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首页> 外文期刊>International Journal of Greenhouse Gas Control >Effect of humidity and flue gas impurities on CO2 permeation of a polymer of intrinsic microporosity for post-combustion capture
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Effect of humidity and flue gas impurities on CO2 permeation of a polymer of intrinsic microporosity for post-combustion capture

机译:湿度和烟道气杂质对固有微孔性聚合物燃烧后CO2渗透的影响

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摘要

The impact of humidity and flue gas impurities on PIM-I membrane performance for post combustion capture, i.e. CO2 permeability and CO2/N-2 selectivity, is investigated in this study. The presence of humidity in the feed stream induces a decrease in the permeability coefficients of both CO2 and N-2, from 7010 Barrer (dry state) to 4135 Barrer (%RH=50%) and 360 Barrer (dry state) to 250 Barrer (%RH=50%) respectively. PIM-1 shows also a high water permeability (58800 Barrer) which increases with the relative humidity of the feed. The interaction with flue gas contaminants (NOx, SOx, Water) leads to a dramatic decrease of the membrane performance even after short exposure and FTIR analysis confirmed modifications of the chemical structure of PIM-1 caused by the acid environment. These results indicate that test with flue gases have to be considered for all novel materials proposed for carbon capture applications since the decrease in membrane permeability in presence of water and other impurities has to be taken into account during the design of the separation process. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项研究中,研究了湿度和烟道气杂质对PIM-1膜性能的影响,即燃烧后捕集,即CO2渗透性和CO2 / N-2选择性。进料流中水分的存在会导致CO2和N-2的渗透系数降低,从7010 Barrer(干燥状态)降低到4135 Barrer(%RH = 50%),从360 Barrer(干燥状态)降低到250 Barrer (%RH = 50%)。 PIM-1还显示出较高的水渗透性(58800 Barrer),随饲料的相对湿度增加。即使在短时间暴露后,与烟气污染物(NOx,SOx,水)的相互作用也会导致膜性能急剧下降,并且FTIR分析证实了由酸性环境引起的PIM-1化学结构的改变。这些结果表明,对于所有建议用于碳捕集的新型材料,都必须考虑使用烟道气进行测试,因为在分离过程的设计中必须考虑到在存在水和其他杂质的情况下膜渗透性的降低。 (C)2016 Elsevier Ltd.保留所有权利。

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