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Biomimetic and Superwettable Fibrous Skins for Highly Efficient Separation of Oil-in-Water Emulsions

机译:用于高效分离油包水乳液的仿生和超温纤维皮

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Developing a feasible and efficient separation membrane for the purification of highly emulsified oily wastewater is of significance but challenging due to the critical limitations of low flux and serious membrane fouling. Herein, a biomimetic and superwettable nanofibrous skin on an electrospun fibrous membrane via a facile strategy of synchronous electrospraying and electrospinning is created. The obtained nanofibrous skin possesses a lotus-leaf-like micro/nanostructured surface with intriguing superhydrophilicity and underwater superoleophobicity, which are due to the synergistic effect of the hierarchical roughness and hydrophilic polymeric matrix. The ultrathin, high porosity, sub-micrometer porous skin layer results in the composite nanofibrous membranes exhibiting superior performances for separating both highly emulsified surfactant-free and surfactant-stabilized oil-in-water emulsions. An ultrahigh permeation flux of up to 5152 L m-2 h-1 with a separation efficiency of >99.93% is obtained solely under the driving of gravity (=1 kPa), which was one order of magnitude higher than that of conventional filtration membranes with similar separation properties, showing significant applicability for energy-saving filtration. Moreover, with the advantage of an excellent antioil fouling property, the membrane exhibits robust reusability for long-term separation, which is promising for large-scale oily wastewater remediation.
机译:为纯化高乳化油性废水纯化的可行和有效的分离膜具有重要性,但由于低通量和严重膜污垢的临界局限性,挑战。在此,产生通过同步电喷雾和静电纺丝的容易策略的电纺纤维膜上的仿真和超薄纳米纤维皮肤。所得纳米纤维皮肤具有莲花状微/纳米结构表面,具有有兴趣的超级水分和水下脂肪性,这是由于等级粗糙度和亲水性聚合物基质的协同效应。超薄,高孔隙率,亚微米多孔皮肤层导致复合纳米纤维膜,其表现出优异的性能,用于分离高乳化的表面活性剂和表面活性剂稳定的油水乳液。具有> 99.93%的分离效率的超高渗透通量> 99.93%的分离效率,仅在重力的驱动(= 1kPa)的驱动下,这是比常规过滤膜高一种数量级具有类似的分离性能,显示出可高度适用性的节能过滤。此外,随着优异的抗血清污垢性能的优点,膜对长期分离具有鲁棒的可重用性,这对大规模油性废水修复有望。

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