M Series

Proton PEM Electrolyser

103-4,000 Nm³/h

The M Series provides fast response times and production flexibility making it ideal for hydrogen generation utilizing renewable power sources. With minimal maintenance and siting requirements, M Series electrolysers can produce up to 4,000 Nm3/h of hydrogen gas at 99.9998% purity on-demand. Featuring a scalable modular design that can be containerized, these systems offer solutions that are well-suited for a variety of industrial, fueling and renewable energy applications.

Specifications

M100M200M400
Net Production Rate
  Nm³/h @ 0°C, 1 bar103 Nm³/h207 Nm³/h413 Nm³/h
  SCF/h @ 70°F, 1 atm3,909 SCF/h7,857 SCF/h15,7143 SCF/h
  SLPM @ 70°F, 1 atm1,845 SLPM3,708 SLPM7,416 SLPM
  kg/24 h222 kg/24 h446 kg/24 h892 kg/24 h
Production Capacity Dynamic Range10-100% (Input Mode); 0-100% (H₂ Demand Mode)10-100% (Input Mode); 0-100% (H₂ Demand Mode)10-100% (Input Mode); 0-100% (H₂ Demand Mode)
Average Power Consumption at Stack4.53 kWh/Nm³4.53 kWh/Nm³4.53 kWh/Nm³
Purity (with Optional High Purity Dryer)99.9998%99.9998%99.9998%
O₂-Content in H₂< 1 ppm v< 1 ppm v< 1 ppm v
H₂O-Content in H₂< 2 ppm v< 2 ppm v< 2 ppm v
Delivery Pressure30 barg (435 psig)30 barg (435 psig)30 barg (435 psig)
Dimensions~100m²~160m²~540m²
Ambient Temperature (Low and High Ambient Temperature Options Available)10-40º C (50-104º F)10-40º C (50-104º F)10-40º C (50-104º F)
ElectrolyteProton Exchange Membrane (PEM) – Caustic FreeProton Exchange Membrane (PEM) – Caustic FreeProton Exchange Membrane (PEM) – Caustic Free

Features

  • > 99% availability
  • 0-100% variable output
  • Cold start less than 5 minutes
  • Full ramp up/ramp down in seconds
  • Indoor or outdoor options
  • Instantaneous response to variable requirements
  • Minimum maintenance
  • Remote monitoring and control

Applications

  • Ammonia Production
  • Annealing
  • Blast Furnace Injection
  • Biogas Processing
  • Catalytic Atmosphere
  • Chemical Feedstock
  • Chemical Vapor Deposition
  • Cylinder/Tube Truck Filling
  • Desulfurization
  • Direct Reduced Iron
  • Energy Storage
  • Extreme Ultravolite Lithography
  • Fuel for Transport
  • Heat Treating
  • Grid Management
  • Hydrogenation
  • Powder Metallurgy
  • Power-to-Gas
  • Power-to-Power
  • Protective Atmosphere

Key features

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