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Nitrogen rejection from methane using dual-reflux pressure swing adsorption with a kinetically-selective adsorbent

机译:使用双回流压力摆动吸附与动力学 - 选择性吸附剂的氮气排斥

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摘要

Dual-reflux pressure swing adsorption (DR PSA) processes using a kinetically nitrogen selective molecular sieve carbon, MSC-3K 172, were investigated for the removal of nitrogen from a gas mixture consisting of 75 mol% CH4 + 25 mol% N-2. The four DR PSA configurations (PL-A, PH-A, PL-B and PH-B) were experimentally demonstrated and compared in terms of their nitrogen rejection and methane recovery performance. The experimental results indicated the PH-B configuration in general performed the best in terms of the methane product purity and recovery using the kinetic MSC-3K 172 adsorbent. A non-isothermal numerical model was constructed for the kinetic DR PSA process to simulate and optimise the performance of the PH-B configuration. Model predicted gas loadings on the adsorbent indicated that selectively removing nitrogen from methane was feasible when a feed step time close to the characteristic adsorption time of nitrogen was selected. The effective usage of the adsorption bed in the PH-B configuration was also numerically studied via the capacity ratio C, with the feed step time and light reflux flow as key operational parameters, at fixed heavy product-to-feed ratio, bed pressure ratio and feed location. The numerical model for the PH-B configuration was also employed to study the effect of pressure in the purge step beyond those conditions accessible in the experiment. The simulation results revealed that the PH-B configuration could achieve a separation performance of 90 mol% CH4 in the light product with 90% CH4 recovery when the pressure in the light purge column was lower than 40 kPa while the adsorption pressure was maintained at 500 kPa. This result opens new opportunities for efficiently upgrading sub-quality natural gas reserves.
机译:研究了使用动力学氮选择性分子筛碳,MSC-3K172的双回流压力摆动(DR PSA)方法,用于从由75mol%CH 4 + 25mol%N-2组成的气体混合物中除去氮。通过氮排斥和甲烷回收性能进行实验和比较四种PSA配置(PL-A,PH-A,PL-B和PH-B)。实验结果表明,通过使用动力学MSC-3K 172吸附剂的甲烷产品纯度和恢复,通常在甲烷产品纯度和回收方面表现最佳。为动力学DRSA工艺构建了非等温数值模型,以模拟和优化PH-B配置的性能。 Model predicted gas loadings on the adsorbent indicated that selectively removing nitrogen from methane was feasible when a feed step time close to the characteristic adsorption time of nitrogen was selected.在pH-B构型中的吸附床的有效用途也通过容量比C进行了数值研究,进料步骤时间和光回流作为关键操作参数,以固定的重量的产品 - 进给比,床压比和饲料位置。还采用了PH-B构型的数值模型来研究在实验中可获得的净化步骤中的压力效果。模拟结果表明,当光吹扫塔中的压力低于40kPa时,PH-B构型可以在光产物中达到90mol%CH4在光产物中的分离性能,而在500℃下保持吸附压力。 KPA。这一结果开启了有效升级亚质量天然气储量的新机会。

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  • 来源
    《Chemical engineering journal》 |2019年第2019期|共9页
  • 作者单位

    Univ Western Australia Fluid Sci &

    Resources Div ARC Training Ctr LNG Futures 35 Stirling Highway Perth WA 6009 Australia;

    Univ Western Australia Fluid Sci &

    Resources Div ARC Training Ctr LNG Futures 35 Stirling Highway Perth WA 6009 Australia;

    Univ Western Australia Fluid Sci &

    Resources Div ARC Training Ctr LNG Futures 35 Stirling Highway Perth WA 6009 Australia;

    Univ Western Australia Fluid Sci &

    Resources Div ARC Training Ctr LNG Futures 35 Stirling Highway Perth WA 6009 Australia;

    Univ Western Australia Fluid Sci &

    Resources Div ARC Training Ctr LNG Futures 35 Stirling Highway Perth WA 6009 Australia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    Nitrogen rejection; Sub-quality natural gas; DR PSA; Carbon molecular sieve; Methane upgrading;

    机译:氮气排斥;亚品质的天然气;PSA博士;碳分子筛;甲烷升级;

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