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首页> 外文期刊>International journal of hydrogen energy >The consequence of silicon additive in isothermal decomposition of hydrides LiH, NaH, CaH_2 and TiH_2
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The consequence of silicon additive in isothermal decomposition of hydrides LiH, NaH, CaH_2 and TiH_2

机译:硅添加剂在氢化物,NaH,Cah_2和TiH_2的等温分解中的结果

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The study focuses on hydrogen desorption characteristics of lithium hydride (LiH), sodium hydride (NaH), calcium hydride (CaH2), and titanium hydride (TiH2) which permits a possible path regarding challenging goals of US DOE standards. This research reported the consequences of enrichment in hydrogen uptake 7.02 wt% in lithium hydride, 7.71 wt% in sodium hydride, 5.91 wt% in calcium hydride, and 5.00 wt% in titanium hydride using silicon as an additive when evaluated with the help of volumetric technique. The ball milling process with silicon additive for LiH, NaH, CaH2, and TiH2 shows depletion in dehydrogenation temperatures 523 K, 453 K, 488 K, and 463 K respectively. Similarly, the reduction in the activation energies reported due to ball milling process with silicon additive are 37 kJ/mol for lithium hydride, 42 kJ/mol for sodium hydride, 56 kJ/mol for calcium hydride and 45 kJ/mol for titanium hydride compared with crystalline powder samples of the respective materials. The outcome of Fourier-transform infrared spectroscopy of milled hydride samples after decomposition intimate rapid decrease in transmittance intensities due to hydrogen release because of the destabilization effect caused by silicon additive. The porosity and sponginess in high-resolution Transmission electron microscopy images after dehydrogenation reveals the hydrogen desorption from the sample materials. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:该研究侧重于氢化锂(LIH),氢化钠(NaH),氢化钙(CaH 2)和氢化钛(TiH2)的氢解吸特性,这允许有关美国DOE标准的具有挑战性的目标的可能路径。本研究报告富含氢化锂氢气浓度7.02wt%的富集,7.71重量%的氢化钠,5.91重量%的氢化钙,5.00wt%,当在容积的帮助下评估时,使用硅作为添加剂为5.00wt%的氢化物。技术。具有LIH,NaH,CaH 2和TiH2的硅添​​加剂的球铣过程显示脱氢温度523k,453k,488k和463k中的耗尽。类似地,由于具有硅添加剂的球磨过程报告的激活能量的减少为氢化锂的37kJ / mol,氢化钠42kJ / mol,氢化钙的56kJ / mol,氢化钛45kJ / mol具有各种材料的结晶粉末样品。由于硅添加剂引起的稳定效应,在分解后磨削氢化物样品的傅立叶变换红外光谱的结果在分解后促进透射率强度。脱氢后高分辨率透射电子显微镜图像中的孔隙率和海绵揭示了样品材料的氢解吸。 (c)2020氢能量出版物LLC。 elsevier有限公司出版。保留所有权利。

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