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Forced unsteady state operation to improve H_2 permeability through Pd-Ag membrane during start-up

机译:强制非稳态运行以提高启动过程中通过Pd-Ag膜的H_2渗透性

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摘要

Hydrogen separation from nitrogen containing gas mixture using Pd-Ag membrane shows a time lag and low hydrogen recovery during start-up period. In this study, forced unsteady state operation using a composition modulation of the feed gas was employed as a new operation method to increase the hydrogen recovery and to shorten the time lag. In this work, the performance of Pd75-Ag25 membrane during the separation of hydrogen from H_2/N_2 mixture under forced unsteady state operation at 623 K was investigated. During natural start-up without forced operation, the hydrogen recovery results in 35% and 14% for H_2/N_2 feed gas compositions of 70%/30% and 50%/50%, respectively, while the time lag in the natural operation results in 195 and 147 min for H_2/N_2 feed gas compositions of 70%/ 30% and 50%/50%, respectively. The experimental results show that forced unsteady state operation affects considerably on hydrogen recovery from H_2/N_2 mixture and the time lag during start-up. The maximum hydrogen recovery in the forced unsteady state operation is 60%, obtained at switching time 5 min and H_2/N_2 feed gas composition of 70%/30%, while for H_2/N_2 feed gas composition of 50%/50% the hydrogen recovery is not significantly influenced by switching time. The time lag indicates a profound decay trend monotonically by decreasing the switching time for both H_2/N_2 feed gas compositions.
机译:使用Pd-Ag膜从含氮气体混合物中分离氢气显示出时间延迟,并且在启动期间氢气回收率低。在这项研究中,采用采用原料气成分调制的强制非稳态操作作为一种新的操作方法,以提高氢气的回收率并缩短时滞。在这项工作中,研究了Pd75-Ag25膜在623 K强制非稳态操作下从H_2 / N_2混合物中分离氢时的性能。在没有强制运行的自然启动过程中,对于氢气含量为70%/ 30%和50%/ 50%的H_2 / N_2原料气,氢气回收率分别为35%和14%,而自然运行会产生时间滞后对于195和147分钟的H_2 / N_2进料气组成分别为70%/ 30%和50%/ 50%。实验结果表明,强迫非稳态操作对从H_2 / N_2混合物中回收氢和启动过程中的时间滞后有很大影响。在强制非稳态操作中,在切换时间5分钟和H_2 / N_2进料气组成为70%/ 30%时获得的最大氢气回收率为60%,而对于H_2 / N_2进料气组成为50%/ 50%的情况下,氢气恢复时间不受切换时间的影响很大。通过减少两种H_2 / N_2原料气成分的转换时间,时间滞后表明单调的衰减趋势很大。

著录项

  • 来源
    《International journal of hydrogen energy》 |2011年第23期|p.15372-15381|共10页
  • 作者单位

    Department of Chemical Engineering, Faculty of Industrial Technology, Institut Teknologi Bandung, Jl Ganesha 10, Bandung 40132, Indonesia;

    Department of Chemical Engineering, Faculty of Industrial Technology, Institut Teknologi Bandung, Jl Ganesha 10, Bandung 40132, Indonesia;

    Department of Chemical Engineering, Faculty of Industrial Technology, Institut Teknologi Bandung, Jl Ganesha 10, Bandung 40132, Indonesia;

    Department of Chemical Engineering, Faculty of Industrial Technology, Institut Teknologi Bandung, Jl Ganesha 10, Bandung 40132, Indonesia;

    Department of Precision Science & Technology and Applied Physics, Suita Campus, Osaka University, 2-1, Yamadaoka, Suita City, 565-0871 Osaka, Japan;

    Department of Precision Science & Technology and Applied Physics, Suita Campus, Osaka University, 2-1, Yamadaoka, Suita City, 565-0871 Osaka, Japan;

    Department of Chemical Engineering, Faculty of Industrial Technology, Institut Teknologi Bandung, Jl Ganesha 10, Bandung 40132, Indonesia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    dynamic operation; hydrogen recovery; membrane reactor; switching time; time lag;

    机译:动态操作氢回收膜反应器切换时间;时差;

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