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Titlebook: Energy Storage; Fundamentals, Materi Robert Huggins Textbook 2016Latest edition Springer International Publishing Switzerland 2016 Electroc

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书目名称Energy Storage
副标题Fundamentals, Materi
编辑Robert Huggins
视频video
概述Explains the fundamentals of all major energy storage methods, from thermal and mechanical to electrochemical and magnetic.Clarifies which methods are optimal for important current applications, inclu
图书封面Titlebook: Energy Storage; Fundamentals, Materi Robert Huggins Textbook 2016Latest edition Springer International Publishing Switzerland 2016 Electroc
描述Energy Storage explains the underlying scientific and engineering fundamentals of all major energy storage methods. These include the storage of energy as heat, in phase transitions and reversible chemical reactions, and in organic fuels and hydrogen, as well as in mechanical, electrostatic and magnetic systems. Updated coverage of electrochemical storage systems considers exciting developments in materials and methods for applications such as rapid short-term storage in hybrid and intermittent energy generation systems, and battery optimization for increasingly prevalent EV and stop-start automotive technologies. This nuanced coverage of cutting-edge advances is unique in that it does not require prior knowledge of electrochemistry. Traditional and emerging battery systems are explained, including lithium, flow and liquid batteries. Energy Storage provides a comprehensive overview of the concepts, principles and practice of energy storage that is useful to both students and professionals.
出版日期Textbook 2016Latest edition
关键词Electrochemical Energy Storage; Energy Storage; Hydrogen Storage; Lead-acid Batteries; Lithium Ion Batte
版次2
doihttps://doi.org/10.1007/978-3-319-21239-5
isbn_softcover978-3-319-33108-9
isbn_ebook978-3-319-21239-5
copyrightSpringer International Publishing Switzerland 2016
The information of publication is updating

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https://doi.org/10.1007/978-3-663-00126-3here are also cases in which three elements are present, but only partial equilibrium can be obtained in experiments, so the electrode behaves as though it were composed of two, rather than three, components.
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