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Activation and Disproportionation of Zr2Fe Alloy as Hydrogen Storage Material

机译:Zr2Fe合金作为储氢材料的活化和歧化

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摘要

As a hydrogen storage material, Zr2Fe alloy has many advantages such as fast hydrogen absorption speed, high tritium recovery efficiency, strong anti-pulverization ability, and difficulty self-igniting in air. Zr2Fe alloy has lower hydrogen absorption pressure at room temperature than LaNi5 alloy. Compared with the ZrVFe alloy, the hydrogen release temperature of Zr2Fe is lower so that the material can recover hydrogen isotopes at lower hydrogen concentration efficiently. Unfortunately, the main problem of Zr2Fe alloy in application is that a disproportionation reaction is easy to occur after hydrogen absorption at high temperature. At present, there is little research on the generation and influencing factors of a disproportionation reaction in Zr2Fe alloy. In this paper, the effects of temperature and hydrogen pressure on the disproportionation of Zr2Fe alloy were studied systematically. The specific activation conditions and experimental parameters for reducing alloy disproportionation are given, which provide a reference for the specific application of Zr2Fe alloy.
机译:作为储氢材料,Zr2Fe合金具有吸氢速度快,tri回收效率高,抗粉化能力强,在空气中自燃困难等优点。 Zr2Fe合金在室温下的吸氢压力低于LaNi5合金。与ZrVFe合金相比,Zr2Fe的氢释放温度更低,因此该材料可以在较低的氢浓度下有效地回收氢同位素。不幸的是,应用中的Zr2Fe合金的主要问题是在高温下吸氢后容易发生歧化反应。目前,关于Zr2Fe合金歧化反应的产生及其影响因素的研究很少。本文系统地研究了温度和氢气压力对Zr2Fe合金歧化的影响。给出了减少合金歧化的具体活化条件和实验参数,为Zr2Fe合金的具体应用提供参考。

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