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  • 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.3.3.8.1. Increase the electrical efficiency and the durability of the different fuel cells used for power production to levels which can compete with conventional technologies, while reducing costs

H2020-EU.3.3.8.1. Increase the electrical efficiency and the durability of the different fuel cells used for power production to levels which can compete with conventional technologies, while reducing costs

  • H2020-JTI-FCH-2014-1
    • FCH-02.11-2014 Large scale fuel cell power plant demonstration in industrial/commercial market segments
    • FCH-02.3-2014 Stationary fuel cell system diagnostics: development of online monitoring and diagnostics systems for reliable and durable fuel cell system operation
    • FCH-02.5-2014 Innovative fuel cell systems at intermediate power range for distributed combined heat and power generation
    • FCH-02.9-2014 Significant improvement of installation and service for fuel cell systems by Design-to-Service
  • H2020-JTI-FCH-2015-1
    • FCH-02.6-2015 Development of cost effective manufacturing technologies for key components or fuel cell systems
    • FCH-02.9-2015 Large scale demonstration of µCHP fuel cells
  • H2020-JTI-FCH-2016-1
    • FCH-02-11-2016 MW or multi-MW demonstration of stationary fuel cells
    • FCH-02-5-2016 Advanced monitoring, diagnostics and lifetime estimation for stationary SOFC stacks and modules
    • FCH-02-6-2016 Development of cost effective manufacturing technologies for key components or fuel cell systems for industrial applications
  • H2020-JTI-FCH-2017-1
    • FCH-02-1-2017 Game changer Water Electrolysers
    • FCH-02-11-2017 Validation and demonstration of commercial-scale fuel cell core systems within a power range of 10-100kW for selected markets/applications
    • FCH-02-3-2017 Reversible Solid Oxide Electrolyser (rSOC) for resilient energy systems
    • FCH-02-7-2017 Development of flexible large fuel cell power plants for grid support
    • FCH-02-8-2017 Step-change in manufacturing of Fuel Cell Stack Components
    • FCH-02-9-2017 Development of next-generation SOFC stack for small stationary applications
  • H2020-JTI-FCH-2018-1
    • FCH-02-3-2018 Robust, efficient long term remote power supply
    • FCH-02-6-2018 Cost-effective novel architectures of interconnects
    • FCH-02-7-2018 Efficient and cost-optimised biogas-based co-generation by high-temperature fuel cells
    • FCH-03-1-2018 Developing Fuel Cell applications for port/harbour ecosystems
    • FCH-04-3-2018 Accelerated Stress Testing (AST) protocols for Solid Oxide Cells (SOC)
    • FCH-04-4-2018 Strengthening public acceptance and awareness of FCH-technologies by educating pupils at schools
  • H2020-JTI-FCH-2019-1
    • FCH-02-6-2019 New materials, architectures and manufacturing processes for Solid Oxide Cells
    • FCH-02-7-2019 Development of highly efficient and flexible mini CHP fuel cell system based on HTPEMFCs
    • FCH-02-8-2019 Enhancement of durability and reliability of stationary PEM and SOFC systems by implementation and integration of advanced diagnostic and control tools
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