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Constructing highly rough skin layer of thin film (nano)composite polyamide membranes to enhance separation performance: A review

机译:构建高粗糙的薄膜(纳米)复合聚酰胺膜层以提高分离性能的研究进展

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摘要

The thin-film (nano)composite (TFC or TFN) polyamide membrane prepared by interfacial polymerization method has a wide range of applications in water treatment. The preparation of TFC or TFN membrane with a highly wrinkled morphology in the selective layer can significantly improve the permeability of the membrane and is an effective way to break the "trade-off" effect. However, the formation mechanism of highly rough skin layer and the membrane fouling performance associated with the rough structure have been underexplored. In this review, the formation mechanisms of crumpled membranes were summarized into four aspects: interfacial nanobubbles effect, template method, diffusion-driven instability, and co-solvent effects. On the basis of these mechanisms, researchers have explored different methods to construct membranes with highly rough structures. This article summarized these construction methods including introduction of additives, construction of functional interlayer, sacrificial template and some other strategies. The advantages and disadvantages of these fabrication methods and the separation performance comparison of the crumpled membrane and the original membrane were discussed in detail. Furthermore, the review analyzed the recent research status of the anti-fouling performance of the pleated membrane, and finally put forward the research opinions on the future in fabricating highly roughness membranes.
机译:通过界面聚合法制备的薄膜(纳米)复合(TFC或TFN)聚酰胺膜在水处理中具有广泛的应用。制备选择性层中具有高度皱纹形貌的TFC或TFN膜可以显著提高膜的渗透性,是打破“权衡”效应的有效途径。然而,高度粗糙的表皮层的形成机理以及与粗糙结构相关的膜污染性能尚未得到充分探索。本文将皱褶膜的形成机理归纳为界面纳米气泡效应、模板法、扩散驱动的不稳定性和助溶剂效应4个方面。在这些机理的基础上,研究人员探索了构建具有高度粗糙结构的膜的不同方法。本文总结了这些施工方法,包括添加剂的引入、功能夹层的构建、牺牲模板和其他一些策略。详细讨论了这些制备方法的优缺点,以及皱褶膜与原膜的分离性能比较。此外,本文还分析了近年来褶皱膜防污性能的研究现状,最后对高粗糙度膜的制备提出了研究意见。

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