Materials for hydrogen-based energy storage – past, recent progress and future outlook

Publikation: Bidrag til tidsskrift/Konferencebidrag i tidsskrift /Bidrag til avisTidsskriftartikelForskningpeer review

  • Michael Hirscher, Max Planck Institute for Intelligent Systems
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  • Volodymyr A. Yartys, Institute for Energy Technology
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  • Marcello Baricco, Università degli Studi di Torino
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  • Jose Bellosta von Colbe, Helmholtz-Zentrum Geesthacht - Zentrum für Material- und Küstenforschung GmbH
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  • Didier Blanchard, Danmarks Tekniske Universitet
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  • Robert C. Bowman, RCB Hydrides, LLC
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  • Darren P. Broom, Hiden Isochema Ltd
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  • Craig E. Buckley, Curtin University
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  • Fei Chang, Utrecht University
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  • Ping Chen, Dalian Institute of Chemical Physics Chinese Academy of Sciences
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  • Young Whan Cho, Korea Institute of Science and Technology
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  • Jean Claude Crivello, University Paris Est Creteil
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  • Fermin Cuevas, University Paris Est Creteil
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  • William I.F. David, University of Oxford, Oxford, Rutherford Appleton Laboratory
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  • Petra E. de Jongh, Utrecht University
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  • Roman V. Denys, HYSTORSYS AS
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  • Martin Dornheim, Helmholtz-Zentrum Geesthacht - Zentrum für Material- und Küstenforschung GmbH
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  • Michael Felderhoff, Max-Planck-Institut für Kohlenforschung
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  • Yaroslav Filinchuk, Université catholique de Louvain
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  • George E. Froudakis, University of Crete
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  • David M. Grant, University of Nottingham
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  • Evan Mac A. Gray, Griffith University Queensland
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  • Bjørn C. Hauback, Institute for Energy Technology
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  • Teng He, Dalian Institute of Chemical Physics Chinese Academy of Sciences
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  • Terry D. Humphries, Curtin University
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  • Torben R. Jensen
  • Sangryun Kim, Tohoku University
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  • Yoshitsugu Kojima, Hiroshima University
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  • Michel Latroche, University Paris Est Creteil
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  • Hai Wen Li, Kyushu University
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  • Mykhaylo V. Lototskyy, University of the Western Cape
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  • Joshua W. Makepeace, University of Oxford, Oxford
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  • Kasper T. Møller
  • Lubna Naheed, Griffith University Queensland
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  • Peter Ngene, Utrecht University
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  • Dag Noréus, Stockholm University
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  • Magnus Moe Nygård, Institute for Energy Technology
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  • Shin ichi Orimo, Tohoku University
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  • Mark Paskevicius, Curtin University
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  • Luca Pasquini, University of Bologna
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  • Dorthe B. Ravnsbæk, Max-Planck-Institut für Intelligente Systeme, University of Turin
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  • M. Veronica Sofianos, Curtin University
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  • Terrence J. Udovic, National Institute of Standards and Technology
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  • Tejs Vegge, Danmarks Tekniske Universitet
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  • Gavin S. Walker, University of Nottingham
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  • Colin J. Webb, Griffith University Queensland
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  • Claudia Weidenthaler, Max-Planck-Institut für Kohlenforschung
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  • Claudia Zlotea, University Paris Est Creteil

Globally, the accelerating use of renewable energy sources, enabled by increased efficiencies and reduced costs, and driven by the need to mitigate the effects of climate change, has significantly increased research in the areas of renewable energy production, storage, distribution and end-use. Central to this discussion is the use of hydrogen, as a clean, efficient energy vector for energy storage. This review, by experts of Task 32, “Hydrogen-based Energy Storage” of the International Energy Agency, Hydrogen TCP, reports on the development over the last 6 years of hydrogen storage materials, methods and techniques, including electrochemical and thermal storage systems. An overview is given on the background to the various methods, the current state of development and the future prospects. The following areas are covered; porous materials, liquid hydrogen carriers, complex hydrides, intermetallic hydrides, electrochemical storage of energy, thermal energy storage, hydrogen energy systems and an outlook is presented for future prospects and research on hydrogen-based energy storage.

OriginalsprogEngelsk
Artikelnummer153548
TidsskriftJournal of Alloys and Compounds
Vol/bind827
Antal sider39
ISSN0925-8388
DOI
StatusUdgivet - 2020

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