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Effect of heat transfer enhancement on the performance of metal hydride based hydrogen compressor

机译:传热增强对金属氢化物基氢压缩机性能的影响

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A single stage metal hydride based hydrogen compressor has been developed using La0.8Ce0.2Ni5 hydride. The performance of the hydrogen compressor was evaluated in three different configurations to determine the effect of heat transfer augmentation. Two different types of metal hydride pellets were developed. Graphite flakes were mixed with La0.8Ce0.2Ni5 hydride for the first type of pellets. While in the second type, an augmentation structure made with copper wire mesh was embedded with the mixture of La0.8Ce0.2Ni5 hydride and graphite flakes. All the three types of La0.8Ce0.2Ni5 hydride beds namely, with loose MH powder (LMHP), pellets of MH powder and graphite fibres (PMHGF), and pellets of MH, graphite fibres with embedded copper wire mesh structure (PMHGFCu) were tested for a wide range of pressure and temperature conditions and their performances were compared. As expected, the heat transfer enhancement of La0.8Ce0.2Ni5 hydride bed resulted in enhancement of kinetics of hydrogenation/dehydrogenation and performance of hydrogen compressor. The maximum pressure ratio, maximum cycle efficiency, minimum time to reach saturation stage during absorption in cases of LMHP/PMHGF/PMHGFCu were 4.18/5.04/5.2, 5.1%/5.94%/6.07%, 400 s/250 s/220 s respectively. The highest increase in compression ratio and efficiency in case of pellets bed compared to those for powder bed were 76.51% and 29.3% respectively. Copyright (C) 2016, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:已经使用La0.8Ce0.2Ni5氢化物开发了基于金属氢化物的单级氢压缩机。以三种不同的配置评估了氢气压缩机的性能,以确定传热增强的效果。开发了两种不同类型的金属氢化物球团。将石墨薄片与La0.8Ce0.2Ni5氢化物混合以形成第一类球团。在第二种类型中,用La0.8Ce0.2Ni5氢化物和石墨薄片的混合物嵌入由铜丝网制成的增强结构。三种类型的La0.8Ce0.2Ni5氢化床,即带有散装的MH粉(LMHP),MH粉和石墨纤维的颗粒(PMHGF),以及MH粒,具有嵌入式铜丝网结构的石墨纤维(PMHGFCu),在各种压力和温度条件下进行了测试,并比较了它们的性能。不出所料,La0.8Ce0.2Ni5氢化床的传热增强导致加氢/脱氢动力学和氢气压缩机性能的增强。 LMHP / PMHGF / PMHGFCu的最大压力比,最大循环效率,吸收过程中达到饱和阶段的最短时间分别为4.18 / 5.04 / 5.2、5.1%/ 5.94%/ 6.07%,400 s / 250 s / 220 s 。与粉末床相比,颗粒床的压缩率和效率的最高增加分别为76.51%和29.3%。 Hydrogen Energy Publications,LLC(C)2016版权所有。由Elsevier Ltd.出版。保留所有权利。

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