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Full Length Article | Open Access

Low-energy and accelerated hydrogen release from MgH2–5 wt% NaTiOxH catalyzed hydrogen storage reactor by graphite responsive microwave

Bofei WangaZhen Wua( )Honghao LiuaFusheng YangaZaoxiao Zhanga,bJing YaocQian LicHujun CaodBo Lie
State Key Laboratory of Fluorine & Nitrogen Chemicals, School of Chemical Engineering and Technology, Xi'an Jiaotong University, Xi'an 710049, P. R. China
State Key Laboratory of Multiphase Flow for Power Engineering, Xi'an Jiaotong University, Xi'an 710049, P. R. China
National Engineering Research Center for Magnesium Alloys, Chongqing University, Chongqing 400044, P. R. China
Dalian National Laboratory for Clean Energy, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, P. R. China
Faculty of Engineering, Electrical Energy Management Group, University of Bristol, Bristol BS8 1QU, United Kingdom

Peer review under the responsibility of Chongqing University.

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Abstract

Owing to high thermal stability and large reaction enthalpy, MgH2 has high reaction temperatures and sluggish reaction kinetics in the dehydrogenation process, which consumes lots of energy. To achieve hydrogen release with low energy consumption, accelerated reaction rate, and high heating uniformity, this paper proposes a novel method of graphite responsive microwave-assisted thermal management with NaTiOxH catalyst. A multi-physics model of the 5 wt% NaTiOxH catalyzed MgH2 reactor integrated with a microwave generator is developed to investigate the reaction, heat and mass transfer process of hydrogen release. It is found that the graphite responsive microwave heating method could improve the temperature uniformity of reaction bed, reduce the energy consumption by at least 10.71% and save the hydrogen release time by 53.49% compared with the traditional electric heating method. Moreover, the hydrogen desorption thermodynamics could be improved with the increase of microwave power. The hydrogen release time is shortened by 19.55% with the increase of 20 W microwave power. Meanwhile, it is also concluded that the microwave excitation frequency of 2.1 GHz and the graphite content of 2 wt% have better heating performance. Therefore, it can be verified that the graphite responsive microwave heating helps to low-energy and accelerated hydrogen release from MgH2 hydrogen storage reactor.

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Journal of Magnesium and Alloys
Pages 3864-3879

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Cite this article:
Wang B, Wu Z, Liu H, et al. Low-energy and accelerated hydrogen release from MgH2–5 wt% NaTiOxH catalyzed hydrogen storage reactor by graphite responsive microwave. Journal of Magnesium and Alloys, 2025, 13(8): 3864-3879. https://doi.org/10.1016/j.jma.2025.03.002

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Received: 04 December 2024
Revised: 06 February 2025
Accepted: 10 March 2025
Published: 02 April 2025
© 2025 Chongqing University.

This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/)