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首页> 外文期刊>ACS applied materials & interfaces >Electrostatic Assembly of a Titanium Dioxide@Hydrophilic Poly(phenylene sulfide) Porous Membrane with Enhanced Wetting Selectivity for Separation of Strongly Corrosive Oil-Water Emulsions
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Electrostatic Assembly of a Titanium Dioxide@Hydrophilic Poly(phenylene sulfide) Porous Membrane with Enhanced Wetting Selectivity for Separation of Strongly Corrosive Oil-Water Emulsions

机译:二氧化钛@亲水性聚(亚硫醚)多孔膜的静电组装,具有增强的润湿选择性,分离强腐蚀性的油水乳液

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摘要

The efficient treatment of oil-water emulsions in extreme environments, such as strongly acidic and alkaline media, remains a widespread concern. Poly(phenylene sulfide) (PPS)-based porous membranes with excellent resistance to chemicals and solvents are promising for settling this challenge. However, the limited hydrophilicity and the poor hydrated ability of the hydrophilic PPS (h-PPS) membranes reported in the literature prevents them from separating oil-water emulsions with high efficiency, large fluxes, and good antifouling performances. In this study, a firm rough TiO2 layer is constructed on a h-PPS membrane via electrostatic assembly to improve the surface hydrophilization. The introduction of the TiO2 layer increases the wetting selectivity and decreases the oil adhesion, which makes it capable to efficiently treat oil-in-water emulsions (efficiency > 98%). Most importantly, the underwater critical oil intrusion pressure almost doubled after the incorporation of the TiO2 layer, which allows the membrane to withstand pressurized filtration, achieving a high flux of similar to 4000 L m(-2) h(-1). This is more than 2 orders of magnitude larger than the flux of the reported h-PPS. Furthermore, the TiO2@h-PPS membrane displays long-term stability in separating oil-water emulsions in strong acid and strong alkali, showing a promising prospect for the treatment of strongly corrosive emulsions.
机译:高效处理油水乳液在极端环境中,例如强酸性和碱性介质,仍然是普遍的关注。聚(硫化物)(PPS)的多孔膜,具有优异的化学品和溶剂的抗性,很有希望沉降这一攻击。然而,文献中报道的亲水PPS(H-PPS)膜(H-PPS)膜的有限亲水性和差的水合能力可防止它们用高效率,大量的助熔剂和良好的防污性能分离油水乳液。在该研究中,通过静电组件在H-PPS膜上构建了固有粗糙的TiO2层以改善表面亲水化。 TiO2层的引入增加了润湿选择性并降低了油粘附,这使得能够有效地治疗水包油乳液(效率> 98%)。最重要的是,在掺入TiO 2层后的水下临界油入侵压力几乎加倍,这使得膜能够承受加压过滤,实现类似于4000L m(-2)H(-1)的高通量。这比报告的H-PPS的通量大超过2个数量级。此外,TiO 2 @ H-PPS膜在强酸和强碱中分离油水乳液的长期稳定性,显示出对强腐蚀性乳液的有希望的前景。

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