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Improved hydrogen storage properties of combined Ca(BH4)(2) and LiBH4 system motivated by addition of LaMg3 assisted with ball milling in H-2

机译:在H-2中通过添加LaMg3辅助球磨来改善Ca(BH4)(2)和LiBH4组合系统的储氢性能

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摘要

A combined ca(BH4)(2)+LiBH4 system with improved hydrogen storage properties is obtained by the addition of a particulate LaMg3 alloy assisted with ball milling in a H-2 atmosphere. It is found that LaMg3 is mostly hydrogenated to symbiotic low crystalline MgH2 and amorphous La-containing hydride of fine particles after the milling, which are homogenously embedded in the Ca(BH4)(2)+LiBH4 matrix. The multi-hydride system shows significant improvements in both hydrogen storage thermodynamics and kinetics. Particularly, the system with LaMg3 addition in a molar ratio of 0.3 shows an overall superior hydrogen storage property. The main dehydrogenation starts from ca. 200 degrees C, which is 100 degrees C lower than the main dehydrogenation temperature of the pristine Ca(BH4)(2)+LiBH4 system. Rehydrogenation initiates at a low temperature of ca. 150 degrees C, and the system maintains 70% of its first hydrogen desorption capacity after 5 cycles. The mechanism of the improved hydrogen storage properties of the combined system is discussed. Copyright 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:通过在H-2气氛中添加球磨辅助的LaMg3颗粒合金,可以得到具有改善的储氢性能的组合ca(BH4)(2)+ LiBH4系统。发现研磨后,LaMg3大部分被氢化成共生的低结晶MgH2和无定形的含La微粒的氢化物,它们均匀地嵌入Ca(BH4)(2)+ LiBH4基质中。多元氢化物系统在储氢热力学和动力学方面均显示出显着改善。特别地,以0.3的摩尔比添加LaMg 3的体系显示出总体优异的储氢性能。主要的脱氢反应从ca开始。 200摄氏度,比原始Ca(BH4)(2)+ LiBH4系统的主要脱氢温度低100摄氏度。大约在低温下开始重新氢化。 150摄氏度,该系统在5个循环后仍保持70%的首次氢气脱附能力。讨论了组合系统改善储氢性能的机理。 Hydrogen Energy Publications,LLC版权所有2015。由Elsevier Ltd.出版。保留所有权利。

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