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首页> 外文期刊>Journal of Membrane Science >Separation of dilute organic/water mixtures with asymmetric polyt vinylidene fluoride) membranes
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Separation of dilute organic/water mixtures with asymmetric polyt vinylidene fluoride) membranes

机译:用不对称的聚偏二氟乙烯膜分离稀有机/水混合物

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An in-depth investigation of integral asymmetric poly(vinylidene fluoride) (PVDF) membranes has been carried out for the extraction of polar and non-polar organic compounds from dilute organic-in-water feed solutions. Membrane performance for low and high-boiling non-polar organic feed components was excellent, with separation factors as high as 4900 and high organic transmembrane fluxes. Polar organic feed components such as ethanol and acetone were also separated effectively from water but the separation factors were lower than non-polar organics. There was no change in membrane performance when either the dense or porous face of a PVDF membrane contacted the feed solution as long as the feed solution flow rate was sufficiently high. The effect of membrane preparation conditions, such as casting solution composition, air humidity and temperature during film drying, and the molecular weight of PVDF, on membrane performance was quantified. Although the water flux through the resulting films changed significantly, the organic (benzene) flux was essentially independent of the fabrication method. Variations in casting conditions also changed the mean diameter of a small number of pores in the dense layer of PVDF membranes. Transmembrane water fluxes during benzene/water separations correlated with increasing pore size, indicating that such pores were providing pathways for water movement across the hydrophobic PVDF dense layer. Based on benzene swelling and diffusivity measurements in homogeneous PVDF films, pores in the dense layer of an asymmetric membrane control permeate enrichment by either a membrane distillation, pore flow, or capillary condensation mechanism. The total time for asymmetric membrane casting was reduced from 69-72 min to 7 min, while maintaining a high organic (benzene) separation factor with only a small drop in transmembrane benzene flux.
机译:已对整体式不对称聚偏二氟乙烯(PVDF)膜进行了深入研究,以从稀有机水中进料溶液中提取极性和非极性有机化合物。低沸点和高沸点非极性有机进料组件的膜性能极佳,分离系数高达4900,有机跨膜通量较高。极性有机进料成分(例如乙醇和丙酮)也可以从水中有效分离,但分离系数低于非极性有机物。当PVDF膜的致密面或多孔面接触进料溶液时,只要进料溶液流速足够高,膜性能就不会改变。定量了膜制备条件,例如流延溶液组成,膜干燥期间的空气湿度和温度以及PVDF的分子量对膜性能的影响。尽管通过所得膜的水通量发生了显着变化,但有机(苯)通量基本上与制造方法无关。流延条件的变化也改变了PVDF膜致密层中少量孔的平均直径。苯/水分离过程中的跨膜水通量与孔径增加相关,表明此类孔为水穿过疏水性PVDF致密层的流动提供了途径。根据均质PVDF膜中苯的溶胀和扩散率测量,不对称膜的致密层中的孔通过膜蒸馏,孔流或毛细管冷凝机制控制渗透物富集。不对称膜浇铸的总时间从69-72分钟减少到7分钟,同时保持了较高的有机(苯)分离因子,而跨膜苯通量只有很小的下降。

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