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  • EU-Programme-Call
  • Horizon 2020
  • H2020-EU.3. SOCIETAL CHALLENGES
  • H2020-EU.3.3. SOCIETAL CHALLENGES - Secure, clean and efficient energy
  • H2020-EU.3.3.8. FCH2 (energy objectives)
  • H2020-EU.3.3.8.2. Increase the energy efficiency of production of hydrogen mainly from water electrolysis and renewable sources while reducing operating and capital costs, so that the combined system of the hydrogen production and the conversion using the fuel cell system can compete with the alternatives for electricity production available on the market

H2020-EU.3.3.8.2. Increase the energy efficiency of production of hydrogen mainly from water electrolysis and renewable sources while reducing operating and capital costs, so that the combined system of the hydrogen production and the conversion using the fuel cell system can compete with the alternatives for electricity production available on the market

Mapped projects (27)
  • H2020-JTI-FCH-2014-1
    (2)
    • FCH-02.1-2014 Research in electrolysis for cost effective hydrogen production
      (1)
    • FCH-02.2-2014 Decentralized hydrogen production from clean CO2-containing biogas
      (1)
  • H2020-JTI-FCH-2015-1
    (4)
    • FCH-02.1-2015 Improved electrolysis for Off-grid Hydrogen production
      (1)
    • FCH-02.2-2015 Improved electrolysis for Distributed Hydrogen production
      (1)
    • FCH-02.3-2015 Development of co-electrolysis using CO2 and water
      (1)
    • FCH-02.4-2015 Proof-of-concept of HT electrolysers at a scale > 70 kW
      (1)
  • H2020-JTI-FCH-2016-1
    (3)
    • FCH-02-2-2016 Development of compact reformers for distributed bio-hydrogen production
      (1)
    • FCH-02-3-2016 Development of processes for direct production of hydrogen from sunlight
      (1)
    • FCH-02-4-2016 Co-generation of hydrogen and electricity with high-temperature fuel cells
      (1)
  • H2020-JTI-FCH-2017-1
    (8)
    • FCH-02-1-2017 Game changer Water Electrolysers
      (2)
    • FCH-02-12-2017 Demonstration of fuel cell-based energy storage solutions for isolated micro-grid or off-grid remote areas
      (1)
    • FCH-02-2-2017 Game changer High Temperature Steam Electrolysers
      (1)
    • FCH-02-3-2017 Reversible Solid Oxide Electrolyser (rSOC) for resilient energy systems
      (1)
    • FCH-02-4-2017 Highly flexible electrolysers balancing the energy output inside the fence of a wind park
      (1)
    • FCH-02-5-2017 Demonstration of large electrolysers for bulk renewable hydrogen production
      (1)
    • FCH-02-6-2017 Liquid organic hydrogen carrier
      (1)
  • H2020-JTI-FCH-2018-1
    (5)
    • FCH-02-2-2018 Demonstration of large-scale steam electrolyser system in industrial market
      (1)
    • FCH-02-4-2018 Thermochemical Hydrogen Production from Concentrated Sunlight
      (1)
    • FCH-02-5-2018 Hydrogen carriers for stationary storage of excess renewable energy
      (1)
    • FCH-02-8-2018 Waste-stream based power balancing plants with high efficiency, high flexibility and power-to-X capability
      (1)
    • FCH-04-4-2018 Strengthening public acceptance and awareness of FCH-technologies by educating pupils at schools
      (1)
  • H2020-JTI-FCH-2019-1
    (5)
    • FCH-02-2-2019 Multi megawatt high-temperature electrolyser for valorisation as energy vector in energy intensive industry
      (1)
    • FCH-02-3-2019 Continuous supply of green or low carbon H2 and CHP via Solid Oxide Cell based Polygeneration
      (1)
    • FCH-02-4-2019 New Anion Exchange Membrane Electrolysers
      (3)
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