PEM hydrogen generators produce hydrogen gas through electrolysis, using a proton exchange membrane to separate hydrogen and oxygen.
Water is fed into the generator.
Electrical energy splits water into hydrogen and oxygen.
Protons pass through the PEM, separating hydrogen and oxygen.
Hydrogen gas is collected and stored.
Low-Temperature PEM Hydrogen Generators
High-Temperature PEM Hydrogen Generators
Pressurized PEM Hydrogen Generators
Fuel cell systems
Power generation
Industrial processes
Transportation (fueling stations)
Energy storage and backup power
Renewable energy systems
Research and development
Hydrogen production: 1-100 Nm³/h
Purity: 99.999%
Pressure: 10-30 bar
Temperature: 50-80°C
Power consumption: 1-50 kW
High-purity hydrogen production
Compact and lightweight design
Low maintenance requirements
Fast startup and shutdown times
Automated control systems
ISO 9001 (Quality Management)
ISO 14001 (Environmental Management)
ASME (American Society of Mechanical Engineers)
CE (Conformité Européene)
UL (Underwriters Laboratories)
High-purity hydrogen production
Low operating costs
Compact and lightweight design
Fast startup and shutdown times
Reliable and consistent performance
High upfront costs
Limited scalability
Requires electrical energy
May require additional cooling systems
Hydrogen storage and transportation challenges
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