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Graphene oxide modified forward osmosis membranes with improved hydrophilicity and desalination performance

机译:氧化石墨烯改性的正渗透膜,具有改善的亲水性和脱盐性能

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摘要

Graphene oxide (GO) was applied to fabricate thin-film nanocomposite forward osmosis (TFN-FO) membranes with improved desalination performance. GO in various concentrations ranging from 0.0005 to 0.06 wt% was added to the aqueous phase solution before the interfacial polymerization process. GO modified FO membranes were characterized and the desalination performance was investigated. Results indicated that the TFN-FO membranes formed a typical "ridge-and-valley" structure, achieved a lower reverse solute flux, and showed improvements on membrane hydrophilicity, water fluxes, and salt rejection. When 2 mol.L-1 of NaCl and 10 mmol.L-1 NaCl were used as the draw solution and the feed solution, respectively, the water flux of the membrane modified by 0.005 wt% GO reached the climax at 8.59 L.m(-2).h(-1) (LMH) in the active layer facing the feed solution mode (the active layer facing the draw solution), which increased 55.6% compared with that of the pristine membranes. Moreover, the desalination performance of TFN-FO was compared with the pristine FO membranes under different operating conditions with various draw solution concentrations, cross-flow rates and orientations of membranes. Results showed that the TFN-FO membranes had enhanced desalination performance under all operating conditions in this study. The 0.005 wt% GO nanosheet was the optimal and such low contents of GO are promising for a wide-scale industrial application.
机译:氧化石墨烯(GO)被用于制造具有改善的脱盐性能的薄膜纳米复合正向渗透(TFN-FO)膜。在界面聚合过程之前,将0.0005-0.06wt%的各种浓度的GO加入到水相溶液中。表征了GO改性的FO膜,并研究了脱盐性能。结果表明,TFN-FO膜形成了典型的“峰谷”结构,实现了较低的反向溶质通量,并显示了膜亲水性,水通量和脱盐率的提高。当分别使用2摩尔L-1 NaCl和10 mmol.L-1 NaCl作为汲取溶液和进料溶液时,经0.005 wt%GO改性的膜的水通量达到8.59 Lm(- 2).h(-1)(LMH)在面对进料溶液模式的活性层(面对汲取溶液的活性层)中,与原始膜相比增加了55.6%。此外,将TFN-FO的脱盐性能与原始FO膜在不同的操作条件下,不同的溶液浓度,错流速率和膜取向下进行了比较。结果表明,在本研究中,TFN-FO膜在所有操作条件下均具有增强的脱盐性能。 0.005wt%的GO纳米片是最佳的,并且如此低的GO含量对于大规模工业应用是有希望的。

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