CREATE (721065)

  https://cordis.europa.eu/project/id/721065

  Horizon 2020 (2014-2020)

  Critical Raw materials Elimination by a top-down Approach To hydrogen and Electricity generation

  Innovative and sustainable materials solutions for the substitution of critical raw materials in the electric power system (NMBP-03-2016)

  electric power generation  ·  transition metals  ·  mining and mineral processing  ·  catalysis  ·  fuel cells

  2017-01-01 Start Date (YY-MM-DD)

  2020-12-31 End Date (YY-MM-DD)

  € 4,480,978 Total Cost


  Description

CREATE aims at developing innovative membrane electrode assemblies for low-temperature polymer-electrolyte fuel cell (FC) and electrolyzer (EL) with much reduced cost. This will be achieved via elimination or drastic reduction of critical raw materials in their catalysts, in particular platinum group metals (PGM). Key issues with present low-temperature FC & EL are the high contents of PGM in devices based on proton-exchange-membrane (PEM) and the need for liquid electrolytes in alkaline FC and EL. To overcome this, we will shift from PEM-based cells to 1) pure anion-conducting polymer-electrolytes and 2) to bipolar-membrane polymer electrolytes. The latter comprises anion and proton conducting ionomers and a junction. Bipolar membranes allow adapting the pH at each electrode, thereby opening the door to improved performance or PGM-free catalysts. Both strategies carry the potentiality to eliminate or drastically reduce the need for PGM while maintaining the advantages of PEM-based devices. In strategy 1, novel anion-exchange ionomers and membranes will be developed and interfaced with catalysts based on Earth-abundant metal oxides or metal-carbon composites for the oxygen reactions, and with ultralow PGM or PGM-free catalysts for the hydrogen reactions. In strategy 2, novel bipolar membrane designs, or designs unexplored for FC & EL, will be developed and interfaced with catalysts for the oxygen reactions (high pH side of the bipolar membrane) and with catalysts for the hydrogen reactions (low pH side). The ionomers and oxygen reaction catalysts developed in strategy 1 will be equally useful for strategy 2, while identified PGM-free and ultralow-PGM catalysts will be implemented for the hydrogen reactions on the acidic side. Polymer-electrolyte FC & EL based on those concepts will be evaluated for targeted applications, i.e. photovoltaic electricity storage, off-grid back-up power and H2 production. The targeted market is distributed small-scale systems.


  Complicit Organisations

1 Israeli organisation participates in CREATE.

Country Organisation (ID) VAT Number Role Activity Type Total Cost EC Contribution Net EC Contribution
Italy UNIVERSITA DEGLI STUDI DI ROMA TOR VERGATA (999844864) IT02133971008 participant HES € 403,750 € 403,750 € 403,750
Spain FUNDACIO PRIVADA INSTITUT CATALA D'INVESTIGACIO QUIMICA (999548044) ESG43619550 participant REC € 350,625 € 350,625 € 350,625
Germany EIFER EUROPAISCHES INSTITUT FUR ENERGIEFORSCHUNG EDF KIT EWIV (997980718) DE814587731 participant REC € 365,781 € 365,781 € 365,781
Germany FORSCHUNGSZENTRUM JULICH GMBH (999980470) DE122624631 participant REC € 451,551 € 451,551 € 451,551
France UNIVERSITE DE MONTPELLIER (888104744) FR20130029796 thirdParty HES € 45,263 € 0 € 45,263
Finland AALTO KORKEAKOULUSAATIO SR (991256096) FI22283574 participant HES € 474,588 € 474,588 € 474,588
United Kingdom ITM POWER (TRADING) LIMITED (974052370) GB847508109 participant PRC € 374,200 € 374,200 € 374,200
Germany FUMATECH BWT GMBH (998055408) DE164257829 participant PRC € 512,375 € 512,375 € 512,375
Israel TECHNION - ISRAEL INSTITUTE OF TECHNOLOGY (999907720) IL557585585 participant HES € 699,423 € 699,423 € 699,423
France PRETEXO (989124036) FR32499784585 participant PRC € 88,059 € 88,059 € 88,059
France CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE CNRS (999997930) FR40180089013 coordinator REC € 598,123 € 598,123 € 552,859
United States NORTHEASTERN UNIVERSITY (998448064) nan participant HES € 162,500 € 0 € 0