EPC Energy Technology
Electro Power Cell / Power The Future


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



Introduction

Skid-mounted modular systems represent the final form of engineering and commercial deployment for electrochemical technologies. By integrating electrolysis units, gas-liquid treatment, thermal management, and control systems, they deliver standardized, transportable, and rapidly deployable solutions. Based on modular design principles, we transform complex system engineering into combinable and scalable functional units that can be flexibly configured for different applications. While ensuring performance and stability, our approach enables factory pre-integration, rapid on-site installation and commissioning, significantly reducing project cycle time and costs.


Key Functions

Modular system design
Skid integration and factory prefabrication
Rapid deployment and on-site installation
Multi-scenario adaptability and scalability
Operation and maintenance support

Comprehensive O&M support to ensure long-term operational reliability.

Modular System Design


Introduction

Modular system design is a key approach for achieving engineering replicability and rapid deployment by standardizing and integrating electrochemical systems according to function. By dividing the system into independent modules such as hydrogen production units, gas-liquid treatment, thermal management, and control systems, flexible configuration and scalability are enabled. While ensuring performance and operational stability, modular design reduces engineering complexity, improves integration efficiency, and adapts to customized requirements across different application scenarios, providing a foundation for skid-mounted integration and scalable deployment.


Key Functions

Functional module definition
Interface and standardization
System configuration and scalability
Engineering integration optimization
Deployment-oriented design

Skid Integration & Factory Prefabrication


Introduction

Skid integration and factory prefabrication bring functional modules together for system-level integration and testing within the factory, enabling rapid project delivery and simplified on-site installation. By integrating electrolysis units, gas-liquid treatment, thermal management, and control systems into transportable skid-mounted units, this approach significantly reduces on-site installation complexity and project timelines compared to traditional construction methods, while improving integration quality and consistency. System commissioning and validation are completed before shipment, ensuring rapid deployment and stable operation upon arrival at the site.


Key Functions

System integration and skid design
Factory prefabrication and assembly
Pre-commissioning and testing
Transportation and site adaptation
Delivery efficiency and engineering optimization

Fast Deployment & Installation


Introduction

Fast deployment and installation are used to efficiently set up and commission skid-mounted modular systems on site, enabling rapid transition from delivery to operation. Based on modular design and factory prefabrication, only basic connections and system hook-ups are required on site to achieve full system integration. Standardized interfaces and simplified construction processes significantly reduce on-site engineering complexity, project timelines, and the risk of human error. This ensures rapid deployment and stable operation across different application scenarios, accelerating project implementation and application validation.


Key Functions

Transport and on-site positioning
Interface connection and system hook-up
On-site commissioning and start-up
Simplified installation and time reduction
Multi-scenario deployment capability

Multi-Scenario Adaptability & Scalability


Introduction

Multi-scenario adaptability and scalability enable flexible deployment and continuous expansion of electrochemical systems across different application environments and scale requirements. Based on modular design and standardized interfaces, systems can be reconfigured for various scenarios, achieving smooth scaling from single-function systems to multi-unit integrated configurations. In applications such as park-level energy, industrial facilities, and off-grid systems, module combination and capacity expansion allow dynamic adjustment of system scale and functionality, ensuring strong adaptability and scalability under diverse operating conditions, and supporting long-term operation and large-scale deployment.


Key Functions

Multi-scenario system configuration
Modular scalability
Capacity matching and load adaptation
Multi-pathway integration
Long-term expansion and upgradability

Operation & Maintenance Support


Introduction

Operation and maintenance support ensures the long-term stability and reliability of electrochemical systems, serving as a key enabler for sustained application and engineering value. Through system monitoring and maintenance management, we ensure efficient and stable operation under various operating conditions. We provide end-to-end support covering operational monitoring, fault diagnosis, and maintenance optimization. By leveraging system operation data and feedback, we continuously refine operational strategies and maintenance plans, extending system lifespan and reducing operational risks while delivering sustainable support to our clients.


Key Functions

Operation monitoring and status management
Fault diagnosis and analysis
Maintenance strategy and optimization
Remote support and data services
System upgrades and continuous improvement
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