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一种简便有效的策略,用于开发一种超疏水/超亲油玻璃纤维滤膜,以实现高效的微米级油包水乳液分离。

A facile and effective strategy to develop a super-hydrophobic/super-oleophilic fiberglass filter membrane for efficient micron-scale water-in-oil emulsion separation.

作者信息

Zhou Yujie, He Lantao, Wang Linxi, Chen Gaoxiang, Luo Jianhong

机构信息

Department of Chemical Engineering, Sichuan University Chengdu Sichuan 610065 P. R. China

出版信息

RSC Adv. 2022 Jan 25;12(6):3227-3237. doi: 10.1039/d1ra08841f. eCollection 2022 Jan 24.

Abstract

In order to achieve efficient micron-scale water-in-oil emulsion separation, a facile and effective strategy is developed to prepare a super-hydrophobic/super-oleophilic fiberglass filter membrane (FGm). Methyl-trichlorosilane (MTS) is successfully cross-linked on the surface of the fiberglass filter membrane (FGm) and aggregates into a 3D nanowire array to provide low surface energy. Nano fumed hydrophobic silica (SH-SiO) is used to construct the well-defined nanosphere structure on the surface of FGm and enhance the ability of the membrane to resist extreme conditions. The optimally modified membrane displays outstanding super-hydrophobic properties with a contact angle of 156.2°. It is impressive to find that the MTS@SH-SiO@FGm not only demonstrates the ability to separate water-in-oil emulsions with a particle size of less than 20 μm, but also the removal efficiency of separation has reached 99.98%. More attractively, the membrane still has stable super-hydrophobic features and reusable water-in-oil emulsion separation performance even under exposure to diverse harsh conditions, including extremely acidic corrosive solutions and ultra-high temperature systems.

摘要

为实现高效的微米级油包水乳液分离,开发了一种简便有效的策略来制备超疏水/超亲油玻璃纤维滤膜(FGm)。甲基三氯硅烷(MTS)成功交联在玻璃纤维滤膜(FGm)表面并聚集成三维纳米线阵列以提供低表面能。纳米气相疏水二氧化硅(SH-SiO)用于在FGm表面构建明确的纳米球结构并增强膜抵抗极端条件的能力。优化改性后的膜表现出优异的超疏水性能,接触角为156.2°。令人印象深刻的是,MTS@SH-SiO@FGm不仅展现出分离粒径小于20μm的油包水乳液的能力,而且分离去除效率已达到99.98%。更具吸引力的是,即使暴露于各种苛刻条件下,包括极酸性腐蚀性溶液和超高温系统,该膜仍具有稳定的超疏水特性和可重复使用的油包水乳液分离性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c46e/8979252/a9b6ba6f0d2e/d1ra08841f-f1.jpg

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