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SOEC Water Electrolysis Hydrogen Production System
SOEC Water Electrolysis Hydrogen Production System
SOEC Water Electrolysis Hydrogen Production System
SOEC Water Electrolysis Hydrogen Production System
SOEC Water Electrolysis Hydrogen Production System
SOEC Water Electrolysis Hydrogen Production System
SOEC Water Electrolysis Hydrogen Production System
SOEC Water Electrolysis Hydrogen Production System

SOEC Water Electrolysis Hydrogen Production System

  • Keywords:SOEC hydrogen production, water electrolysis system, hydrogen generation
  • Category:Hydrogen Energy Equipment

The SOEC Water Electrolysis Hydrogen Production System is an advanced energy solution that utilizes solid oxide electrolysis cells (SOEC) to efficiently convert water into hydrogen. Operating at high temperatures, the system achieves superior energy efficiency compared to conventional electrolysis technologies. It integrates robust electrolyzers, heat management modules, and intelligent control systems to ensure stable hydrogen output and optimized performance. Designed for industrial and renewable energy applications, the SOEC hydrogen production system supports large‑scale hydrogen generation for power plants, chemical industries, and sustainable energy projects. Its eco‑friendly design reduces carbon emissions and provides a reliable pathway toward clean hydrogen production.

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Product Overview

The SOEC Water Electrolysis Hydrogen Production System features a modular and skid-mounted integrated design, offering a compact structure, small footprint, and easy installation. It significantly reduces on-site construction work. The system allows flexible configuration of hydrogen production capacity and can be integrated with external heat sources such as industrial waste heat, residual heat, or solar thermal energy. By combining thermal and electrical energy, it improves overall efficiency and reduces energy consumption, making it an advanced solution for clean and efficient hydrogen production.

Working Principle

The system is based on Solid Oxide Electrolysis Cell (SOEC) technology, which electrolyzes steam at high temperatures to produce hydrogen and oxygen. The high-temperature environment significantly reduces the electrical energy required for electrolysis. By introducing external heat sources into the process, thermal and electrical energy are utilized synergistically, enhancing energy conversion efficiency and lowering overall energy consumption.

Key Features

  • Modular Design: Flexible expansion and configuration to meet various hydrogen production capacities and application scenarios.
  • Skid-Mounted Installation: Highly integrated design enables quick installation and reduces construction time and costs.
  • External Heat Integration: Compatible with industrial waste heat, residual heat, and solar thermal energy to improve energy efficiency.
  • Compact Structure: Space-saving design suitable for installations with limited space.

Applications

  • Industrial Waste Heat Utilization: Ideal for steel, petrochemical, and other high-temperature industries to produce hydrogen with reduced energy consumption.
  • Renewable Energy Hydrogen Production: Integrates with wind and solar power for efficient conversion and storage of clean energy into hydrogen.
  • New Energy Transportation: Provides a stable hydrogen supply for fuel cell vehicles and hydrogen refueling infrastructure.
  • Integrated Energy Systems: Enables efficient coupling and utilization of electricity and heat in comprehensive energy systems.

 

Hydrogen Production Parameters: WOBO-100 WOBO-1000
Hydrogen Production Rate 100 Nm/h 1000 Nm3/h
Power Load Range 0%~120% 0%~120%
Thermal Startup Time <2min <5min
Hydrogen Outlet Pressure 1.6MPa (g) 1.6MPa(g)
Hydrogen Purity up to 99.99% up to 99.99%
System Rated Power (AC) 360kW 3600kW
Stack Energy Consumption (DC)* 3.16kWh/Nm3 3.16 kWh/Nm3
System Energy Consumption (AC)* 3.6kWh/Nm3 3.6kWh/Nm3
System Efficiency 84% 84%
Steam Inlet Volume 134kg/h 1340 kg/h
Inlet Temperature 140℃ 140℃
Inlet Pressure >1.5 bar(g) >1.5 bar(g)
Weight 6t 60t
Footprint ~50m2 ~400m2
Ambient Temperature -20°C~40°C -20°C~40°C

 

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