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基于生物聚合物壳聚糖的超润湿性多孔膜及油水分离材料综述

A review on super-wettable porous membranes and materials based on bio-polymeric chitosan for oil-water separation.

作者信息

Baig Umair, Faizan M, Waheed Abdul

机构信息

Interdisciplinary Research Center for Membranes and Water Security, King Fahd University of Petroleum and Minerals, Dhahran 31261, Saudi Arabia.

Department of Mechanical Engineering, King Fahd University of Petroleum and Minerals, Dhahran 31261¸ Saudi Arabia.

出版信息

Adv Colloid Interface Sci. 2022 May;303:102635. doi: 10.1016/j.cis.2022.102635. Epub 2022 Mar 7.

Abstract

Appropriate surface wettability of membranes and materials are of an extreme importance for targeting separation of mixtures/emulsions such as oil from water or conversely water from oil. The development of super-wettable membranes and materials surfaces have shown remarkable potential for recovering water from oil-water emulsion while offering maximum resistance to fouling. The availability of clean and potable water has been regarded as an important global challenge for coming human generations. Oil and gas industry is continuously producing immense quantities of waste stream regarded as produced water which contains oil dispersed in water along with other several components. Treating such immense quantities of oily wastewater is of utmost need for recovering precious water for possible reuse or safe disposal. Various technologies have been developed for targeting the separation of oil-water emulsions or mixtures to harness useful potable water and oil as products. Membrane-based separations or use of porous materials such as mesh have been explored in literature for separation of oil-water mixtures/emulsions. Given the unique features of special hydrophilicity, ease of tunability, control of molecular weight, abundant availability, and potential for commercial scale up, chitosan has been extensively used for modifying membranes/meshes or preparing composites with other materials for oil-water separations. This review has described in detail the synthesis, methods of modification and application of chitosan-based super-wettable membranes/meshes and porous materials for oil-water separation. The special wettability features including super-hydrophobicity/superoleophilicity, super-oleophobicity/super-hydrophilicity and super-hydrophilicity/underwater super-oleophobicity of various chitosan-based membranes and materials have been discussed in detail in the review. The strategies for enhancing or developing special wettability for target specific applications have also been discussed. Finally, the challenges, their respective importance have been identified along with a discussion on possible solutions to these challenges.

摘要

膜和材料具有适当的表面润湿性对于诸如从水中分离油或反之从油中分离水等混合物/乳液的靶向分离极为重要。超润湿性膜和材料表面的开发在从油水乳液中回收水同时提供最大抗污染性方面显示出显著潜力。清洁饮用水的供应一直被视为未来人类面临的一项重要全球挑战。石油和天然气行业不断产生大量被视为采出水的废物流,其中含有分散在水中的油以及其他几种成分。处理如此大量的含油废水对于回收宝贵的水以进行可能的再利用或安全处置至关重要。已经开发了各种技术来靶向分离油水乳液或混合物,以获取有用的饮用水和油作为产品。文献中已经探索了基于膜的分离或使用诸如网等多孔材料来分离油水混合物/乳液。鉴于壳聚糖具有特殊亲水性、易于调节、分子量可控、来源丰富以及具有商业规模放大潜力等独特特性,它已被广泛用于修饰膜/网或与其他材料制备复合材料以进行油水分离。本综述详细描述了基于壳聚糖的超润湿性膜/网和多孔材料用于油水分离的合成、改性方法及应用。综述中详细讨论了各种基于壳聚糖的膜和材料的特殊润湿性特征,包括超疏水性/超亲油性、超疏油性/超亲水性和超亲水性/水下超疏油性。还讨论了针对特定目标应用增强或开发特殊润湿性的策略。最后,确定了挑战及其各自的重要性,并讨论了应对这些挑战的可能解决方案。

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