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    Green Hydrogen Production by Water Electrolysis

    Proposal review

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    Contributor(s)
    Hou, Junbo (editor)
    Yang, Min (editor)
    Language
    English
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    Abstract
    The world’s largest economies have set clear development plans for hydrogen energy. From an Economy, Energy, and Environment (3E) point of view, hydrogen energy can be considered an ideal technology for enabling the energy transition from fossil fuels, restructuring energy systems, securing national energy sources, accelerating carbon neutralization, and driving the development of technologies and industry. Green hydrogen production by water electrolysis is the key for hydrogen energy, and this book offers urgently needed guidance on the most important scientific fundamentals and practical applied technologies in this field. This book: • Details materials, electrochemistry, and mechanics. • Covers ALK, PEM, AEM, and SOEC water electrolysis, including fundamentals and applications. • Addresses trends, opportunities, and challenges. This comprehensive reference is aimed at engineers and scientists working on renewable and alternative energy to meet global energy demands and climate action goals.
    URI
    https://library.oapen.org/handle/20.500.12657/91236
    Keywords
    water splitting;electrochemical water splitting;hydrogen energy;renewable energy
    DOI
    10.1201/9781003368939
    ISBN
    9781040047569, 9781003368939, 9781032438078, 9781040047538
    Publisher
    Taylor & Francis
    Publisher website
    https://taylorandfrancis.com/
    Publication date and place
    2025
    Imprint
    CRC Press
    Classification
    Environmental science, engineering and technology
    Energy
    Alternative and renewable energy sources and technology
    Life sciences: general issues
    Physical chemistry
    Industrial chemistry and chemical engineering
    Pages
    363
    Rights
    https://creativecommons.org/licenses/by-nc-nd/4.0/
    • Imported or submitted locally

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    License

    • If not noted otherwise all contents are available under Attribution 4.0 International (CC BY 4.0)

    Credits

    • logo EU
    • This project received funding from the European Union's Horizon 2020 research and innovation programme under grant agreement No 683680, 810640, 871069 and 964352.

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