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Mechanochemical Synthesis of Nanocrystalline Mg-based Hydrogen Storage Composites in Hydrogen Alloying Mills

机译:氢合金轧机中纳米晶镁基储氢复合材料的机械化学合成

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Hydrogen storage in solid hydrides is the most attractive method of on-board hydrogen storage in fuel cell for cars. Mg metal exhibits a high-storage capacity by weight and has been considered a group of potentially attractive candidates for solid-state hydrogen storage. In this study, mechanochemical synthesis of nanocrystalline Mg-based hydrogen storage composites from various starting materials in specialized hydrogen ball mills has been achieved. The reactive synthesis process and the hydrogen desorption behaviors of the composite hydrides were investigated by X-ray diffraction (XRD), thermogravimetric and differential scanning calorimetry (TG-DSC). The results show that nano-sized MgH_2 and Mg(AlH_4)_2 could be directly synthesized by pure Mg and pretreated Al powder, as well as Mg-Li-Al alloy powder. Alloying element Li could remarkably promote the synthesis of magnesium alanate, the product composite hydrides releasing 6.2wt% H_2 through multi-step decompositions, of which the starting endothermic peaks are as low as 65°C.
机译:固体氢化物中的氢存储是汽车燃料电池中车载氢存储的最有吸引力的方法。镁金属按重量显示出高存储容量,并被认为是固态氢存储的一组潜在有吸引力的候选材料。在这项研究中,已经实现了在专门的氢气球磨机中由各种起始原料进行机械化学合成纳米晶镁基储氢复合材料的过程。通过X射线衍射(XRD),热重分析和差示扫描量热法(TG-DSC)研究了复合氢化物的反应合成过程和氢的脱附行为。结果表明,纯Mg和预处理的Al粉以及Mg-Li-Al合金粉可以直接合成纳米级的MgH_2和Mg(AlH_4)_2。合金元素Li可以显着促进铝酸镁的合成,产物复合氢化物通过多步分解释放出6.2wt%的H_2,其起始吸热峰低至65°C。

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