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Characteristics of permeation and separation for propanol isomers through poly(vinyl alcohol) membranes containing cyclodextrin

机译:丙醇异构体通过含环糊精的聚乙烯醇膜的渗透和分离特性

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AbstractPoly(vinyl alcohol) membranes containing cyclodextrin (CD–PVA membrane) were prepared and characteristics of permeation and separation for propanol (PrOH) isomers through the CD–PVA membranes were investigated by pervaporation and evapomeation. Evapomeation was more effective for the separation of PrOH isomers through the CD–PVA membrane than was pervaporation. The CD–PVA membrane more preferentially permeatedn‐PrOH thani‐PrOH from their mixtures. In particular, the mixture of 10 wt n‐PrOH concentration was concentrated to about 45 wt through the CD–PVA membrane. Both permeability and selectivity forn‐PrOH were improved with an increase of CD content in the membrane. The results were supported by the fact that the affinity of CD forn‐PrOH was stronger than that fori‐PrOH. The permeation mechanism of PrOH isomers through the CD–PVA membrane is discussed based on the solution–diffusion theory. ©
机译:摘要 制备了含环糊精的聚乙烯醇膜(CD-PVA膜),并研究了丙醇(PrOH)异构体通过CD-PVA膜的渗透和分离特性。蒸发对于通过CD-PVA膜分离PrOH异构体比渗透汽化更有效。CD-PVA膜更优先地从它们的混合物中渗透n-PrOH而不是PrOH。特别是,将浓度为10 wt %n-PrOH的混合物通过CD-PVA膜浓缩至约45 wt %。随着膜中CD含量的增加,PrOH的渗透性和选择性均得到改善。CD的亲和力比PrOH强,这一事实支持了该结果。基于溶液-扩散理论,讨论了PrOH异构体通过CD-PVA膜的渗透机理.©

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