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首页> 外文期刊>Separation and Purification Technology >A novel high-durability oxidized poly (arylene sulfide sulfone) electrospun nanofibrous membrane for direct water-oil separation
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A novel high-durability oxidized poly (arylene sulfide sulfone) electrospun nanofibrous membrane for direct water-oil separation

机译:一种新型高耐久性氧化聚(亚芳基硫化物砜)电纺纳米纤维膜,用于直接水 - 油分离

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摘要

Water-oil separation complicated fabrication procedures and low stability seriously hindered the separation membrane from using in the practical water-oil application. Here we present a novel oxidized poly (arylene sulfide sulfone) (O-PASS) nanofibrous membrane using simple electrospinning technology, which has high durability and is directly applied to water-oil separation. The results of scanning electron microscopy and capillary flow porometer show that the fiber diameters of membranes were 378 +/- 37 nm and the average pore sizes were 1.81 +/- 0.22 i.irn with narrow distribution. Furthermore, excellent hydrophobicity (139.6(.)) oleophilic (0(.)), good oil adsorption capacity (1 5 0), and high flux (623.1 L.m(-2).h(-1)) render O-PASS nanofibrous membrane highly effective separation of water-oil. The separation efficiency of the O-PASS nanofibrous membrane is 99%. More importantly, this membrane could endure extremely harsh environments, such as strong acid (aqua regia), strong alkali (0.1 M sodium hydroxide solution), strong polarity solvent (1, 3-Dimethyl-2-imidazolidinone) for 90 days and high temperature (120 degrees C) for 12 h. Finally, the O-PASS nanofibrous membrane exhibits good mechanical property reaching 5.51 MPa. This study provided good chemical resistant and hydrophobic membrane that could be directly used in harsh environment for efficacious water-oil separation.
机译:水油分离复杂的制造程序和低稳定性严重阻碍了在实际水油应用中的分离膜。在这里,我们用简单的静电纺丝技术提出了一种新的氧化聚(亚芳基砜)(O-PACS)纳米纤维膜,其具有高耐久性,并且直接应用于水 - 油分离。扫描电子显微镜和毛细血管流量比计的结果表明,膜的纤维直径为378 +/- 37nm,平均孔径为1.81 +/- 0.22 i.irn,分布窄。此外,优异的疏水性(139.6(。膜高效分离水 - 油。 O-PASS纳米纤维膜的分离效率为99%。更重要的是,该膜可以忍受极其恶劣的环境,例如强酸(Aqua Regia),强碱(0.1M氢氧化钠溶液),强极性溶剂(1,3-二甲基-2-咪唑烷酮),90天和高温(120℃)12小时。最后,O-PACS纳米纤维膜表现出良好的机械性能达到5.51MPa。本研究提供了良好的耐化学性和疏水膜,可直接用于恶劣环境,以获得有效的水 - 油分离。

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