Pressurized Flow Reactor Systems for CO2 Capture (CCUS) Research
Reactor platform (Tubular & CSTR) for CO2 capture research (200 bar, 300°C).
Our core expertise is the engineering of custom-built pilot plants, from lab scale to semi-industrial. We design and integrate reaction systems (batch, CSTR, tubular), separation modules, and complex injection/mixing skids, all governed by robust automation and control systems.
This know-how allows you to validate and optimize your processes. Common applications include reaction kinetics studies, technology validation (e.g., CO₂ capture, bioprocesses), industrial fluid formulation, or acquiring data for process scale-up.
The projects shown below are examples. Our engineering department is structured to design the unique pilot plant that will solve your specific process challenge.
Reactor platform (Tubular & CSTR) for CO2 capture research (200 bar, 300°C).
high-pressure autoclave benches for flammable gases (H2). Features full ATEX safety integration and ergonomic handling.
R&D platform with high-pressure tubular (PFR) and stirred (CSTR) reactors for gas-liquid process studies and catalyst screening.
Design of an automated semi-industrial pilot plant for multi-phase fluid process studies, featuring radar interface measurement and ergonomic design.
For a major defense industry player, we designed an automated tank cleaning system for ATEX environments. This solution improves productivity, ergonomics, and operator safety.
For a manufacturing leader, we designed a dual volumetric pump (200 bar) for the precision mixing of reactive fluids (polymer, abrasive suspensions).