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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Novel thin film composite membranes supported by cellulose triacetate porous substrates for high-performance forward osmosis
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Novel thin film composite membranes supported by cellulose triacetate porous substrates for high-performance forward osmosis

机译:通过纤维素三乙酸多孔基材支撑的新型薄膜复合膜,用于高性能前进渗透

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摘要

Novel thin film composite forward osmosis (TFC-FO) membranes were developed by using hydrophilic cellulose triacetate (CTA) porous substrates prepared by thermally induced phase separation (TIPS) method. A series of CTA substrates with different structures were fabricated to demonstrate the structure-performance relationship of the TFC-FO membranes. It is found that the substrates possess relatively large pores on their rough surfaces as well as their intrinsic hydrophilicity, leading to intensively large "ridge-and-valley" structures on the TFC-FO membranes. The large surface pores of the CTA substrates result in thick and rough polyamide skin layers. Moreover, the optimal CTA porous substrates should have a small thickness, high porosity, and oriented plate-like pores. These structures profit the TFC-FO membranes with superior water permeability, relatively high salt rejection, and low structural parameter. The one with thickness of 102 +/- 16 mu m and porosity of 87.1 +/- 1.1% shows the smallest structural parameter (516 mu m) and the desirable over-all properties in terms of water permeability and selectivity. It means that the hydrophilic CTA porous substrates enable to alleviate the internal concentration polarization (ICP) effect. These TFC membranes could provide a new route to develop high-performance composite membranes for FO desalination.
机译:通过使用通过热诱导的相分离(TIPS)方法制备的亲水纤维素三乙酸(CTA)多孔基材来开发新型薄膜复合前渗透(TFC-FO)膜。制造了一系列具有不同结构的CTA基材以证明TFC-FO膜的结构性能关系。发现基板在其粗糙表面上具有相对大的孔隙以及它们的固有亲水性,导致TFC-FO膜上的强烈大的“脊和谷”结构。 CTA基质的大表面孔导致厚粗糙的聚酰胺皮层。此外,最佳CTA多孔基板应具有小的厚度,高孔隙率和取向板状孔。这些结构利润具有优异的水渗透性,相对高的盐排斥和低结构参数的TFC-FO膜。厚度为102 +/-16μm的孔隙率为87.1 +/- 1.1%,显示了最小的结构参数(516μm),并且在水渗透性和选择性方面所需的过度性质。这意味着亲水CTA多孔基材使能够减轻内部浓度极化(ICP)效应。这些TFC膜可以提供一种新的途径来开发用于脱淡化的高性能复合膜。

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