EPC Energy Technology
Electro Power Cell / Power The Future


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



Overview

Laboratory validation is the starting point for transitioning electrochemical technologies to engineering applications. The focus is on generating reliable, engineering-relevant data under controlled conditions. Unlike conventional research-oriented experiments, we conduct tests under realistic operating conditions with emphasis on performance, stability, and repeatability. Through single-cell testing, material evaluation, and reaction pathway validation, we establish standardized testing protocols and data models that provide a solid foundation for subsequent stack scale-up and system integration. Additionally, we identify technical boundaries and key constraints early in the experimental phase to reduce uncertainties during scale-up.


Key Capabilities

Test fixtures and single-cell hardware
Electrochemical test bench systems
Operating condition simulation and environment setup
Data analysis and performance evaluation
Technical validation and testing services

Test Fixtures & Single-Cell Platforms


Introduction

Test fixtures and single-cell platforms are the fundamental building blocks for electrochemical technology validation. They are used to evaluate materials, structures, and reaction performance under controlled conditions. We offer standardized and custom test fixtures for PEM, AEM, and CO₂ electroreduction systems, covering the entire process from material screening to single-cell performance validation.


Key Functions

Single-cell performance evaluation
MEA and materials testing
Flow field and structural validation
Operating condition adaptation and parameter contro
lData acquisition and engineering parameter output

Electrochemical Test Benches


Introduction

Electrochemical test benches are used to validate electrolysis processes and key operating parameters at the system level, serving as a critical link between single-cell validation and engineering scale-up. By integrating gas and liquid supply, temperature and pressure control, and electrical and safety management, they establish a testing environment that closely mirrors real operating conditions. These systems support multiple electrochemical platforms including PEM, AEM, and CO₂ electroreduction, with single or multi-channel testing capabilities. They provide reliable data support for stack design, BoP integration, and control strategy development, while reducing uncertainties during scale-up.


Key Functions

Multi-channel electrochemical testing
Gas and liquid feed with precise control
Temperature and pressure regulation
Long-term and dynamic operation testing
Data acquisition and system monitoring

Operating Condition Simulation


Introduction

Operating condition simulation is used to reproduce real-world engineering conditions during the experimental and bench-scale stages. It is a critical step in validating the feasibility and stability of electrochemical systems. Through coupled control of multiple parameters including temperature, pressure, flow rate, and gas/liquid composition, we build test environments that closely match actual application scenarios.


Key Functions

Multi-parameter coupled condition control
Dynamic operating condition simulation
Long-term stability validation
Operating envelope and boundary identification
Engineering condition data output

Data Analysis & Performance Evaluation


Introduction

Data analysis and performance evaluation are used to systematically process and interpret key data generated during testing. This step bridges experimental results and engineering design. Through comprehensive analysis of voltage, current, product distribution, and energy efficiency data, we extract critical parameters for system design and scale-up.


Key Functions

Performance curve analysis
Efficiency and Faradaic evaluation
Stability and degradation analysis
Parameter extraction and modeling
Data-driven engineering decisions

Validation Services


Introduction

Validation services are designed for clients in the early R&D and engineering stages. Through systematic testing and engineering analysis, we help clarify technical feasibility and development pathways. Beyond standard testing services, we conduct comprehensive evaluations of key parameters, operating windows, and system integration in the context of real-world applications.


Key Functions

MEA and materials performance validation
Electrolyzer and reactor performance evaluation
Operating window and operational strategy definition
Technology pathway validation
Engineering pathway advisory
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