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首页> 外文期刊>International journal of hydrogen energy >Tunable microstructure, de-/hydrogenation kinetics and thermodynamics performance of Mg-Ni-La-Ti-H systems
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Tunable microstructure, de-/hydrogenation kinetics and thermodynamics performance of Mg-Ni-La-Ti-H systems

机译:Mg-Ni-La-Ti-H系统的可调微结构,脱氢/加氢动力学和热力学性能

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In the light of positive effects of rare earth and transition metals on the hydrogen absorption/desorption properties of magnesium, the Mg20La-5TiH(2), Mg20Ni-5TiH(2) and Mg10Ni10La-5TiH(2) composites have been prepared in this work to ameliorate the de-/hydrogenation kinetics and thermodynamic performance. The results indicate that the as prepared composites are mainly composed of Mg, Mg2Ni/LaH3 and TiH2 phases after activation, and LaH3 and TiH2 are stable during de-/hydrogenation cycles. The morphology observations give evidences that LaH3 with size about similar to 20 nm and Mg2Ni with size about -1 mu m are uniformly distributed in the composites. It is noted that the de-/hydriding kinetics of the as-prepared composites are significantly improved after internal and surface modification, of which the Mg10Ni10La-5TiH(2) composite can desorb as high as 5.66 wt% hydrogen within 3 min at 623 K. Moreover, the thermodynamic properties of the experimental composites have also been investigated and discussed according to the pressure-composition isothermal curves and corresponding calculation by Van't Hoff equation. The improved hydrogen storage properties of the as-prepared composites are mainly attributed to the uniformly distributed LaH3, Mg2Ni and TiH2 phases, which provide a large amount of phase boundaries, diffusion paths and nucleation sites for de-/hydrogenation reactions. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:鉴于稀土和过渡金属对镁的氢吸收/解吸性能的积极影响,本工作制备了Mg20La-5TiH(2),Mg20Ni-5TiH(2)和Mg10Ni10La-5TiH(2)复合材料改善脱氢/加氢动力学和热力学性能。结果表明,所制备的复合材料在活化后主要由Mg,Mg2Ni / LaH3和TiH2相组成,LaH3和TiH2在脱氢/加氢循环中稳定。形态学观察提供了证据,其尺寸约为20 nm的LaH3和尺寸约为-1μm的Mg2Ni均匀地分布在复合材料中。值得注意的是,经过内部和表面改性后,所制备复合材料的脱水/氢化动力学得到了显着改善,其中Mg10Ni10La-5TiH(2)复合材料可以在623 K下3分钟内解吸高达5.66 wt%的氢。此外,还根据压力-组成等温曲线并通过Van't Hoff方程进行了相应的计算,对实验复合材料的热力学性质进行了研究和讨论。制备好的复合材料储氢性能的改善主要归因于LaH3,Mg2Ni和TiH2相的均匀分布,它们为脱氢/加氢反应提供了大量的相界,扩散路径和成核位置。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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