用于油水乳液分离的智能膜研究进展

Panchan Dansawad , Yujie Yang , Xin Li , Xiaopeng Shang , Yanxiang Li , Zhiwei Guo , Yashi Qing , Shengyong Zhao , Siming You , Wangliang Li
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引用次数: 7

摘要

含油废水对环境和人类社会都产生了重大影响。特别是,由于油水乳液的高稳定性,处理油水乳液以分离油水具有挑战性。智能膜被称为刺激响应膜,是近年来受到广泛关注的用于分离油水乳液的新兴技术之一。智能膜在受到外界刺激后,具有在亲疏水性之间切换润湿性的独特特性,并具有理想的抗污性能。本文综述了近五年来(2018年至今)用于油水乳液分离的智能膜的发展。溶剂刺激响应膜是目前最流行的一种用于油水乳液分离的智能膜。对于能够对多种刺激做出反应的多刺激响应膜,未来的研究重点应放在开发合适的制备策略上,以提高膜的分离性能和抗污染性能。此外,表面涂层、表面接枝和共聚物共混是制造智能膜最常用的方法。然而,这些方法可能并不普遍适用于不同类型的刺激反应膜。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Smart membranes for oil/water emulsions separation: A review

Oily wastewater poses a significant impact on both environments and human societies. Especially, the treatment of oil/water emulsions for separating oil from water is challenging due to the high stability of oil/water emulsions. Smart membranes, known as stimuli-responsive membranes, are one of the emerging technologies that have been paid wide attention for separating oil/water emulsions in recent years. Smart membranes possess the unique features of switchable wettability between hydrophilicity and hydrophobicity after being triggered by external stimuli and have desired anti-fouling properties. This review summarizes the development of smart membranes for oil/water emulsions separation during the past five years (2018 – present). It was found that solvent stimuli-responsive membranes are the most popular type of smart membranes for oil/water emulsions separation. For multi-stimuli-responsive membranes that can respond to more than one stimulus, future research should focus on developing appropriate fabrication strategies to increase the separation and anti-fouling performances of the membranes. Additionally, surface coating, surface grafting, and copolymer blending are the most popular methods for smart membranes fabrication. However, these methods might not be universally applicable to the different types of stimuli-responsive membranes.

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