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使用超双亲性和水下超疏水性聚氨酯/硅藻土复合材料通过真空抽吸实现通用快速破乳

Universal Rapid Demulsification by Vacuum Suction Using Superamphiphilic and Underliquid Superamphiphobic Polyurethane/Diatomite Composites.

作者信息

Wu Pan, Luo Qiuxian, Zhang Xingyang, He Jian, Liu Changjun, Jiang Wei

机构信息

Low-Carbon Technology and Chemical Reaction Engineering Laboratory, School of Chemical Engineering, Sichuan University, Chengdu 610065 P. R. China.

出版信息

ACS Appl Mater Interfaces. 2022 Jun 1;14(21):24775-24786. doi: 10.1021/acsami.2c03967. Epub 2022 May 19.

Abstract

A process for universal rapid demulsification by vacuum suction using an as-prepared superamphiphilic and underliquid superamphiphobic polyurethane (PU)/diatomite composite has been developed and is used to demulsify kerosene-in-water and water-in-kerosene emulsions with and without a surfactant. The results show that the demulsification rate of all the emulsions exceeds 98.5% in long-term operation, with a stable demulsification speed exceeding 0.303 L/m min. When a superhydrophobic channel for separation is added, the oil/water separation efficiency exceeds 99.0%, and the final products are qualified oil and water. This attractive universal demulsification capability of PU/diatomite originates from its underliquid superamphiphobicity, which attracts a continuous phase to form a stable liquid film and thus repels dispersed phase droplets, which have a similar interaction with the surface but are much less abundant. The vacuum forces emulsion droplets into the microstructure of the PU/diatomite cake, where they are compressed, coalesce, and finally demulsified. This observed mechanism suggests a promising strategy to avoid the negative effects of oil fouling in demulsification and achieve large-scale universal continuous rapid demulsification.

摘要

利用所制备的超双亲及水下超疏油聚氨酯(PU)/硅藻土复合材料,开发了一种通过真空抽吸实现通用快速破乳的方法,并用于破乳含和不含表面活性剂的水包煤油乳液和油包水乳液。结果表明,在长期运行中,所有乳液的破乳率均超过98.5%,稳定破乳速度超过0.303L/m·min。当添加用于分离的超疏水通道时,油水分离效率超过99.0%,最终产物为合格的油和水。PU/硅藻土这种引人注目的通用破乳能力源于其水下超疏油性,它吸引连续相形成稳定的液膜,从而排斥分散相液滴,分散相液滴与表面有类似的相互作用,但数量要少得多。真空将乳液滴吸入PU/硅藻土滤饼的微观结构中,在那里它们被压缩、聚结,最终破乳。这种观察到的机制表明了一种有前景的策略,可避免破乳过程中油污的负面影响,并实现大规模通用连续快速破乳。

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