首页> 外文期刊>Journal of Korean Institute of Metal and Materials >Hydrogen Absorption and Release Properties of MgH2, Mg2Ni, and Ni-Added Mg via Reactive Mechanical Grinding
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Hydrogen Absorption and Release Properties of MgH2, Mg2Ni, and Ni-Added Mg via Reactive Mechanical Grinding

机译:通过反应机械研磨的MGH2,Mg2Ni和Ni加入Mg的氢吸收和释放性能

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In this work, MgH2, Mg2Ni, and Ni were added to Mg in order to improve the hydrogen-storage properties of Mg. A 84 wt% Mg + 10 wt% MgH2 + 5 wt% Mg2Ni + 1 wt% Ni sample (designated the Mg-based sample) was prepared. by milling under a hydrogen atmosphere in a planetary ball mill for 5 h. The hydrogen absorption and release properties of the prepared sample were investigated and compared with those of a 94 wt% MgH2 + 5 wt% Mg2Ni + 1 wt% Ni sample (the MgH2-based sample). The Mg-based sample had larger quantities of hydrogen absorbed and released for 60 min than the MgH2-based sample. The Mg-based sample had an effective hydrogen-storage capacity (the quantity of hydrogen absorbed for 60 min) of near 5.7 wt%. At n = 2, the Mg-based sample absorbed 5.18 wt% for 2 min, 5.57 wt% for 10 min, and 5.67 wt% for 60 min at 648 K. At n = 1, the Mg-based sample released 0.083 wt% for 2 min, 5.13 wt% for 10 min, and 5.49 wt% for 60 min at 648 K. The addition of MgH2, Mg2Ni, and Ni to Mg had stronger effects than the addition of Mg2Ni and Ni to MgH2. It is believed that the effects of the reactive mechanical grinding (reducing the Mg particle size, making clean surfaces, and creating defects) are stronger in the Mg-based sample than in the MgH2-based sample.
机译:在该工作中,将MgH2,Mg2Ni和Ni加入Mg,以改善Mg的氢储存性能。制备84wt%Mg + 10wt%MgH2 + 5wt%Mg2Ni + 1wt%Ni样品(指定基于Mg的样品)。通过在行星球磨机的氢气氛下研磨5小时。研究制备样品的氢吸收和释放性能,并与94wt%MgH2 + 5wt%Mg2Ni + 1wt%Ni样品(基于MgH2样品)进行比较。基于Mg的样品具有更大量的氢吸收并释放比MGH2基样品释放60分钟。基于Mg的样品具有有效的储氢容量(吸收氢气量60分钟),近5.7wt%。在n = 2时,基于Mg的样品吸收5.18wt%2分钟,5.57wt%10分钟,5.67wt%,60分钟,60分钟,在648k时,在n = 1时,基于Mg的样品释放0.083wt% 2分钟,5.13wt%10分钟,60分钟为5.49wt%,60分钟,60分钟,加入MgH2,Mg2Ni和Ni至Mg的效果比添加Mg2Ni和Ni至MgH2更强。据信,活性机械研磨的影响(减少Mg粒度,使清洁表面和产生缺陷)在基于Mg基的样品中较强,而不是在基于MGH2的样品中。

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