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Bio-polymer modified nanoclay embedded forward osmosis membranes with enhanced desalination performance

机译:生物聚合物改性纳米粘土嵌入正向渗透膜,具有增强的海水淡化性能

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摘要

The substrate of forward osmosis (FO) thin-film composite (TFC) membranes supports the formation of the selective layer. It can remarkably influence the structure as well as the physiochemical characteristics of the selective layer formed atop. Therefore, the improvement of TFC substrates in terms of its thickness, tortuosity and porosity can further fine tune the properties of the resultant TFC membranes. In this present study, TFC membrane comprising of polyamide selective layer and palygorskite-chitin (PAL-CH) containing polysulfone substrate was developed for FO desalination. The effects of PAL-CH on the surface and structural properties of the substrate were examined. The FO desalination performance of the resultant membranes was evaluated in both active-layer facing feed solution and active-layer facing draw solution modes using NaCl as draw solution. In comparison with the un-modified membrane, the TFC membrane with PAL-CH embedded polysulfone substrate exhibited enhanced water flux and lower structural parameter. The incorporation of PAL-CH hybrid nanomaterial resulted in improved flux of 34.39 L/m(2) h(1), which corresponds to improvement by 110 compared to that of pristine membranes. During the antifouling test, PAL-CH-S/PA membrane attained 97 water recovery while the pristine membrane attained 90 water recovery.
机译:正向渗透 (FO) 薄膜复合 (TFC) 膜的基质支持选择性层的形成。它可以显着影响顶部形成的选择性层的结构和理化特性。因此,TFC基板在厚度、迂曲度和孔隙率方面的改进可以进一步微调所得TFC膜的性能。本研究开发了由聚酰胺选择层和含有聚砜底物的甲壳石(palygorskite-chitin,PAL-CH)组成的TFC膜,用于FO脱盐。研究了PAL-CH对基底表面和结构性能的影响。以NaCl为拉液,在活性层面进料液和活性层面拉丝液模式下,评价了所得膜的FO脱盐性能。与未改性的膜相比,PAL-CH包埋聚砜底物的TFC膜表现出更高的水通量和更低的结构参数。PAL-CH杂化纳米材料的掺入使通量提高了34.39 L/m(2) h(1),与原始膜相比提高了110%。在防污试验中,PAL-CH-S/PA膜的水分回收率达到97%,而原始膜的水分回收率达到90%。

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