EPC Energy Technology
Electro Power Cell / Power The Future


Provides system engineering solutions for green hydrogen, CO₂ utilization & Power-to-X



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 Electrolysis System (CO₂RR) – Electrochemically converts CO₂ into CO or syngas
Gas Supply and Conditioning System – Manages CO₂ and hydrogen ratio, flow rate, and pressure control
Catalytic Reactor System – Further converts intermediates into fuel molecules
Gas Separation and Purification System – Separates and purifies product gases
Control System (Process Integration) – Enables coordinated operation and process control across subsystems
Thermal Management System – Regulates reaction temperature to ensure stability and efficiency

CO₂ Electroreduction Stack


System Components:

CO₂ electrolyzer stack (single cell or multi-cell stack)
Membrane electrode assembly (MEA) with CO₂ reduction electrode system
Bipolar plates and flow field structure (gas distribution and mass transfer)
Sealing and structural compression system
Gas supply and outlet interfaces (CO₂ / product gas)
Temperature and pressure monitoring interfaces
Electrical connection and current distribution unit

Technical Features:

Supports electrochemical conversion of CO₂ to CO or syngas
Optimized electrode and flow field design for enhanced mass transfer and reaction efficiency
Compatible with PEM and AEM electrolysis platforms
Modular scalability from single cell to full stack
Stable output under continuous operation
Standardized interfaces for system integration and scale-up

CO₂ 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
Designed for intermediate product pathways, facilitating downstream fuel synthesis integration
Optimized electrode and flow field structure for enhanced mass transfer and reaction stability
Supports continuous operation and dynamic conditions for system-level applications
Modular design for flexible scaling from single cell to full stack
Standardized interfaces for seamless integration with gas handling and synthesis systems
Electro Power Cell Energy Technology
(Shanghai) CO., Ltd
Contact us:
✉️   fern@electropowercell.com
         
             +86 181 1735 8642

Address:Building 6, Caohejing Science and Technology Oasis,
                Yaobei Road, Songjiang District, Shanghai, China