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Study of transport of pure and mixed CO2/N-2 cases through polymeric membranes

机译:纯净和混合CO2 / N-2病例通过聚合物膜转运的研究

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The permeations of pure CO2 and N-2 gases and a binary gas mixture of CO2/N-2 (20/80) through poly(dimethylsiloxane) (PDMS) membrane were carried out by the new permeation apparatus. The permeation and separation behaviors were characterized in terms of transport parameters, namely, permeability, diffusion, and solubility coefficients which were precisely determined by the continuous-flow technique. In the permeation of the pure gases, feed pressure and temperature affected the solubility coefficients of CO2 and N-2 in opposite ways, respectively; increasing feed pressure positively affects CO2 solubility coefficient and negatively affects N-2 solubility coefficient, whereas increasing temperature favors only N-2 sorption. In the permeation of the mixed gas, mass transport was observed to be affected mainly by the coupling in sorption, and the coupling was analyzed by a newly defined parameter permeation ratio. The coupling effects have been investigated on the permeation and separation behaviors in the permeation of the mixed gas varying temperature and feed pressure. (C) 2000 John Wiley & Sons, Inc. [References: 14]
机译:通过新的渗透装置进行了纯CO2和N-2气体的渗透以及CO2 / N-2(20/80)的二元气体混合物通过聚(二甲基硅氧烷)(PDMS)膜的渗透。渗透和分离行为通过传输参数来表征,即通过连续流技术精确确定的渗透率,扩散和溶解度系数。在纯净气体的渗透过程中,进料压力和温度分别以相反的方式影响CO2和N-2的溶解度系数。进料压力的增加对CO2溶解度系数有正面影响,而对N-2溶解度系数有负面影响,而温度升高仅有利于N-2吸附。在混合气体的渗透中,观察到传质主要受吸附耦合的影响,并且通过新定义的参数渗透率分析了耦合。研究了在温度和进料压力变化的情况下,混合气体在渗透和分离行为方面的耦合效应。 (C)2000 John Wiley&Sons,Inc. [参考:14]

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