Magnesium based materials for hydrogen based energy storage: Past, present and future

Magnesium based materials for hydrogen based energy storage: Past, present and future
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DOI:
10.1016/j.ijhydene.2018.12.212
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发表时间:
2019-03-22
影响因子:
7.2
通讯作者:
Zhu, Min
Zhu, Min
中科院分区:
工程技术2区
文献类型:
--
作者:
Yartys, V. A.;Lototskyy, M. V.;Zhu, Min

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氢化镁在固体储氢材料方面占有最大的份额。为IEA任务32“氢基储能”做出贡献的国际专家组成的“镁组”最近发表了两篇综述论文,介绍了该小组的活动重点是氢化镁基材料和用于氢和储能的镁基化合物。这篇综述文章不仅概述了镁基复合材料及其应用的基本方面的最新活动,而且还介绍了该主题的历史概述,并概述了未来的发展。重点介绍了Mg-H体系在极压下的理论和实验研究、MgH 2体系的动力学和热力学研究、纳米结构研究、新型镁基化合物和新型复合材料研究以及镁基储氢体系中的催化作用研究。最后,热能存储和放大氢存储系统容纳MgH 2。(C)2019作者由爱思唯尔有限公司代表氢能出版有限责任公司出版。
Magnesium hydride owns the largest share of publications on solid materials for hydrogen storage. The "Magnesium group" of international experts contributing to IEA Task 32 "Hydrogen Based Energy Storage" recently published two review papers presenting the activities of the group focused on magnesium hydride based materials and on Mg based compounds for hydrogen and energy storage. This review article not only overviews the latest activities on both fundamental aspects of Mg-based hydrides and their applications, but also presents a historic overview on the topic and outlines projected future developments. Particular attention is paid to the theoretical and experimental studies of Mg-H system at extreme pressures, kinetics and thermodynamics of the systems based on MgH2, nanostructuring, new Mg-based compounds and novel composites, and catalysis in the Mg based H storage systems. Finally, thermal energy storage and upscaled H storage systems accommodating MgH2 are presented. (C) 2019 The Authors. Published by Elsevier Ltd on behalf of Hydrogen Energy Publications LLC.