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定制薄膜纳米复合膜的结构以实现海水 RO 膜性能。

Tailoring the structure of thin film nanocomposite membranes to achieve seawater RO membrane performance.

机构信息

Department of Civil & Environmental Engineering and California NanoSystems Institute, University of California, Los Angeles, Los Angeles, California, USA.

出版信息

Environ Sci Technol. 2010 Nov 1;44(21):8230-5. doi: 10.1021/es101569p.

Abstract

Herein we report on the formation and characterization of pure polyamide thin film composite (TFC) and zeolite-polyamide thin film nanocomposite (TFN) reverse osmosis (RO) membranes. Four different physical-chemical post-treatment combinations were applied after the interfacial polymerization reaction to change the molecular structure of polyamide and zeolite-polyamide thin films. Both TFC and TFN hand-cast membranes were more permeable, hydrophilic, and rough than a commercial seawater RO membrane. Salt rejection by TFN membranes was consistently below that of hand-cast TFC membranes; however, two TFN membranes exhibited 32 g/L NaCl rejections above 99.4%, which was better than the commercial membrane under the test conditions employed. The nearly defect-free TFN films that produced such high rejections were achieved only with wet curing, regardless of other post-treatments. Polyamide films formed in the presence of zeolite nanoparticles were less cross-linked than similarly cast pure polyamide films. At the very low nanoparticle loadings evaluated, differences between pure polyamide and zeolite-polyamide membrane water and salt permeability correlated weakly with extent of cross-linking of the polyamide film, which suggests that defects and molecular-sieving largely govern transport through zeolite-polyamide thin film nanocomposite membranes.

摘要

本文报道了纯聚酰胺薄膜复合(TFC)和沸石-聚酰胺薄膜纳米复合(TFN)反渗透(RO)膜的形成和特性。界面聚合反应后,采用了四种不同的物理化学后处理组合来改变聚酰胺和沸石-聚酰胺薄膜的分子结构。与商业海水 RO 膜相比,TFC 和 TFN 手铸膜具有更高的渗透性、亲水性和粗糙度。TFN 膜的盐截留率始终低于手铸 TFC 膜;然而,在测试条件下,有两个 TFN 膜的 32g/L NaCl 截留率超过 99.4%,优于商业膜。只有在湿固化的情况下,才能得到几乎没有缺陷的 TFN 薄膜,从而实现如此高的截留率,而不管其他后处理如何。在沸石纳米粒子存在下形成的聚酰胺膜的交联程度低于类似铸造的纯聚酰胺膜。在所评估的非常低的纳米颗粒负载下,纯聚酰胺和沸石-聚酰胺膜的水和盐渗透率之间的差异与聚酰胺膜的交联程度弱相关,这表明缺陷和分子筛在很大程度上控制着沸石-聚酰胺薄膜纳米复合膜的传输。

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