Two water products.
COREX and VECTRA form the intended product core. Sizing, manufacturing and installation are project-specific — matched to the existing plant.
COREX
Hydraulic flow booster for secondary clarifiers.
COREX
Passive hydraulic retrofit for existing circular clarifiers. A conical HDPE geometry at the basin inlet redirects inflow into ordered centripetal bottom flow — no moving parts, no power draw. Sizing and fitness remain plant-specific.
- Geometry matched to the existing basin
- CFD simulation before manufacturing
- Glass-fibre reinforced recycled HDPE
- Modular, scalable build
VECTRA
Standalone sludge decanter-concentrator.
VECTRA
Intended second water product: a standalone decanter-concentrator for municipal and semi-industrial plants. Technical boundaries and final configuration are confirmed per project.
- Dedicated vessel, not only an in-basin retrofit
- Tangential inlet, internal flow guidance
- Sized to plant demand
- Defined manufacturing and install interfaces
From as-built to a released model.
COREX and VECTRA are detailed above. Below is the digital basis that links design, manufacturing and proof — project-specific, not a generic package.
3D plant model
3D capture, plant model and released interfaces link as-built docs, variant checks, design and manufacturing.
Some visuals illustrative. Partner manufacturing and own capacity follow a staged build — see Architecture and Location.
Drones, 3D capture and remote operation.
Camera drone, handheld scanner and LiDAR drone cover different capture ranges; humanoid remote operation stays a separate later capability.
Camera drone
Routine imagery and visual checks of hard-to-reach plant areas.
3D scanner
Components, connections and tight spaces at high local detail.
LiDAR drone
Point clouds of larger outdoor areas and whole plant zones.
Development direction; effects and fitness validated per application. Clearances: safety, law, privacy, human supervision.
CO₂ balance — standards-based, two tiers, under operating conditions.
Independent life-cycle assessment (LCA) for Speed-o-Clar® / COREX by VERACITY for Densiline (Dec 2025). ISO 14040/14044, ReCiPe 2016 Midpoint (H). Reference plant: 100,000 PE, 20-year horizon.
| Lever | France | Morocco | Reading |
|---|---|---|---|
| Stop ferric chloride (FeCl₃) | −4,220 t CO₂e | −2,540 t CO₂e | Dominant: 96% / 75% of L1 benefits |
| Recirculation energy (−75%) | −156 t CO₂e | −850 t CO₂e | Grid mix effect Morocco ×5.4 vs FR |
| Manufacture + transport (net, 95% HDPE recycle) | ≈ 0.25 t CO₂e | ≈ 0.3 t CO₂e | Entry cost, quickly offset |
| Net Level 1 balance | −4,375 t CO₂e | −3,390 t CO₂e | Direct quantified benefits |
Level 2 (expanded, conditional): co-benefits such as avoided clarifier build-out only when plant-specific conditions apply — up to −4,725 t (FR) / −3,836 t (MA). Public messaging leads with Level 1.
- Water ≤ 45 °C
- Surface overflow rate ≈ 1 m/h without sludge washout
- Aeration-tank MLSS ≤ 4 g/l · SVI ≤ 200 ml/g
- Recirculation ≤ 50% (24/7)
- Verified with calibrated flow and turbidity instruments
Source: VERACITY — multi-criteria LCA SPEED-O-CLAR® for Densiline, v2.0 delivered 19 Dec 2025 · ISO 14040/14044. Extrapolation beyond study assumptions needs plant-specific analysis.