System Overview:
CO₂ conversion is the critical step that transforms captured carbon dioxide into usable intermediates or fuel molecules, serving as the core pathway bridging carbon resources and the e-fuels value chain. Through electrochemical (CO₂RR) or thermocatalytic routes, CO₂ can be converted into carbon monoxide (CO) or syngas, which are further synthesized into methanol, methane, and liquid fuels.
In engineering practice, EPC focuses on the entire CO₂ conversion pathway, integrating electrolyzer design (CO₂RR), reaction system optimization, and downstream synthesis processes to achieve stable conversion of CO₂ into usable intermediates, providing a reliable feedstock foundation for green fuel systems.
Main System Components:
CO₂ Electroreduction Stack
System Components:
CO₂ electrolyzer stack (single cell or multi-cell stack)Technical Features:
Supports electrochemical conversion of CO₂ to CO or syngasCO₂ Electroreduction System
System Overview:
The CO₂ electroreduction system electrochemically converts carbon dioxide into carbon monoxide (CO) or syngas, serving as a critical bridge between carbon capture and green fuel synthesis. Centered around the electrolyzer and integrated with gas supply, reaction control, and thermal management, the system enables stable conversion of CO₂ into usable intermediates. EPC provides engineering-oriented CO₂ electroreduction solutions, with optimized electrolyzer design, gas handling, and process control for continuous operation and modular scalability, supplying reliable intermediate feedstocks for green fuel systems.
Technical Features:
Stable electrochemical conversion of CO₂ to CO or syngas|
|