CO₂ Capture and Conversion Integrated Device

Capture-Separation-Conversion-Detection Integrated · High Precision Modular · Research Specialized

Introduction

The laboratory-level CO2 capture and conversion integrated system is a high-precision, modular research device designed for research institutions, university laboratories, and enterprise R&D centers. This system realizes the "Capture-Separation-Conversion-Detection" full-process integrated operation, eliminating the need for complex multi-device splicing, significantly reducing experimental difficulty, and improving research efficiency.

The system can customize various adsorption capture technologies and efficient catalytic conversion modules, accurately capturing CO2 from different gas sources (such as simulated industrial flue gas, atmosphere, biogas, etc.), and converting it into high-value chemicals (such as methanol, formic acid, carbon monoxide, hydrocarbons, etc.) or energy carriers under controlled conditions. With precise parameter control capabilities, stable operating performance, and comprehensive data analysis functions, it provides strong hardware support for basic research, catalyst screening, and reaction mechanism exploration in the field of CO2 resource utilization.

Compared with traditional decentralized equipment, this system has significant advantages such as compact size, intelligent operation, and precise data. It can flexibly adapt to different experimental scenario needs, helping researchers quickly advance research processes and accelerate the transformation of scientific research results.

CO2 Capture and Conversion Integrated Device

System Components

Precise Capture Module

Advanced adsorption technology, solid/liquid adsorption paths available, precise capture of CO₂ from different sources (industrial flue gas, atmosphere, etc.), suitable for capture agent validation.

Efficient Conversion Module

Supports high-efficiency electrochemical reduction of CO₂ to produce high-value products at different scales, adaptable to different cell structures and various medium/low/high pressure CO₂ electro-reduction systems.

Product Analysis Module

Efficient gas-liquid product separation, supports online GC module configuration, real-time analysis of CO₂, target products, and by-product concentrations.

Intelligent Control System

PLC control, touch screen operation + PC remote, real-time data monitoring and export, high-precision closed-loop control.

Technical Parameters

Capture Module

Feed Gas Applicability Flue gas, Atmosphere, etc.
Feed Gas Concentration 0 - 50%
Feed Gas Flow 0.01 - 5 L/min
CO₂ Capture Method Solid/Liquid Adsorption

Electrolytic Cell Module

Release Gas Conc. 60 - 99%
Cell Area 1*1 - 10*10cm²
Number of Cells 1 - 10
Cell Structure MEA/Three-chamber

System Module

Voltage Output ≤ 20V
Current Output ≤ 250A
Working Pressure Atm - 20bar
Working Mode CC/CV

Core Advantages

Integrated Design

Integrates capture, separation, conversion, and online detection modules with built-in piping, making experiments more convenient.

High Precision Control

High-precision closed-loop control of key parameters such as temperature, pressure, flow rate, and reactant ratio ensures data accuracy and reliability.

Modular Architecture

Modular functional units allow flexible configuration and upgrades according to different research needs, with high scalability.

Project Cases

The following cases are customized electrochemical testing equipment delivered by eChemStore, covering various technical routes, which can be quickly replicated or deeply customized according to your research goals.

High-Pressure CO2 Electrolysis Test Equipment

Case 1: High-Pressure CO2 Electrolysis Test Equipment

  • 10-cell series MEA structure electrolyzer
  • Operating pressure up to 2 MPa
  • CO2 humidification, voltage detection, product condensation separation
CO2 Capture and Conversion Integrated Equipment

Case 2: CO2 Capture and Conversion Integrated Equipment

  • Two-step process: absorption tower capture + electrolysis to syngas
  • Customizable electrolyzer active area
  • Inlet/outlet pH monitoring, electrolyte circulation and preheating
CO2 Electrolysis Two-Stage Series System

Case 3: CO2 Electrolysis Two-Stage Series System

  • CO2→CO→C2H4 series reaction
  • Supports stack flow channel flushing
  • 5 cells, manual mode operation
Integrated High-Pressure CO2 Electrolysis System

Case 4: Integrated High-Pressure CO2 Electrolysis System

  • Operating pressure atmospheric ~1 MPa
  • Pressure monitoring, electrolyte circulation, flow measurement
  • Custom PC software for automation and data recording
Four-Channel CO2 Electrolysis Test Equipment

Case 5: Four-Channel CO2 Electrolysis Test Equipment

  • 4-channel independent operation, multiple test methods
  • Compatible with acidic and alkaline systems
  • Touch screen and PC multi-terminal control
CO2 Electrolysis Voltage Stabilization Device

Case 6: CO2 Electrolysis Voltage Stabilization Device

  • 3-channel independent voltage stabilization design
  • Compatible with acidic and alkaline electrolytes
  • PLC automatic control + touch screen HMI
5-Channel Water Electrolysis Hydrogen Production System

Case 7: 5-Channel Water Electrolysis Hydrogen Production System

  • 5-channel parallel testing capability
  • Compatible with 1×1-10×10cm² electrolyzers
  • Automatic liquid replenishment function
Single-Channel Water Electrolysis Test Equipment

Case 8: Single-Channel Water Electrolysis Test Equipment

  • 1×1 single-channel design
  • High integration compact structure
  • Fully automated operation
5 Nm³/h Water Electrolysis Hydrogen Production System

Case 9: 5 Nm³/h Water Electrolysis Hydrogen Production System

  • 5Nm³/h hydrogen production, 1.6MPa pressure resistance
  • Non-metallic frame electrolysis technology
  • Hydrogen purification -70°C dew point high purity
1 Nm³/h Water Electrolysis Hydrogen Production System

Case 10: 1 Nm³/h Water Electrolysis Hydrogen Production System

  • 1Nm³/h hydrogen production, 1.6MPa pressure resistance
  • Meets university EHS assessment requirements
  • Safe and reliable laboratory solution
Single-Channel Water Electrolysis Test Platform

Case 11: Single-Channel Water Electrolysis Test Platform

  • 1×1 single-channel water electrolysis
  • High integration design
  • Fully automated operation
1 Nm³/h Water Electrolysis Hydrogen Production Equipment

Case 12: 1 Nm³/h Water Electrolysis Hydrogen Production Equipment

  • 1Nm³/h water electrolysis hydrogen production system
  • 1.6MPa pressure resistance design
  • Suitable for scientific research and teaching