB · transfers NEXUS loads to building structure at Owner-specified support points |
| Minimum clearance | 3 m clear above finished manufacturing floor at all module positions (ARM-2026-002 §5.2) |
| Material | Structural steel — hot-dip galvanized |
| Span | Building column spacing — pending D-66/D-67 footprint resolution |
| Load data | NEXUS provides loads to Owner structural engineer at OER Gate 2 |
| CAPEX | Included in zone CAPEX line items above |
6. APS Interface Register
APS Process-Capture Basis Statement
All Zone 4 APS capture points represent internal recovery streams — not atmospheric emissions. NXS-Z4 is the collection spine only. APS fan units, filters, and recovery equipment are APS Protocol scope (CBT-APS-TDS-001).
| APS Point | Tag | Source | Normal CFM | Connector | Status |
| Pregenesis module APS capture points (aggregate) | APS-PRE-NXS | All Pregenesis process APS points | Per PRE-TDS §6 — not summed at Rev 0 | ASI-APS-FLG | DEFINED per protocol TDS |
| Regenesis module APS capture points (aggregate) | APS-REG-NXS | All Regenesis process APS points | Per REG-TDS §6 — not summed at Rev 0 | ASI-APS-FLG | DEFINED per protocol TDS |
| ZEP PEM H&sub2; purge recycle return | APS-ZEP-001 | ZEP-PEM enclosure purge — routes to NXS-Z3, not Z4 | 50–120 CFM / 400 CFM peak (Z3 scope) | ASI-APS-FLG (APS side) | D-ZEP-APS-01 CLOSED — Z3 recycle |
| BESS off-gas | APS-ZEP-002 | ZEP-BSS-001 battery enclosure | 20–40 CFM / 200 CFM fault | ASI-APS-FLG | DEFINED — Z4 APS |
Note: Total facility APS CFM will be formally summed at OER Gate 2 when CBT-APS-TDS-001 is produced. The Z4 duct shall be sized on basis of the consolidated APS CFM register.
7. Modular Installability & ICD
SAT/FPT Statement
SAT and FPT will be conducted following module assembly and initial startup. A 72-hour continuous TPGT is required witnessed by Carbotura Engineering, Owner's Engineer, and an independent third party.
| ICD Reference | Interface | Connection Type | ASI Standard | Test Requirement | Status |
| ICD-NXS-Z1-MVDC-001 | ZEP MVDC Backbone → NXS-Z1 spine inlet | 20kV MVDC, HARTING Han® HPR | ASI-MVDC-HPR | FAT: full 32 MW energize through NXS-Z1; cable tray continuity and insulation resistance | DEFINED — ARM-2026-002 |
| ICD-NXS-Z1-ZBS-001 | NXS-Z1 zone bus → ZEP Zone Bus Segment tap | 1,500V DC liquid-cooled busbar | ASI-ZBK-MPC | FAT: 8 MW per zone at tap; busbar temperature within limits at full load | DEFINED |
| ICD-NXS-Z1-PBK-001 | NXS-Z1 device link drop → module skid | 800V DC, Amphenol ePower-Lite, <3 m | ASI-PBK-QC | FAT: each module position live at 250 kW; HVIL trip test per position | DEFINED |
| ICD-NXS-Z1-DAT-001 | NXS-Z1 data drop → module SCADA connection | Modbus TCP over shielded Cat6A | ASI-DAT-MOD-TCP | FAT: all positions in SCADA with GREEN; alarm propagation test | DEFINED |
| ICD-NXS-Z2-THM-HT-001 | REG-WHSG-001 → NXS-Z2 high-temp thermal header | 200–400°C / 10–40 bar | ASI-THM-HT | FAT: thermal header at operating temp; drop valves operable; insulation surface <60°C | OPEN — D-THM-02 physical standard OER Gate 2 |
| ICD-NXS-Z2-THM-ZE-001 | ZEP-TRL-001 → NXS-Z2 low-temp thermal header | Water-glycol 85–95°C | ASI-THM-ZE | FAT: coolant 85–95°C at all drops; pump flow confirmed | DEFINED — ARM-2026-002 Cluster G |
| ICD-NXS-Z3-H2-001 | REG-BSH-001 → NXS-Z3 H&sub2; header | High-pressure H&sub2; — pipe class pending D-H2-01 | ASI-H2-HPS | FAT: H&sub2; header pressure at all drops; HVIL isolation <50 ms per position; no-leak at rated pressure | OPEN — D-H2-01 OER Gate 2 |
| ICD-NXS-Z3-H2R-001 | NXS-Z3 H&sub2; header → ZEP-H2R regulation station | H&sub2; high-pressure → intermediate (~20 bar D-H2-01) | ASI-H2-HPS | FAT: regulation accuracy ±2%; HVIL function per station | OPEN — D-H2-01 |
| ICD-NXS-Z3-RCY-001 | ZEP PEM enclosure purge → NXS-Z3 recycle return | 316L SS — ambient pressure recycle return | ASI-APS-FLG (APS side) | FAT: recycle flow via totalizer; check valve no backflow; H&sub2; sensor <10% LFL | DEFINED — D-ZEP-APS-01 CLOSED |
| ICD-NXS-Z4-APS-001 | All process APS capture → NXS-Z4 collection duct | APS duct flange | ASI-APS-FLG | FAT: negative pressure at all Z4 connection points; no APS stream at non-capture points | DEFINED per protocol APS registers |
| ICD-NXS-Z4-RFH-001 | PIMB SHRD-RFB → shared wall → Recyclotron feed | 12-in. ANSI 150# RF CS rubber-lined | ASI-RFH-FLG | FAT: flow continuity; no blockage at crossing; rubber lining intact | LOCKED — ECN-004 |
8. Utilities Register
NEXUS is primarily a utilities distribution system. Internal parasitic consumption is the electrical loads of valve actuators, instrumentation, gas detection, and SCADA within the spine itself.
NXS-Z1-ELEC — Electrical (Consumed by NEXUS Internal Systems)
| Load | P50 (kW) | P90 (kW) | Notes |
| HVIL solenoid valve actuators (Z3 H&sub2; drops, all positions) | 3 | 8 | ~16 valves at 400 TPD; energized to open, fail-closed |
| Thermal isolation valve actuators (Z2 high-temp drops) | 2 | 4 | Motorized valves at T2-ITD and EVP positions |
| Gas detection system (H&sub2; sensors, Z3) | 1 | 2 | Continuous 24/7 monitoring |
| NEXUS SCADA I/O | 1 | 2 | Valve position feedback, gas detection, thermal monitoring |
| Pipe heat tracing (Z2 high-temp startup assist) | 5 | 15 | Active during startup only |
| Total NEXUS internal electrical | ~12 kW | ~31 kW | Negligible vs. 32 MW facility generation |
NXS-Z2-FLUID — Thermal (Distributed)
| Stream | Value | Notes |
| WHSG High-Temp Thermal → T2-ITD and EVP | 2–8 MW thermal at 400 TPD | 200–400°C / 10–40 bar (D-THM-01 CLOSED PARAMETRIC) |
| Zero-E Thermal Recovery → preconditioning | ~1.5–3.0 MW thermal at 400 TPD | 85–95°C |
NXS-Z3-GAS — Gas (Distributed)
| Stream | Rate | Notes |
| H&sub2; to PEM modules | 640–742 kg/hr at 400 TPD (parametric) | Per ZEP-TDS-001 §8 |
| N&sub2; to Dense-Phase Injection System | D-46 OPEN — SLR test required | Per 16 reactors at 400 TPD |
| H&sub2; purge recycle return | 50–120 CFM aggregate at 400 TPD | D-ZEP-APS-01 CLOSED — Z3 recycle |
9. Vendor Matrix
American Manufacturing Preference Policy (ARM-2026-002 Cluster H) applies throughout. All compliance status preliminary — verification required at RFQ stage.
| Equipment | Vendor | Country | Procurement Path | Lead Time |
| Aluminum Cable Tray (Z1) | Legrand (Cablofil) | USA (Franklin, TN) | Direct — US Manufacturer | 8–14 |
| Aluminum Cable Tray (Z1) | Atkore International | USA (Harvey, IL) | Direct — US Manufacturer | 8–12 |
| 20kV MVDC Cable (Z1 backbone) | Southwire | USA (Carrollton, GA) | Direct — US Manufacturer | 12–20 |
| 20kV MVDC Cable (alt) | General Cable (Prysmian US) | USA (Highland Heights, KY) | Direct — US Manufacturer | 12–20 |
| Insulated Pipe Rack (Z2/Z3) | Bergen-Power Pipe Supports | USA (Rutland, VT) | Direct — US Manufacturer | 14–22 |
| Pipe Rack Structural Steel | Any AISC-certified US fabricator | USA | Direct — US Manufacturer | 16–24 |
| 316L SS Piping (Z2/Z3 service) | Outokumpu Stainless USA | USA (Calvert City, KY) | Direct — US Manufacturer | 10–18 |
| High-Temp Thermal Insulation (Z2) | Owens Corning | USA (Toledo, OH) | Direct — US Manufacturer | 6–12 |
| H&sub2; HVIL Pneumatic Fail-Closed Valves | Emerson (Fisher Controls) | USA (Marshalltown, IA) | Direct — US Manufacturer | 14–26 |
| H&sub2; HVIL Valves (alt) | Parker Hannifin | USA (Cleveland, OH) | Direct — US Manufacturer | 12–22 |
| H&sub2; Gas Detection (Z3) | MSA Safety | USA (Cranberry Township, PA) | Direct — US Manufacturer | 10–16 |
| H&sub2; Gas Detection (alt) | Industrial Scientific (Fortive) | USA (Pittsburgh, PA) | Direct — US Manufacturer | 10–16 |
| APS Ductwork (Z4) | Any SMACNA-certified US sheet metal fabricator | USA | Direct — US Manufacturer | 10–18 |
| Thermal Expansion Joints (Z2) | Flexicraft Industries | USA (Chicago, IL) | Direct — US Manufacturer | 12–20 |
| Pipe Insulation — Closed-Cell (Z2 LT) | Armacell | USA (Mebane, NC) | Direct — US Manufacturer | 6–10 |
10. CAPEX Estimate
| Line Item | Low | High | Basis |
| NXS-Z1 — Electrical spine | $1.5M | $4.5M | Linear infrastructure per building footprint — pending D-66/D-67 |
| NXS-Z2 — Thermal/fluid spine | $1.8M | $5.5M | Insulated pipe rack at 200–400°C service; D-THM-02 open adds uncertainty |
| NXS-Z3 — Gas spine | $1.2M | $3.8M | H&sub2; pipe class conservative basis (700-bar); D-H2-01 resolution may reduce |
| NXS-Z4 — Material/APS spine | $0.8M | $2.5M | Standard galvanized ductwork + RFH pipe |
| Overhead structural support | $0.5M | $1.5M | Standard structural steel — pending D-66/D-67 |
| E&I — NEXUS-scope instrumentation | $0.5M | $1.5M | 8–10% of equipment subtotal |
| ASI Integration, Assembly, FAT | $0.6M | $1.8M | 8–10% of equipment subtotal |
| Contingency (15%) | $1.0M | $3.2M | AACE Class 2 |
| TOTAL Module CAPEX — 400 TPD | $7.9M | $24.3M | [Class 2 ±15%, 2026 USD] |
| Per 100 TPD increment | $2.0M | $6.1M | Approximately linear |
AACE Classification: Class 2 ±15% — 2026 USD basis. Primary uncertainty drivers: (1) building footprint (D-66/D-67 — spine length unknown); (2) H&sub2; service pipe class (D-H2-01 — 700-bar conservative may overstate); (3) high-temp thermal connector (D-THM-02).
Included: All NXS-tagged spine infrastructure, overhead structure, valve actuators, gas detection, E&I, ASI assembly and FAT. Excluded: APS fan units and recovery (APS Protocol), module skid equipment (protocol TDS), building structure (Owner).
11. TIC WBS Reconciliation
| WBS Item | Incl. | Notes |
| NXS-Z1 cable tray, cable, connectors | ✅ | Per §10 |
| NXS-Z2 pipe rack, thermal piping, insulation, valves | ✅ | Per §10 |
| NXS-Z3 gas headers, gas detection, HVIL valves, recycle sub-header | ✅ | Per §10 |
| NXS-Z4 APS ductwork spine, RFH pipe | ✅ | Per §10 |
| Overhead structural steel for NEXUS support | ✅ | Per §10 |
| E&I (NEXUS scope) | ✅ | Per §10 |
| ASI FAT and Unitized Warranty Passport | ✅ | Per §10 |
| APS fan units, filters, recovery equipment | ❌ | APS Protocol scope |
| Building structure (columns, roof, floor) | ❌ | Owner scope |
| Site utility connections at battery limit | ❌ | Owner scope |
| GPU N&sub2; generation unit | ❌ | Owner-supplied utility |
| Instrument air compressors | ❌ | Owner-supplied utility |
12. Lead Time Schedule
| Equipment | Lead Time | Critical Path? | Notes |
| H&sub2; HVIL valve assemblies | 14–26 wks | MEDIUM | Safety-critical custom H&sub2; service; order early |
| 20kV MVDC cable (Z1 backbone) | 12–20 wks | MEDIUM | Custom voltage rating; limited US suppliers |
| High-temp thermal piping (Z2) | 10–18 wks | LOW | Standard stainless; adequate supplier base |
| APS ductwork (Z4) | 10–18 wks | LOW | Standard fabrication |
| Structural steel (overhead support) | 16–24 wks | MEDIUM | Requires D-66/D-67 before fabrication drawings |
| Cable tray (Z1 aluminum) | 8–14 wks | LOW | Catalog product |
| Pipe insulation and expansion joints | 6–12 wks | LOW | Standard industrial |
Critical path note: NEXUS is not the facility critical path — Recyclotron reactors, PEM modules, and MVDC switchgear have longer lead times. However, NEXUS structural support design cannot begin until D-66/D-67 building footprints are resolved. Issue structural steel RFQ within 4 weeks of D-66/D-67 closure.
13. TRL / ERL / IRL Assessment
| Equipment / Zone | TRL | ERL | IRL | Notes |
| NXS-Z1 — Cable tray, MVDC cable | 9 | 8 | 7 | Fully commercial. 20kV DC less common than AC but available from US OEMs. IRL limited by D-ASI-01. |
| NXS-Z1 — Zone bus and device link | 8 | 7 | 6 | Liquid-cooled busbars at 1,500V DC — commercial with custom sizing. HVIL integration well-defined. |
| NXS-Z2 — High-temp thermal header | 8 | 6 | 5 | Industrial pipe at 200–400°C is standard. IRL limited by D-THM-02 and D-THM-01. |
| NXS-Z2 — Low-temp thermal header | 9 | 8 | 7 | Standard water-glycol closed loop — fully commercial. |
| NXS-Z3 — H&sub2; header | 8 | 6 | 4 | H&sub2; high-pressure piping at facility scale has refinery/HRS precedent. IRL=4 reflects D-H2-01 open and D-ASI-01 open. |
| NXS-Z3 — N&sub2; header | 9 | 8 | 6 | Standard nitrogen piping. IRL limited by D-46 (flow rate unknown). |
| NXS-Z3 — Purge recycle sub-header | 8 | 7 | 6 | Ambient-pressure recycle return — standard SS. D-ZEP-APS-01 CLOSED. |
| NXS-Z4 — APS ductwork | 9 | 8 | 6 | Standard negative-pressure ductwork — SMACNA design. |
| NXS-Z4 — RFH (12-in. CS rubber-lined) | 9 | 8 | 7 | Standard industrial pipe. ECN-004 locked. |
| System-Level NEXUS | 8 | 6 | 4 | Limited by H&sub2; piping and high-temp thermal. IRL=4 driven by D-H2-01 and D-THM-02. Both resolve at OER Gate 2. |
14. Confidence Factor
| Assessment Dimension | Weight | Score (1–5) | Weighted | Basis |
| Technology maturity | 25% | 4.5 | 1.13 | Primarily standard industrial infrastructure — cable tray, pipe rack, ductwork |
| Interface definition completeness | 20% | 3.0 | 0.60 | D-H2-01 and D-THM-02 open — Z3 and Z2 interfaces partially defined |
| Vendor availability (US market) | 15% | 4.5 | 0.68 | Strong US market for all NEXUS equipment categories |
| CAPEX basis quality | 20% | 2.5 | 0.50 | Building footprint open (D-66/D-67) — spine length determines cost |
| Open decision exposure | 10% | 2.8 | 0.28 | D-H2-01, D-THM-02, D-66, D-67 all open — four primary confidence limiters |
| Scaling precedent | 10% | 4.0 | 0.40 | Industrial overhead pipe rack and cable tray at this scale is well-established |
| Total Confidence Factor | 100% | — | 3.59 / 5.00 (72%) | Consistent with Class 2 working document at first release |
Interpretation: 72% — NEXUS underlying technology entirely commercially mature. Confidence limited by open design decisions (D-66/D-67 footprint, D-H2-01 H&sub2; pressure, D-THM-02 connector) rather than technology uncertainty. All four confidence limiters are procurement/OEM decisions, not engineering unknowns. Confidence will increase substantially at OER Gate 2.
15. Availability Model
| Zone | MA (%) | MTBF (hrs) | MTTR (hrs) | Notes |
| NXS-Z1 — Electrical spine | 99.9% | 175,200 | 16 | Static passive infrastructure; primary failure mode is connector degradation |
| NXS-Z2 — Thermal/fluid headers | 99.5% | 43,800 | 44 | Isolation valve actuators primary maintenance; expansion joints periodic inspection |
| NXS-Z3 — Gas spine | 99.5% | 43,800 | 44 | HVIL valve function primary maintenance item; annual leak test |
| NXS-Z4 — APS/RFH | 99.7% | 87,600 | 28 | APS dampers periodic inspection; RFH rubber lining inspected annually |
| System-Level NEXUS | 99.2% | — | — | Individual zone outages don't take down entire facility — zone isolation maintained |
Availability note: A single zone outage does not shut down the facility. Module-level isolation means only the affected module position goes offline during a zone maintenance event. Zone-level maintenance can be sequenced to minimize production impact.
16. Risk Register
R-01 HIGH — Building Footprint Open (D-66 / D-67) — Scope / Schedule
NEXUS spine length, structural support span, pipe/cable quantities, and total CAPEX are directly proportional to building footprint. D-66 (PIMB) and D-67 (RMB) are both open. Without footprint confirmation, CAPEX range remains wide and structural steel RFQs cannot be issued.
Mitigation: (1) Complete modular design review and close D-66/D-67 — highest-impact action for NEXUS scope definition. (2) Proceed with NEXUS zone architecture, connector family confirmation, and equipment vendor qualification in parallel. (3) At OER Gate 2, issue structural steel RFQ within 4 weeks of D-66/D-67 closure.
R-02 HIGH — D-H2-01 Open: H&sub2; Header Pressure and Pipe Class — Integration / Safety
NXS-Z3 H&sub2; header pipe wall thickness, material grade, fitting ratings, and HVIL valve specifications are governed by supply pressure (D-H2-01 — 20–50 bar parametric). Until D-H2-01 closes with REG-BSH-001 OEM confirmation, Z3 H&sub2; spine cannot be detailed designed or procured. The conservative 700-bar basis protects against rework but may overstate cost.
Mitigation: (1) Close D-H2-01 at OER Gate 2 with REG-BSH-001 OEM selection. (2) Maintain 700-bar conservative basis until D-H2-01 closes. (3) Pre-qualify Emerson and Parker Hannifin HVIL valve assemblies for both 350-bar and 700-bar service.
R-03 MEDIUM — D-THM-02 Open: Z2 High-Temp Connector Physical Standard — Integration / ICD
The ASI-THM-HT physical connector standard for NXS-Z2 high-temperature thermal drops is open (D-THM-02). Until fluid type (steam vs. thermal oil) and operating pressure are confirmed by WHSG OEM, drop valve spec and flange rating for T2-ITD and PRE-EVP-001 connections cannot be finalized.
Mitigation: (1) Close D-THM-02 at OER Gate 2 with WHSG OEM confirmation. (2) Design Z2 pipe rack to accommodate either steam or thermal oil service. (3) Leave drop valve positions unspecified at Class 2 stage.
R-04 LOW — N&sub2; Header Sizing (D-46 Open) — Scope / Integration
N&sub2; header flow rate and pipe sizing are open pending D-46 (N&sub2; injection SLR). Dense-Phase N&sub2; System demand at 16 reactors (400 TPD) not confirmed.
Mitigation: (1) Size N&sub2; header at OER Gate 2 per D-46 SLR test result. (2) Conservatively size at Class 2 stage for 150% of estimated peak demand.
17. Spares Register
| Crit. | Item | Qty First Fill | Qty Operating | Notes |
| A | HVIL pneumatic fail-closed valve assembly (Z3 H&sub2;) | 4 assemblies | 2/yr | Safety-critical; H&sub2; service; 14–26 week lead |
| A | Z2 high-temp thermal isolation valve (ASI-THM-HT compatible) | 2 valves | 1/yr | High-temp; failure isolates T2-ITD or EVP position |
| A | H&sub2; gas detection sensor (point detector, Z3) | 8 sensors | 4/yr | Replace on drift or annual calibration failure; 10–16 week lead |
| B | Thermal expansion joint — Z2 high-temp header | 2 joints | 1/yr | Inspect annually; replace at first sign of bellows fatigue |
| B | ASI-PBK-QC connector assembly (Z1 device link) | 10 assemblies | 4/yr | Connector cycling during module replacement |
| B | ASI-APS-FLG duct flange and gasket set | 8 sets | 2/yr | Z4 APS connection point; replace gasket on any maintenance |
| B | ASI-RFH-FLG flange and rubber-lined spool (12-in.) | 2 spools | Per inspection | RFH rubber lining inspected annually; replace on >10% wear |
| C | Cable tray splice connector set (Z1 aluminum) | 1 box per type | Per need | Low failure rate |
| C | Pipe insulation repair kit (Z2 mineral wool) | 4 kits | 1/yr | Repair damaged insulation; annual inspection |
| C | Closed-cell foam insulation repair kit (Z2 LT) | 2 kits | Per need | Low failure rate |
18. Warranty Register
| Equipment | Warranty Period | OEM Guarantee | Coverage / Notes |
| NXS-Z1 — Cable tray and racking system | 18 months from FAT | Yes — OEM via ASI | Structural integrity and finish quality guaranteed. Cable tray load rating confirmed at FAT. |
| NXS-Z1 — 20kV MVDC cable (Z1 backbone) | 24 months from FAT | Yes — OEM direct | Insulation integrity, current capacity, dielectric strength guaranteed. |
| NXS-Z1 — ASI-PBK-QC and ASI-ZBK-MPC connectors | 18 months from FAT | Yes — OEM via ASI | Electrical rating and mechanical function guaranteed. HVIL function per connector. |
| NXS-Z2 — High-temp thermal header piping | 24 months from FAT | Yes — ASI | Leak-free at rated pressure/temperature. Insulation surface <60°C at rated service. |
| NXS-Z2 — Thermal expansion joints | 18 months from FAT | Yes — OEM via ASI | Rated cycle life guaranteed. Bellows leak-free during warranty. |
| NXS-Z2 — Low-temp thermal header | 18 months from FAT | Yes — ASI | Leak-free. Coolant delivery at 85–95°C confirmed at FAT. |
| NXS-Z3 — H&sub2; high-pressure header | 24 months from FAT | Yes — ASI | Leak-free at rated H&sub2; service pressure. HVIL valve isolation <50 ms per position. |
| NXS-Z3 — H&sub2; purge recycle sub-header | 18 months from FAT | Yes — ASI | Leak-free. Check valve function confirmed at FAT. |
| NXS-Z3 — N&sub2; and compressed air headers | 18 months from FAT | Yes — ASI | Leak-free at rated service pressure. |
| NXS-Z4 — APS collection ductwork | 18 months from FAT | Yes — ASI | Negative pressure at all capture points. Duct leak-free at design static pressure. |
| NXS-Z4 — RFH (12-in. CS rubber-lined) | 18 months from FAT | Yes — ASI | Rubber lining integrity confirmed at FAT. Flow continuity at rated capacity. |
18.1 Warranty Administration
The ASI (pending D-ASI-01) is the single point of warranty contact for all NEXUS sub-tier OEM suppliers. The Unitized Warranty Passport issued at FAT covers the full NEXUS system as an integrated overhead infrastructure product. Individual zone warranties pass through the Unitized Warranty Passport framework. Carbotura Engineering maintains the warranty log per ISO 9001:2015 Clause 8.7.
Open Decisions — NXS-TDS-001 Governing
| D-# | Description | Priority | Blocks |
D-H2-01 | H&sub2; distribution header pressure — 20–50 bar parametric | OER Gate 2 | NXS-Z3 pipe class, HVIL valve spec, ASI-H2-HPS physical standard |
D-THM-02 | ASI-THM-HT physical connector standard | OER Gate 2 | NXS-Z2 high-temp drop valve spec; ICD-NXS-Z2-THM-HT-001 finalization |
D-48V-01 | 48V DC controls bus — retained in NXS-Z1? | OER Gate 2 | Z1 cable tray capacity; ICD tables |
D-66 | PIMB footprint | Modular design review | NXS spine length, structural steel RFQ, total CAPEX |
D-67 | RMB footprint | Modular design review | NXS spine length, structural steel RFQ, total CAPEX |
D-46 | N&sub2; injection SLR — conveying test | OER Gate 2 | NXS-Z3 N&sub2; header sizing |
D-ASI-01 | ASI Vendor Selection | OER Gate 0 | All procurement, FAT, Unitized Warranty Passport |
Closed This Document
| D-# | Resolution |
D-ZEP-APS-01 | CLOSED — H&sub2; purge gas routing = NXS-Z3 recycle. No flare path. NXS-Z3 recycle sub-header confirmed NEXUS scope. Forward input from CBT-ZEP-TDS-001 Rev 0. |
END OF DOCUMENT — CBT-NXS-TDS-001 | Rev 0 | April 2026 | CONFIDENTIAL — CARBOTURA INC.
Four-Zone Architecture | ARM-2026-002 Incorporated | D-ZEP-APS-01 CLOSED | RevCon 3 Baseline