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Alleviation of Reverse Salt Leakage across Nanofiber Supported Thin-Film Composite Forward Osmosis Membrane via Heat-Curing in Hot Water

机译:通过热水中的热固化在纳米纤维上横跨纳米纤维的逆盐泄漏减轻反向盐泄漏

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摘要

Electrospun nanofiber with interconnected porous structure has been studied as a promising support layer of polyamide (PA) thin-film composite (TFC) forward osmosis (FO) membrane. However, its rough surface with irregular pores is prone to the formation of a defective PA active layer after interfacial polymerization, which shows high reverse salt leakage in FO desalination. Heat-curing is beneficial for crosslinking and stabilization of the PA layer. In this work, a nanofiber-supported PA TFC membrane was conceived to be cured on a hot water surface with preserved phase interface for potential “defect repair”, which could be realized by supplementary interfacial polymerization of residual monomers during heat-curing. The resultant hot-water-curing FO membrane with a more uniform superhydrophilic and highly crosslinked PA layer exhibited much lower reverse salt flux (FO: 0.3 gMH, PRO: 0.8 gMH) than that of oven-curing FO membrane (FO: 2.3 gMH, PRO: 2.2 gMH) and achieved ∼4 times higher separation efficiency. It showed superior stability owing to mitigated reverse salt leakage and osmotic pressure loss, with its water flux decline lower than a quarter that of the oven-curing membrane. This study could provide new insight into the fine-tuning of nanofiber-supported TFC FO membrane for high-quality desalination via a proper selection of heat-curing methods.
机译:电纺纳米纤维具有互连的多孔结构已经被研究作为聚酰胺(PA)薄膜复合(TFC)的正向渗透(FO)膜的有希望的支撑层。然而,其具有不规则毛孔粗糙表面容易出现界面聚合后形成有缺陷的PA活性层的,这表明高的反向泄漏盐在FO脱盐。热固化是为PA层的交联和稳定是有利的。在这项工作中,纳米纤维负载PA TFC膜的构思与保存的相界面为潜在的“缺陷修复”,这可以通过残余单体的补充界面聚合的热固化过程中实现的热水表面固化。将所得的热水固化FO膜具有更均匀超亲水和高度交联的PA层显示出低得多的反向盐通量(FO:0.3 GMH,PRO:0.8 GMH)比的烘箱固化FO膜(FO:2.3 GMH, PRO:2.2 GMH)并取得较高的约为4倍的分离效率。这表明由于减轻反向盐泄漏和渗透压损失优异的稳定性,以其水通量下降低于四分之一,所述烘箱固化膜组成。该研究可通过热固化方法的正确选择提供了新的洞察纳米纤维负载TFC FO膜的高品质淡化的微调。

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