Statements (51)
| Predicate | Object |
|---|---|
| gptkbp:instanceOf |
gptkb:Electrolyser
gptkb:Hydrogen_production_technology |
| gptkbp:advantage |
Compact design
High cost of materials High purity hydrogen output Rapid response to power changes Requires precious metal catalysts |
| gptkbp:application |
Industrial hydrogen supply
Renewable energy storage Fuel cell vehicle refueling Power-to-gas systems |
| gptkbp:compatibleWith |
Alkaline electrolyte
|
| gptkbp:competitor |
gptkb:Alkaline_Electrolyser
Solid Oxide Electrolyser |
| gptkbp:developedBy |
20th century
|
| gptkbp:effect |
60-80% (HHV)
|
| gptkbp:lifespan |
~60,000-80,000 hours
|
| gptkbp:manufacturer |
gptkb:ITM_Power
gptkb:Plug_Power gptkb:Cummins gptkb:Siemens_Energy gptkb:Enapter gptkb:Thyssenkrupp gptkb:John_Cockerill Giner ELX Elogen H-TEC Systems Hydrogenics McPhy Energy Nel Hydrogen Ohmium |
| gptkbp:membraneMaterial |
gptkb:Nafion
Perfluorosulfonic acid |
| gptkbp:operatesIn |
Low temperature
Ambient pressure |
| gptkbp:produces |
gptkb:Oxygen
gptkb:Hydrogen |
| gptkbp:requires |
gptkb:water
gptkb:Electricity Deionized water |
| gptkbp:stackable |
Yes
|
| gptkbp:usedBy |
Green hydrogen production plants
Hydrogen refueling stations Power-to-X projects |
| gptkbp:uses |
Proton Exchange Membrane
Polymer Electrolyte Membrane |
| gptkbp:usesCatalyst |
gptkb:Iridium
Platinum |
| gptkbp:bfsParent |
gptkb:AEM_Electrolyser
|
| gptkbp:bfsLayer |
8
|
| https://www.w3.org/2000/01/rdf-schema#label |
PEM Electrolyser
|