首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Hydrogen storage alloy of Mg_2NiH_4 hydride produced by hydriding combustion synthesis from powder of mixture metal
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Hydrogen storage alloy of Mg_2NiH_4 hydride produced by hydriding combustion synthesis from powder of mixture metal

机译:Mg_2NiH_4氢化物的储氢合金,由混合金属粉末氢化燃烧合成而得

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As previous results, we reported that hydrogen storage alloy of Mg_2NiH_4 was produced by process of hydriding combustion synthesis in laboratory scale and regardless of the compressive pressure of the compacts from 140 MPa, 280 MPa, 550 MPa to 1.10 GPa. In present work, at first, we study the effect of the hydrogen atmosphere on the synthesis of Mg2NiH4 by this process. It is confirmed that the hydrogen atmosphere in the heating period plays an important role to the synthesis of Mg_2NiH_4 in the cooling period due to the expansion of the compact in the heating period resulted from the hydriding reaction of Mg+H_2->MgH_2. Then, we use powder of the mixture metal of magnesium and nickel as raw material directly and use lower pressures of hydrogen from 2.0 MPa, 1.0 MPa and to 0.5 MPa to produce Mg2NiH4. It is found that pure Mg_2NiH_4 from X-ray diffraction (XRD) analysis results can be produced at only 1.0 MPa hydrogen atmosphere when powder of mixture metal was used, which is much lower than that of 4.0 MPa when compact of mixture metal was used.
机译:作为以前的结果,我们报道了在实验室规模下通过氢化燃烧合成过程生产Mg_2NiH_4储氢合金,无论压块的压缩压力从140 MPa,280 MPa,550 MPa到1.10 GPa都是如此。在目前的工作中,首先,我们研究了氢气氛对该方法合成Mg2NiH4的影响。可以确认,由于Mg + H_2-> MgH_2的氢化反应导致的加热期间的成形体膨胀,因此加热期间的氢气氛对冷却期间的Mg_2NiH_4的合成起重要作用。然后,我们直接使用镁和镍的混合金属粉末作为原料,并使用从2.0 MPa,1.0 MPa到0.5 MPa的较低氢气压力生产Mg2NiH4。通过X射线衍射(XRD)分析结果发现,使用混合金属粉末时,仅在1.0 MPa的氢气氛下可以生成纯Mg_2NiH_4,远低于使用混合金属的成形体时的4.0 MPa。

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