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MgH₂/Mg脱氢/加氢过程中Mg/MgH₂的实验观测成核与生长行为综述

Experimentally Observed Nucleation and Growth Behavior of Mg/MgH during De/Hydrogenation of MgH/Mg: A Review.

作者信息

Lyu Jinzhe, Kudiiarov Viktor, Lider Andrey

机构信息

Division for Experimental Physics, School of Nuclear Science & Engineering, National Research Tomsk Polytechnic University, Lenin Ave. 43, 634050 Tomsk, Russia.

School of Electrical and Mechanical Engineering, Pingdingshan University, Pingdingshan 467000, China.

出版信息

Materials (Basel). 2022 Nov 12;15(22):8004. doi: 10.3390/ma15228004.

Abstract

With the increasing energy crisis and environmental problems, there is an urgent need to seek an efficient renewable energy source, and hydrogen energy is considered one of the most promising energy carriers. Magnesium is considered a promising hydrogen storage material due to its high hydrogen storage density, abundant resources, and low cost. However, sluggish kinetic performance is one of the bottlenecks hindering its practical application. The kinetic process of hydrogenation/dehydrogenation can be influenced by both external and internal factors, including temperature, pressure, elementary composition, particle size, particle surface states, irregularities in particle structure, and hydrogen diffusion coefficient. The kinetic performance of the MgH/Mg system can be effectively improved by more active sites and nucleation centers for hydrogen absorption and desorption. Herein, we briefly review and discuss the experimentally observed nucleation and growth behavior of Mg/MgH during de/hydrogenation of MgH/Mg. In particular, the nucleation and growth behavior of MgH during the hydrogenation of Mg is discussed from the aspect of temperature and hydrogen pressure.

摘要

随着能源危机和环境问题的日益加剧,迫切需要寻找一种高效的可再生能源,氢能被认为是最有前景的能量载体之一。镁因其高储氢密度、资源丰富和成本低而被视为一种有前景的储氢材料。然而,缓慢的动力学性能是阻碍其实际应用的瓶颈之一。氢化/脱氢的动力学过程会受到外部和内部因素的影响,包括温度、压力、元素组成、粒径、颗粒表面状态、颗粒结构不规则性以及氢扩散系数。通过增加更多用于氢吸收和解吸的活性位点和成核中心,可以有效提高MgH₂/Mg体系的动力学性能。在此,我们简要回顾并讨论了在MgH₂/Mg的脱氢/氢化过程中实验观察到的Mg/MgH₂的成核和生长行为。特别地,从温度和氢压力方面讨论了Mg氢化过程中MgH₂的成核和生长行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33f5/9694325/7f3efd91f8f0/materials-15-08004-g001.jpg

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