有机溶剂纳滤用聚合物膜:最新进展、挑战和展望

Zhenggong Wang , Xiaofan Luo , Jiaqi Zhang , Feng Zhang , Wangxi Fang , Jian Jin
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引用次数: 10

摘要

近年来,聚合物材料和聚合物膜制备技术的发展大大提高了有机溶剂纳滤技术的重要性和可行性,但来自不同角度的挑战仍然阻碍了聚合物基OSN膜的更广泛应用。本文从聚合物膜材料的角度对OSN膜的研究进行了具体的综述,首先回顾了聚合物基整体表皮不对称(ISA)和薄膜复合(TFC)OSN膜研究的最新进展。与市售的聚酰亚胺ISA膜和聚酰胺TFC膜相比,多种新兴的聚合物材料使膜具有大大提高的渗透选择性,用于高效分子分离。鉴于OSN膜在工程应用中的应用,本文还总结了聚合物膜特有的一些关键挑战,包括材料溶胀、物理老化和膜压实,以及最近克服这些挑战的努力。文章的后半部分简要讨论了聚合物OSN膜未来的研究方向和应用前景,指出改进的成膜控制和交联策略,新兴聚合物膜材料的开发非常必要,以突破OSN在渗透选择性和性能稳定性方面的应用限制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Polymer membranes for organic solvent nanofiltration: Recent progress, challenges and perspectives

Polymer membranes for organic solvent nanofiltration: Recent progress, challenges and perspectives

The development of polymer materials and polymer membrane fabrication techniques in recent years greatly elevates the importance and feasibility of organic solvent nanofiltration (OSN) technology, while challenges from different perspectives still hinder the wider applications of polymer based OSN membranes. This article reviews the OSN membrane research specifically from the perspective of polymer membrane materials, starting by recapping the recent progress of polymer based integrally skinned asymmetric (ISA) and thin film composite (TFC) OSN membranes. Comparing to commercially available polyimide ISA membranes and polyamide TFC membranes, multiple categories of emerging polymer materials result in membranes with much improved permselectivity for highly efficient molecular separation. In view of adopting OSN membranes for engineering applications, this review also summarizes some key challenges unique to polymer membranes including material swelling, physical aging and membrane compaction, and recent efforts to overcome them. The future research direction and application prospects of polymer OSN membranes are briefly discussed in the latter part of the article, noting that improved membrane formation control and crosslinking strategies, and the development of emerging polymer membrane materials is at high necessity to break through the application constraints of OSN in terms of permselectivity and performance stability.

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