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用于膜蒸馏处理超低表面张力含油废水的宏观波纹和纳米图案分级结构超双疏膜。

Macro-corrugated and nano-patterned hierarchically structured superomniphobic membrane for treatment of low surface tension oily wastewater by membrane distillation.

机构信息

School of Energy and Environment, City University of Hong Kong, Tat Chee Avenue, Kowloon, Hong Kong Special Administrative Region.

Center for Membrane and Advanced Water Technology, Khalifa University, Abu Dhabi, United Arab Emirates.

出版信息

Water Res. 2020 May 1;174:115600. doi: 10.1016/j.watres.2020.115600. Epub 2020 Feb 10.

Abstract

A hierarchically assembled superomniphobic membrane with three levels of reentrant structure was designed and fabricated to enable effective treatment of low surface tension, hypersaline oily wastewaters using direct contact membrane distillation (DCMD). The overall structure is a combination of macro corrugations obtained by surface imprinting, with the micro spherulites morphology achieved through the applied phase inversion method and nano patterns obtained by fluorinated Silica nanoparticles (SiNPs) coating. This resulted in a superomniphobic membrane surface with remarkable anti-wetting properties repelling both high surface tension water and low surface tension oils. Measurements of contact angle (CA) with DI water, an anionic surfactant, oil, and ethanol demonstrated a robust wetting resistance against low surface tension liquids showing both superhydrophobicity and superoleophobicity. CA values of 160.8 ± 2.3° and 154.3 ± 1.9° for water and oil were obtained, respectively. Calculations revealed a high liquid-vapor interface for the fabricated membrane with more than 89% of the water droplet contact area being with air pockets entrapped between adjacent SiNPs and only 11% come into contact with the solid membrane surface. Moreover, the high liquid-vapor interface imparts the membrane with high liquid repellency, self-cleaning and slippery effects, characterized by a minimum droplet-membrane interaction and complete water droplet bouncing on the surface within only 18 ms. When tested in DCMD with synthetic hypersaline oily wastewaters, the fabricated superomniphobic membrane demonstrated stable, non-wetting MD operation over 24 h, even at high concentrations of low surface tension 1.0 mM Sodium dodecyl sulfate and 400 ppm oil, potentially offering a sustainable option for treatment of low surface tension oily industrial wastewater.

摘要

设计并制造了一种具有三级内凹结构的分级组装超疏油膜,以利用直接接触式膜蒸馏(DCMD)有效处理低表面张力、高盐含油废水。整体结构是通过表面印迹获得的宏观波纹与应用相转化法获得的微观球晶形貌以及氟硅纳米粒子(SiNPs)涂层获得的纳米图案的组合。这导致了具有显著抗润湿性能的超疏油膜表面,既能排斥高表面张力的水,也能排斥低表面张力的油。用去离子水(DI 水)、阴离子表面活性剂、油和乙醇进行接触角(CA)测量,表明其对低表面张力液体具有强大的抗润湿能力,表现出超疏水性和超疏油性。分别获得了 160.8±2.3°和 154.3±1.9°的水和油的 CA 值。计算表明,所制备的膜具有很高的液-气界面,超过 89%的液滴接触面积与相邻 SiNPs 之间的空气口袋接触,只有 11%与固体膜表面接触。此外,高液-气界面赋予膜具有高液体排斥性、自清洁和滑溜效应,其特征在于最小的液滴-膜相互作用和完全的水滴在表面上弹跳,只需 18ms 即可完成。在使用合成高盐含油废水进行 DCMD 测试时,所制备的超疏油膜在 24 小时内表现出稳定的、不润湿的 MD 运行,即使在低表面张力 1.0mM 十二烷基硫酸钠和 400ppm 油的高浓度下也是如此,为处理低表面张力油性工业废水提供了一种可持续的选择。

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