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首页> 外文期刊>Separation and Purification Technology >High performance polyacrylonitrile-supported forward osmosis membranes prepared via aromatic solvent-based interfacial polymerization
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High performance polyacrylonitrile-supported forward osmosis membranes prepared via aromatic solvent-based interfacial polymerization

机译:通过芳族溶剂基界面聚合制备高性能聚丙烯腈负载的前渗透膜

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摘要

A high performance thin film composite (TFC) forward osmosis (FO) membrane was prepared using a hydrophilic polyacrylonitrile (PAN) support with a tailored structure via a newly devised, aromatic solvent (toluene)based interfacial polymerization (TIP) technique. The use of toluene as the organic solvent promoted amine diffusion toward the organic phase and the subsequent reaction, leading to the formation of an ultrathin (highly permeable) and highly dense (highly selective) polyamide selective layer on the PAN support, which improved membrane performance. In addition, a relatively thin (similar to 80 mu m) and finger-like porous support structure embedded with a nonwoven fabric was favorable for facilitating mass transport in the support. As a result, the TFC FO membrane prepared via TIP showed similar to 2.1 times higher FO water flux and similar to 68% lower specific salt flux than the membrane prepared via conventional aliphatic solvent-based interfacial polymerization (IP) in FO mode. Importantly, our TIP-assembled membrane exhibited superior FO performance over commercial and other lab-made membranes. Our strategy provides a facile solution to overcome the technical limitations of the conventional IP method by enabling the fabrication of high performance PA layers on hydrophilic supports, expanding the application spectrum of TFC membranes.
机译:使用新设计的芳族溶剂(甲苯)基于型界面聚合(尖端)技术,使用亲水聚丙烯腈(PAN)载体制备高性能薄膜复合物(TFC)前渗透(FO)膜(FO)膜。用甲苯作为有机溶剂促进胺扩散朝向有机相和随后的反应,导致在平底锅载体上形成超薄(高度渗透性)和高度致密的(高度选择性)聚酰胺选择性层,这改善了膜性能。另外,嵌入具有非织造织物的相对较薄(类似于80μm)和指状多孔支撑结构是有利于促进支撑体的质量传递。结果,通过尖端制备的TFC FO膜与通过在FO模式中通过常规脂族溶剂基界面聚合(IP)制备的膜比通过FO模式的膜制备的膜相似,类似于68%的比例较低的盐通量。重要的是,我们的尖端组装膜在商业和其他实验室制作的膜上表现出优异的性能。我们的策略提供了一种容易解决方案来克服传统IP方法的技术限制,通过使高性能PA层对亲水性支持制备,扩展TFC膜的应用谱。

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