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首页> 外文期刊>Russian Journal of Physical Chemistry >Purity of MgH_2 Improved by the Process of Pre-milling Assisted Hydriding of Mg Powder under a Hydrogen Pressure of 0.5 MPa
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Purity of MgH_2 Improved by the Process of Pre-milling Assisted Hydriding of Mg Powder under a Hydrogen Pressure of 0.5 MPa

机译:通过在0.5MPa的氢气压力下预研磨辅助水合的方法改善MGH_2的纯度改善了0.5MPa的氢气压力

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摘要

Magnesium hydride (MgH_2) is a very promising hydrogen storage material due to its high hydrogen storage capacity (7.6 wt %) and low cost. It has been paid increasing attention as it may be employed in supplying hydrogen on-board. However, the production of MgH_2 in high purity is still a challenging issue because the process requires high pressure and prolonged time. In this paper, high purity of MgH_2 was achieved by the process of pre-milling assisted hydriding of Mg powder under a hydrogen pressure as low as 0.5 MPa. The effects of hydrogen pressure as well as hydriding and mechanical milling parameters, such as ball-to-powder ratio and milling time were investigated systematically. The relationship between the morphologies and the purities of products were discussed in detail. Our results revealed that MgH_2 purity of 94.19 wt % can be achieved by hydriding with heating up to 853 K followed by cooling down to 593 K and keeping this temperature for 5 h after the milling pretreatment of Mg powder, at 400 rpm milling speed, 20 : 1 ball-to-powder ratio and 40 min milling time. SEM observation of the morphology of products indicated the achievement of the purity of MgH2 under a hydrogen pressure as low as 0.5 MPa was related to the structural defects and activation of Mg powders caused by the mechanical milling.
机译:氢化镁(MGH_2)是由于其高储氢容量(7.6wt%)和低成本而具有非常有前途的储氢材料。由于它可以在供应氢气供应氢气中获得越来越长的注意。然而,高纯度的MGH_2的生产仍然是一个具有挑战性的问题,因为该过程需要高压和长时间的时间。在本文中,通过在氢气压力下的施用辅助水合的方法低至0.5MPa,通过将Mg粉末的辅助水合剂的方法进行高纯度。系统地研究了氢气压力和水合和机械研磨参数的影响,例如球粉比和铣削时间。详细讨论了形态与产品纯度之间的关系。我们的研究结果表明,94.19wt%的MGH_2纯度可以通过加热高达853 k,然后冷却至593k并在铣削预处理Mg粉末后保持该温度5小时,以400rpm铣削速度,20 :1球粉比和40分钟铣削时间。 SEM观察产物的形态表明,在氢气压力下,低至0.5MPa的氢气纯度与由机械研磨引起的Mg粉末的结构缺陷和激活有关。

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