首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Hydrogen absorption/desorption performance of Mg-Al alloys synthesized by reactive mechanical milling and hydrogen pulverization
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Hydrogen absorption/desorption performance of Mg-Al alloys synthesized by reactive mechanical milling and hydrogen pulverization

机译:反应性机械研磨和氢粉碎合成的Mg-Al合金的吸氢/脱氢性能

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This paper presents a method to fabricate nanoscale alloy powders for hydrogen storage using reactive mechanical milling combined with hydrogen pulverization. The method reduced particle agglomeration and the problem of oxidation associated with reactive mechanical milling. Mg and Mg-10Al powders were first ball-milled and then pulverized by hydrogenation at 350 degrees C for 5 cycles. Hydrogen absorption measurements were carried out by pressure-composition-temperature and thermogravimetric analyses. The microstructure of the powders was characterized by scanning electron microscopy, X-ray diffraction, and transmission electron microscopy. After pulverization by hydrogenation, the surface area of pure Mg increased greatly from 0.61 m(2)/g (as-milled) to 6.16 m(2)/g and the crystalline size decreased. In addition, the amount of MgO decreased when the milled Mg alloys were pulverized. The pulverized Mg exhibited a higher hydrogen storage capacity (3.36 wt%) than the ball-milled Mg (0.14 wt%) at 350 degrees C. The addition of Al decreased the dehydrogenation temperature in comparison to pure Mg. (C) 2016 Published by Elsevier B.V.
机译:本文提出了一种使用反应性机械研磨结合氢粉碎来制造储氢纳米级合金粉末的方法。该方法减少了颗粒团聚和与反应性机械研磨有关的氧化问题。首先将Mg和Mg-10Al粉末进行球磨,然后通过在350摄氏度的温度下氢化5个循环进行粉碎。氢吸收的测量通过压力组成温度和热重分析进行。通过扫描电子显微镜,X射线衍射和透射电子显微镜表征粉末的微观结构。通过氢化粉碎后,纯Mg的表面积从0.61 m(2)/ g(已研磨)大大增加到6.16 m(2)/ g,并且晶体尺寸减小。另外,当研磨的Mg合金被粉碎时,MgO的量减少。相比于球磨Mg(0.14 wt%),在350摄氏度时,粉碎的Mg具有更高的储氢容量(3.36 wt%)。与纯Mg相比,Al的加入降低了脱氢温度。 (C)2016由Elsevier B.V.发布

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