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A Novel Time Lag Method for the Analysis of Mixed Gas Diffusion in Polymeric Membranes by On-Line Mass Spectrometry: Pressure Dependence of Transport Parameters

机译:通过在线质谱法分析聚合物膜中混合气体扩散的新型滞后方法:输送参数的压力依赖性

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摘要

This paper presents a novel method for transient and steady state mixed gas permeation measurements, using a quadrupole residual gas analyser for the on-line determination of the permeate composition. The on-line analysis provides sufficiently quick response times to follow even fast transient phenomena, enabling the unique determination of the diffusion coefficient of the individual gases in a gas mixture. Following earlier work, the method is further optimised for higher gas pressures, using a thin film composite and a thick dense styrene-butadiene-styrene (SBS) block copolymer membrane. Finally, the method is used to calculate the CO2/CH4 mixed gas diffusion coefficients of the spirobisfluorene-based polymer of intrinsic microporosity, PIM-SBF-1. It is shown that the modest pressure dependence of the PIM-SBF-1 permeability can be ascribed to a much stronger pressure dependence of the diffusion coefficient, which partially compensates the decreasing solubility of CO2 with increasing pressure, typical for the strong sorption behaviour in PIMs. The characteristics of the instrument are discussed and suggestions are given for even more versatile measurements under stepwise increasing pressure conditions. This is the first report on mixed gas diffusion coefficients at different pressures in a polymer of intrinsic microporosity.
机译:本文介绍了一种新的瞬态和稳态混合气体渗透测量方法,使用四极血对残留气体分析仪进行渗透组合物的在线测定。在线分析提供了足够快的响应时间来遵循即使是快速瞬态现象,也能够独特地确定气体混合物中各个气体的扩散系数。在早些时候的工作之后,使用薄膜复合材料和厚的苯乙烯 - 丁二烯 - 苯乙烯(SBS)嵌段共聚物膜进一步优化该方法以更高的气体压力。最后,该方法用于计算本征微孔,PIM-SBF-1的螺氟硼烯聚合物的CO2 / CH4混合气体扩散系数。结果表明,PIM-SBF-1渗透率的适度依赖性可以归因于扩散系数的更强的压力依赖性,这部分补偿了CO2的降低溶解度随着PIMS中的强烈吸附行为的典型典型。讨论了仪器的特性,并且在逐步增加的压力条件下给出了甚至更通用的仪表的建议。这是本质微孔聚合物中不同压力下的混合气体扩散系数的第一报告。

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