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Development of Polysulfone Membrane via Vapor-Induced Phase Separation for Oil/Water Emulsion Filtration

机译:通过蒸气诱导的水/水乳液过滤分离聚砜膜的研制

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摘要

The discharge of improperly treated oil/water emulsion by industries imposes detrimental effects on human health and the environment. The membrane process is a promising technology for oil/water emulsion treatment. However, it faces the challenge of being maintaining due to membrane fouling. It occurs as a result of the strong interaction between the hydrophobic oil droplets and the hydrophobic membrane surface. This issue has attracted research interest in developing the membrane material that possesses high hydraulic and fouling resistance performances. This research explores the vapor-induced phase separation (VIPS) method for the fabrication of a hydrophilic polysulfone (PSF) membrane with the presence of polyethylene glycol (PEG) as the additive for the treatment of oil/water emulsion. Results show that the slow nonsolvent intake in VIPS greatly influences the resulting membrane structure that allows the higher retention of the additive within the membrane matrix. By extending the exposure time of the cast film under humid air, both surface chemistry and morphology of the resulting membrane can be enhanced. By extending the exposure time from 0 to 60 s, the water contact angle decreases from 70.28 ± 0.61° to 57.72 ± 0.61°, and the clean water permeability increases from 328.70 ± 8.27 to 501.89 ± 8.92 (L·m−2·h−1·bar−1). Moreover, the oil rejection also improves from 85.06 ± 1.6 to 98.48 ± 1.2%. The membrane structure was transformed from a porous top layer with a finger-like macrovoid sub-structure to a relatively thick top layer with a sponge-like macrovoid-free sub-structure. Overall results demonstrate the potential of the VIPS process to enhance both surface chemistry and morphology of the PSF membrane.
机译:通过行业排出不当处理的油/水乳液对人类健康和环境产生了不利影响。膜过程是用于油/水乳剂处理的有希望的技术。然而,它面临着维持因膜污染的挑战。它由于疏水油滴与疏水膜表面之间的强相互作用而发生。该问题引起了开发具有高液压和污垢性能性能的膜材料的研究兴趣。该研究探讨了蒸汽诱导的相分离(VIPS)方法,用于制备亲水性聚砜(PSF)膜,作为聚乙二醇(PEG)作为用于处理油/水乳液的添加剂。结果表明,蒸汽中的慢性非olvent摄入量大地影响所得膜结构,其允许在膜基质内保持较高的添加剂。通过在潮湿空气下延伸铸膜的曝光时间,可以提高所得膜的表面化学和形态。通过将曝光时间从0延伸到60秒,水接触角度从70.28±0.61°减小到57.72±0.61°,并且清洁的水渗透率从328.70±8.27增加到501.89±8.92(L·M-2·H- 1·酒吧1)。此外,排水还改善了85.06±1.6至98.48±1.2%。将膜结构从多孔顶层用指状巨粒子结构转化到相对厚的顶层,其具有海绵状宏观偶联的子结构。总体结果证明了vips过程的潜力,以增强PSF膜的表面化学和形态。

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