Effect of Ti additive and preparation procedure on the temperature and decomposition kinetics of the MgH2 phase in the synthesized mechanicals alloys

O. Ershova, Valentin Dobrovolsky, Y. Solonin
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Abstract

The mechanical alloy Mg + 10 wt.% Ti and two mechanical alloys MgH2 + 10 wt.% Ti were synthesized by a reactive mechanical alloying (RMA) method, but in different ways. The influence of doping and the preparation procedure of mechanical alloys (MAs) on thehydrogen sorption properties, temperature and decomposition kinetics of their MgH2 phase was investigated by isobaric thermodesorption spectroscopy at a constant hydrogen pressure of 0.1 MPa. The desorption kinetics of the milled MgH2 + 10 wt.% Ti are faster than in the case of the ball milled Mg + 10 wt.% Ti. It was found that the manner of obtaining a mechanical alloys by reactive milling of MgH2 +10 wt. % Ti powder mixture rather than Mg +10 wt. % Ti powder mixture  to improve the kinetic characteristics. The role of Ti as an alloying element in improving the hydrogen desorption kinetics of МAs obtained by various preparation procedures was studied. The stabilizing effect of Ti on the nanocrystalline structure and growth of the crystallites (grains) of the MgH2 phase during the cycling was also evaluated. It has been established the practical absence of the influence of Ti additive and the manner of obtaining MAs on the its thermodynamic stability.
Ti添加剂及制备工艺对合成机械合金中MgH2相温度及分解动力学的影响
采用反应机械合金化(RMA)方法合成了Mg + 10wt .% Ti机械合金和MgH2 + 10wt .% Ti机械合金,但方法不同。采用恒氢压力为0.1 MPa的等压热脱附光谱法研究了机械合金(MAs)的掺杂和制备工艺对MgH2相吸氢性能、温度和分解动力学的影响。MgH2 + 10wt .% Ti的球磨脱附动力学比Mg + 10wt .% Ti的球磨脱附动力学快。结果表明,反应铣削MgH2 + 10wt . % Ti粉混合物而非Mg + 10wt . % Ti粉混合物可改善机械合金的动力学特性。研究了Ti作为合金元素对不同制备工艺制备的МAs脱氢动力学的影响。在循环过程中,Ti对MgH2相纳米晶结构和晶粒生长的稳定作用也得到了评价。结果表明,在实际应用中,Ti添加剂和MAs的获取方式对其热力学稳定性没有影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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