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MgAl alloy synthesis, characterization and its use in hydrogen storage

机译:MgAl合金的合成,表征及其在储氢中的应用

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The synthesis and characterization of intermetallic MgAl in two stoichiometric relations, Mg25Al and Mg50Al, and their possible use in hydrogen storage are presented. The intermetallic was prepared by thermal induction in an argon atmosphere. The obtained ingot was submitted to a thermal homogenization treatment at 573 K for 72 h. The particle size diminished with a high energy mill type spex, for which the milling time was 30 and 60 min. The material was characterized by scanning electron microscopy (SEM) and X-ray diffraction (XRD). Hydrogenation tests were carried out in a micro-reactor with varying pressure, temperature and reaction time. The material was analyzed with a thermogravi-metric system before and after the hydrogenation process. The results indicate that the intermetallic phase range with the mill process did not change with the times used. Because of this, smaller particle sizes of less than a micron were obtained just as scanning electronic microscopy analyses demonstrated. X-ray diffraction showed that phase change does not exist in the intermetallic structure after one hour of milling time. The first results obtained by the thermogravimetric system of the hydrogen quantity absorbed in this material report 3% weight approximately under the experimental conditions of mainly pressure and temperature.
机译:介绍了两种化学计量关系的金属间化合物MgAl的合成和表征,以及它们在储氢中的可能用途。金属间化合物通过在氩气氛中的热感应来制备。将获得的铸锭在573 K下进行热均质处理72小时。用高能粉碎机类型的spex减小了粒度,对于该粉碎机,粉碎时间为30分钟和60分钟。通过扫描电子显微镜(SEM)和X射线衍射(XRD)对材料进行表征。在微型反应器中以不同的压力,温度和反应时间进行氢化测试。在氢化过程之前和之后,使用热重分析系统对材料进行分析。结果表明,金属间相范围随研磨过程的变化没有随使用时间的变化而变化。因此,正如扫描电子显微镜分析所证明的那样,获得了小于微米的较小粒径。 X射线衍射表明,经过一小时的研磨时间,金属间结构中不存在相变。通过热重系统获得的该材料吸收的氢气量的最初结果表明,在主要是压力和温度的实验条件下,该重量约为3%。

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