刘力, 杨天辉, 周曦, 孟冉浩. 氢化物对Mg2Ni基合金储氢性能的影响[J]. 有色金属科学与工程, 2023, 14(6): 825-832. DOI: 10.13264/j.cnki.ysjskx.2023.06.010
引用本文: 刘力, 杨天辉, 周曦, 孟冉浩. 氢化物对Mg2Ni基合金储氢性能的影响[J]. 有色金属科学与工程, 2023, 14(6): 825-832. DOI: 10.13264/j.cnki.ysjskx.2023.06.010
LIU Li, YANG Tianhui, ZHOU Xi, MENG Ranhao. Effect of hydride on the hydrogen storage performance of Mg2Ni based alloys[J]. Nonferrous Metals Science and Engineering, 2023, 14(6): 825-832. DOI: 10.13264/j.cnki.ysjskx.2023.06.010
Citation: LIU Li, YANG Tianhui, ZHOU Xi, MENG Ranhao. Effect of hydride on the hydrogen storage performance of Mg2Ni based alloys[J]. Nonferrous Metals Science and Engineering, 2023, 14(6): 825-832. DOI: 10.13264/j.cnki.ysjskx.2023.06.010

氢化物对Mg2Ni基合金储氢性能的影响

Effect of hydride on the hydrogen storage performance of Mg2Ni based alloys

  • 摘要: 采用机械球磨法制备了纯Mg2Ni合金和加入添加剂的Mg2Ni+10%(质量比,下同)TiH2、Mg2Ni+10% NbH储氢合金,研究了添加剂TiH2或NbH对Mg2Ni储氢合金物相组成、显微形貌和储氢性能的影响。结果表明,相较于纯Mg2Ni储氢合金,充分吸氢/放氢后,添加了10% TiH2或10% NbH的储氢合金的Mg2NiH4/Mg2Ni相晶胞体积均不同程度地减小;机械球磨后,TiH2在储氢合金中均匀分布,NbH存在一定程度团聚。添加10% TiH2或10% NbH的Mg2Ni储氢合金的吸氢平台和放氢平台都高于纯Mg2Ni合金,放氢反应过程中的焓变和熵变都小于纯Mg2Ni合金。在相同时间内,储氢合金的放氢容量从大到小的顺序为:Mg2Ni+10% TiH2>Mg2Ni+10%NbH>纯Mg2Ni合金,并且温度为573 K时,储氢合金达到最大放氢容量所需时间从小到大的顺序为:Mg2Ni+10% TiH2<Mg2Ni+10%NbH<纯Mg2Ni合金。加入TiH2或NbH会增加储氢合金的反应速率,并且TiH2对氢扩散性能的改善效果优于NbH。

     

    Abstract: Pure Mg2Ni, Mg2Ni with TiH2 of 10% and Mg2Ni with NbH of 10% hydrogen storage alloys were prepared by mechanical ball milling, respectively. The effects of additives (TiH2, NbH) on the phase composition, microstructure and hydrogen storage properties of Mg2Ni hydrogen storage alloys were studied. The results showed that the unit cell volume of the Mg2NiH4/Mg2Ni phase of hydrogen storage alloys added with 10% TiH2 or NbH, decreased to varying degrees, after sufficient hydrogen absorption/desorption, compared with pure Mg2Ni hydrogen storage alloy. TiH2 was uniformly distributed in the hydrogen storage alloys after mechanical ball milling, while NbH was agglomerated to a certain extent. The hydrogen absorption and desorption platforms of the hydrogen storage alloys with the addition of 10% TiH2 or NbH were higher, and the enthalpy change and entropy change in the process of hydrogen evolution reaction were smaller than that of pure Mg2Ni alloy. In the same amount of time, hydrogen evolution capacity of hydrogen storage alloys was listed in order from the largest to the smallest: Mg2Ni + 10% TiH2>Mg2Ni + 10% NbH>pure Mg2Ni alloy. When the temperature was 573 K, the time required for the hydrogen storage alloy to reach the maximum hydrogen release capacity in order from least to most was Mg2Ni + 10% TiH2 < Mg2Ni + 10% NbH < pure Mg2Ni alloy. Adding hydride TiH2 or NbH will increase the reaction rate constant of hydrogen storage alloys, and TiH2 improves hydrogen diffusion performance better than NbH.

     

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