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Hydrogenation Properties Of Mg-al Alloys

机译:镁合金的加氢性能

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In this paper the properties of Mg-Al alloys in relation to hydrogen storage are reviewed. The main topics of this paper are materials preparation, hydrogen capacity, thermodynamics of hydride formation, and the kinetics of hydride formation and decomposition. Hydrogenation of Mg-Al leads to disproportionation with the formation of magnesium hydride and metallic aluminum as the final product. Experimental evidence renders this process reversible. It is observed that the enthalpy of hydride formation of magnesium is lowered upon alloying with Al due to a slightly endothermic disproportionation reaction. Further, it is found that the kinetics of hydrogenation, as well dehydrogenation, may be significantly improved by alloying compared to pure Mg. The expense of these improvements of the hydrogenation/dehydrogenation properties is a lower gravimetric hydrogen density in the hydrogenated product.
机译:本文综述了Mg-Al合金的储氢性能。本文的主要主题是材料制备,氢容量,氢化物形成的热力学以及氢化物形成和分解的动力学。 Mg-Al的氢化导致歧化,最终形成氢化镁和金属铝。实验证据表明该过程是可逆的。观察到,由于与铝的吸热歧化反应略微,镁的氢化物形成的焓降低。此外,发现与纯Mg相比,通过合金化可以显着改善氢化以及脱氢的动力学。氢化/脱氢性能的这些改进的代价是氢化产物中较低的重量氢密度。

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