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La-Ni Based Alloy Modification by Ce and Fe for the Next Hydrogen Storage in Low-Temperature Metal Hydrides

机译:基于La-Ni的合金改性Ce和Fe在低温金属氢化物中的下一个储氢

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摘要

La-Ni based alloys have been established as suitable materials for reversible hydrogen storage. Low-temperature metal hydrides (LT MH) facilitate hydrogen storage at ambient temperatures and pressure of 1-1.5 MPa. Nevertheless, further research and modifications of these alloys are needed. In this paper, the parent LaNi5 alloy was modified by partially replacing La with Ce and Ni with Fe. The alloys were prepared in two different ways: conventional melting of pure powder metals, and thermochemical reaction using corresponding metal chlorides. Steps were taken to optimize the time-temperature parameters of alloy synthesis. A comparative analysis of the obtained alloy samples followed. Hydrogen sorption isotherms were obtained for the unmodified LaNi5 and modified (La0.5Ce0.5)Ni-5 samples made from pure powder metals. Due to strong oxidation of the alloys prepared from metal chlorides, sorption isotherms for these alloys were not obtained.
机译:La-Ni基合金已成为可逆储氢的合适材料。 低温金属氢化物(LT MH)促进环境温度和1-1.5MPa压力下的储氢。 然而,需要进一步的研究和修改这些合金。 本文通过用CE和NI部分替换La和NI与Fe部分替换母LANI5合金。 用两种不同的方式制备合金:使用相应的金属氯化物常规粉末金属熔化和热化学反应。 采用步骤优化合金合成的时间温度参数。 对所得合金样品的比较分析。 获得氢气吸附等温线用于未修饰的LANI5和由纯粉末金属制成的Ni-5样品进行改性(La0.5CE0.5)。 由于由金属氯化物制备的合金的强氧化,未获得这些合金的吸附等温物。

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