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Transport parameters of alcohol vapors through ion-exchange membranes

机译:酒精蒸气通过离子交换膜的传输参数

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According to the solution-diffusion model, the separation of vapors and liquid mixtures by nonporous membranes in sweeping gas pervaporation or vacuum pervaporation is due to the differences in the solubility and the diffusivity of the mixture components in the membrane material. In the case when ion-exchange membrane is used, the membrane ionic groups and counter-ions can play an important role in the mass transfer process. The permeation rate measurements which are based on the sweeping gas pervaporation concept were performed in order to determine the diffusivity of chosen aliphatic alcohol vapors (i.e. ethanol, i-propanol and i-butanol). The experiments were carried out using different sulfonic ion-exchange membranes: Nafion (perfluorinated polyethylene with pendant ether-linked side chains terminated with sulfonated groups), IonClad (irradiation grafted sulfonated styrene monomers onto polytetrafluoroethylene film) and PESS (membrane prepared by sulfonation of the interpenetrating polymer network system polyethylene-poly/styrene-co-divinylbenzene/) loaded with H~+, Li~+ or K~+ ions as counterions. NAFION and IonClad membranes have the same backbone (i.e. polytetrafluoroethylene). The ionic strength of sulfonic groups is identical for IonClad and PESS membranes whereas the NAFION membrane get a much greater ionic strength. The diffusivity of ethanol was greatly affected by the presence of water in the membrane. The diffusivity characteristics in the sulfonated ion-exchange membranes indicated strong interactions between water and alcohol molecules. The increase of alcohols polarity increases their diffusion properties. The diffusion coefficient of t-butanol in investigated membranes increases when lithium is replaced by potassium.
机译:根据溶液扩散模型,在吹扫气体过蒸发或真空过蒸发中,无孔膜对蒸气和液体混合物的分离是由于混合物成分在膜材料中的溶解度和扩散率的差异所致。在使用离子交换膜的情况下,膜的离子基团和抗衡离子可以在传质过程中起重要作用。为了确定所选脂族醇蒸气(即乙醇,异丙醇和异丁醇)的扩散率,进行了基于吹扫气体渗透蒸发概念的渗透率测量。实验是使用不同的磺酸离子交换膜进行的:Nafion(带有以磺化基团封端的侧链与醚连接的侧链的全氟化聚乙烯),IonClad(将接枝的磺化苯乙烯单体辐照到聚四氟乙烯膜上)和PESS(通过磺化磺化制备的膜互穿的聚合物网络体系,聚乙烯醇/聚苯乙烯-二乙烯基苯/负载有H〜+,Li〜+或K〜+离子作为抗衡离子。 NAFION和IonClad膜具有相同的骨架(即聚四氟乙烯)。对于IonClad和PESS膜,磺酸基的离子强度相同,而NAFION膜的离子强度高得多。膜中水的存在极大地影响了乙醇的扩散率。磺化离子交换膜的扩散特性表明水和醇分子之间有很强的相互作用。醇极性的增加增加了它们的扩散性能。当锂被钾取代时,叔丁醇在被膜中的扩散系数增加。

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