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Structure and permeation of organic-inorganic hybrid membranes composed of poly(vinyl alcohol) and polysilisesquioxane

机译:聚乙烯醇和聚倍半硅氧烷组成的有机-无机杂化膜的结构与渗透

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摘要

Organic-inorganic hybrid membranes with high separation performance were prepared by the incorporation of polysilisesquioxane (PSS) into a poly(vinyl alcohol) (PVA) matrix in order to solve the trade-off relationship between the selectivity and permeability of PVA membranes. The incorporation of the PSS resulted in a change in the physical and chemical structure of the hybrid membranes. The crystalline region in the hybrid membranes decreased with increasing PSS content. The hydrophilicity of the hybrid membranes increased when the PSS content is below 3 wt%, and then decreased. Silica particles formed on the surface and in the interior of the hybrid membranes due to the PSS conglomeration, and the surface roughness of the hybrid membranes increased linearly with increasing PSS content. The trade-off between permeability and selectivity was successfully solved using the hybrid membranes in pervaporation dehydration of tetrahydrofuran. The permselectivity and flux of the hybrid membranes increased simultaneously when the PSS content was below 2 wt%, whereas the permselectivity decreased when the PSS content was above 2 wt%. The hybrid membrane containing 2 wt% PSS had the highest separation factor of 1810.
机译:通过将聚倍半硅氧烷(PSS)掺入聚乙烯醇(PVA)基质中来制备具有高分离性能的有机-无机杂化膜,以解决PVA膜选择性与渗透性之间的权衡关系。 PSS的引入导致杂化膜的物理和化学结构发生变化。杂化膜中的结晶区域随PSS含量的增加而降低。当PSS含量低于3wt%时,杂化膜的亲水性增加,然后降低。由于PSS的聚结,在混合膜的表面和内部形成了二氧化硅颗粒,并且随着PSS含量的增加,混合膜的表面粗糙度线性增加。使用杂化膜在四氢呋喃的全蒸发脱水中成功解决了渗透率和选择性之间的权衡问题。当PSS含量低于2 wt%时,杂化膜的渗透选择性和通量同时增加,而PSS含量高于2 wt%时,渗透膜的渗透选择性降低。包含2 wt%PSS的杂化膜的最高分离系数为1810。

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