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New dehydrogenation pathway of LiBH4 + MgH2 mixtures enabled by nanoscale LiBH4

机译:纳米LiBH4促成LiBH4 + MgH2混合物的新脱氢途径

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This study reports a new dehydrogenation pathway for the LiBH4 + MgH2 system. We find that in the presence of nanoscale LiBH4, the first dehydriding reaction is the decomposition of LiBH4 and the product from the LiBH4 decomposition in turn causes the hydrogen release from MgH2. The new reaction pathway has resulted in a large amount of hydrogen release from MgH2 below 150 degrees C. The discovery made in this study confirms the ab initio density functional theory calculations reported in the literature and a previous study showing that the new reaction pathway observed in this study can be achieved during high-energy ball milling of MgH2 at ambient temperature in conjunction with aerosol spraying of LiBH4 solution. The establishment of this new reaction pathway opens the door to make LiBH4 + MgH2 as a viable system for reversible hydrogen storage applications near 150 degrees C in the future. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:这项研究报告了LiBH4 + MgH2系统的新的脱氢途径。我们发现在纳米级LiBH4的存在下,第一个脱水反应是LiBH4的分解,而LiBH4分解的产物又导致MgH2释放出氢。新的反应路径导致低于150摄氏度的MgH2释放出大量的氢。这项研究的发现证实了文献中从头算密度函数理论的计算结果以及先前的研究表明,在MgH2中观察到了新的反应路径。这项研究可以在环境温度下对MgH2进行高能球磨并与LiBH4溶液进行气雾喷涂过程中完成。这种新的反应路径的建立为将来将LiBH4 + MgH2用作可逆氢气存储应用(接近150摄氏度)的可行系统打开了大门。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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