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膜蒸馏处理含表面活性剂和油的进料流的膜开发的最新进展。

Recent advances in membrane development for treating surfactant- and oil-containing feed streams via membrane distillation.

机构信息

Interdisciplinary Graduate School, Nanyang Technological University, Singapore 639798, Singapore; Singapore Membrane Technology Centre, Nanyang Environment and Water Research Institute, Nanyang Technological University, Singapore 637141, Singapore.

School of Environmental Science and Engineering, Sun Yat-sen University, Guangzhou 510275, China.

出版信息

Adv Colloid Interface Sci. 2019 Nov;273:102022. doi: 10.1016/j.cis.2019.102022. Epub 2019 Aug 28.

Abstract

Membrane distillation (MD) has been touted as a promising technology for niche applications such as desalination of surfactant- and oil-containing feed streams. Hitherto, the deployment of conventional hydrophobic MD membranes for such applications is limited and unsatisfactory. This is because the presence of surfactants and oils in aqueous feed streams reduces the surface-tension of these media significantly and the attachment of these contaminants onto hydrophobic membrane surfaces often leads to membrane fouling and pore wetting, which compromises on the quantity and quality of water recovered. Endowing MD membranes with surfaces of special wettabilities has been proposed as a strategy to combat membrane fouling and pore wetting. This involves the design of local kinetic energy barriers such as multilevel re-entrant surface structures, surfaces with ultralow surface-energies, and interfacial hydration layers to impede transition to the fully-wetted Wenzel state. This review critiques the state-of-the-art fabrication and surface-modification methods as well as practices used in the development of omniphobic and Janus MD membranes with specific emphasis on the advances, challenges, and future improvements for application in challenging surfactant- and oil-containing feed streams.

摘要

膜蒸馏(MD)被誉为一种有前途的技术,适用于特定应用,如含表面活性剂和油的进料流的脱盐。迄今为止,传统的疏水性 MD 膜在这些应用中的应用受到限制且不尽如人意。这是因为表面活性剂和油在水进料流中的存在会显著降低这些介质的表面张力,并且这些污染物附着在疏水性膜表面上通常会导致膜污染和孔润湿,从而影响回收水的数量和质量。赋予 MD 膜具有特殊润湿性的表面已被提议作为一种对抗膜污染和孔润湿的策略。这涉及设计局部动能障碍,例如多级凹入表面结构、具有超低表面能的表面和界面水合层,以阻止过渡到完全润湿的 Wenzel 状态。本综述批评了最先进的制造和表面改性方法以及用于开发全憎水性和 Janus MD 膜的实践,特别强调了在具有挑战性的含表面活性剂和油的进料流中的应用的进展、挑战和未来改进。

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