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Advanced hydrogen storage of the Mg-Na-Al system: A review

期刊

JOURNAL OF MAGNESIUM AND ALLOYS
卷 9, 期 4, 页码 1111-1122

出版社

KEAI PUBLISHING LTD
DOI: 10.1016/j.jma.2021.03.031

关键词

Mg-Na-Al system; MgH2; NaAlH4; Al12Mg17; hydrogen storage

资金

  1. Ministry of Higher Education Malaysia through the Fundamental Research Grant Scheme [FRGS/1/2019/STG07/UMT/02/5]

向作者/读者索取更多资源

The solid-state storage system with the Mg-Na-Al system enhances the hydrogen storage performance of MgH2, resulting in a low onset decomposition temperature and superior cyclability.
A solid-state storage system is the most practical option for hydrogen because it is more convenient and safer. Metal hydrides, especially MgH2, are the most promising materials that offer high gravimetric capacity and good reversibility. However, the practical application of MgH2 is restricted by slow sorption kinetics and high stability of thermodynamic properties. Hydrogen storage performance of MgH2 was enhanced by introducing the Mg-Na-Al system that destabilises MgH2 with NaAlH4. The Mg-Na-Al system has superior performance compared to that of unary MgH2 and NaAlH4. To boost the performance of the Mg-Na-Al system, the ball milling method and the addition of a catalyst were introduced. The Mg-Na-Al system resulted in a low onset decomposition temperature, superior cyclability and enhanced kinetics performances. The Al12Mg17 and NaMgH3 that formed in situ during the dehydrogenation process modify the reaction pathway of the Mg-Na-Al system and alter the thermodynamic properties. In this paper, the overview of the recent progress in hydrogen storage of the Mg-Na-Al system is detailed. The remaining challenges and future development of Mg-Na-Al system are also discussed. This paper is the first review report on hydrogen storage properties of the Mg-Na-Al system. (C) 2021 Chongqing University. Publishing service provided by Elsevier B.V. on behalf of KeAi Communications Co. Ltd.

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