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Study the effect of SrFe12O19 on MgH2/LiAlH4 composite for solid-state hydrogen storage

机译:研究SrFe12O19对MgH2 / LiAlH4复合固态储氢的影响

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The MgH2/LiAlH4 destabilised system was studied experimentally using the method of ball milling. The desorption/absorption performances and reaction mechanism of the 4MgH(2) + LiAlH4 composite system with SrFe12O19 additive have been investigated for the first time. Analysis of the temperature-programme-desorption showed that the 5 wt% SrFe12O19-doped 4MgH(2) + LiAlH4 composite started to release hydrogen at 80 degrees C and 260 degrees C for the first two desorption stages, which were reduced by 40 degrees C and 10 degrees C as compared to the undoped composite. The sorption kinetics of 5 wt% SrFe12O19-doped 4MgH(2) + LiAlH4 were also improved as compared to the undoped 4MgH(2) + LiAlH4. Activation energy calculation based on the Kissinger plot displayed that the apparent activation energy for the decomposition of MgH2-relevant had been reduced from 121 kJ/mol for the undoped composite to 104 kJ/mol for the composite with SrFe12O19. The X-ray diffraction results suggested that the new species of Al2Sr and Li2Fe3O4 that were formed in situ during the heating process were believed to play a catalytic role, thus responsible for the enhancement of the hydrogen storage properties of 4MgH(2) + LiAlH4 composite system with SrFe12O19. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:使用球磨方法对MgH2 / LiAlH4不稳定体系进行了实验研究。首次研究了具有SrFe12O19添加剂的4MgH(2)+ LiAlH4复合体系的解吸/吸收性能和反应机理。对程序升温脱附的分析表明,掺入5 wt%SrFe12O19的4MgH(2)+ LiAlH4复合材料在头两个脱附阶段分别在80摄氏度和260摄氏度下开始释放氢,而氢气的释放量降低了40摄氏度与未掺杂的复合材料相比,温度为10摄氏度。与未掺杂的4MgH(2)+ LiAlH4相比,掺SrFe12O19的5 wt%的4MgH(2)+ LiAlH4的吸附动​​力学也得到了改善。基于基辛格图的活化能计算表明,分解MgH2相关的表观活化能已从未掺杂复合材料的121 kJ / mol降低到SrFe12O19复合材料的104 kJ / mol。 X射线衍射结果表明,在加热过程中原位形成的新的Al2Sr和Li2Fe3O4被认为起催化作用,因此负责增强4MgH(2)+ LiAlH4复合材料的储氢性能SrFe12O19的系统。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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