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首页> 外文期刊>Water Research >Mechanically enhanced PES electrospun nanofiber membranes (ENMs) for microfiltration: The effects of ENM properties on membrane performance
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Mechanically enhanced PES electrospun nanofiber membranes (ENMs) for microfiltration: The effects of ENM properties on membrane performance

机译:机械增强的PES电纺纳米纤维膜(ENM)用于微滤:ENM性能对膜性能的影响

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The application of electrospun nanofiber membranes (ENMs) as microfilters for the process of water purification requires the substrate to possess suitable strength, permeability, and a smooth surface. Therefore, the fiber homogeneity, inter-fiber adhesion, and surface roughness of the ENMs must be carefully controlled. Concurrently, an understanding of the ENMs' rejection mechanism for contaminants is necessary for the effective application of ENMs. In this study, we demonstrate the fabrication of polyethersulfone (PES) ENMs, which are useful for water purification as water treatment membranes. An optimum fabrication condition that can significantly improve the mechanical property and surface roughness of the PES membrane is also illustrated. This technique induces the solvent remaining on the fiber's surface after the electrospinning process, and the mechanical properties and surface roughness of the membrane are improved by the solvent-induced fusion of the fiber. The fabricated PES ENMs also show higher clean water productivity. Additionally, we show that a particulate contaminant in water is mainly rejected on the ENM surface by using a water filtration test. Based on our conclusions, we suggest the appropriate ENM regeneration method and confirm that the fabricated ENMs show excellent regeneration ability. (C) 2016 Published by Elsevier Ltd.
机译:将电纺纳米纤维膜(ENM)用作水净化过程的微滤器时,要求基材具有合适的强度,渗透性和光滑的表面。因此,必须仔细控制ENM的纤维均匀性,纤维间粘附力和表面粗糙度。同时,对于ENM的有效应用,必须了解ENM对污染物的排斥机制。在这项研究中,我们证明了聚醚砜(PES)ENM的制备,可用于水净化作为水处理膜。还说明了可以显着改善PES膜的机械性能和表面粗糙度的最佳制造条件。该技术可在电纺丝过程中使溶剂残留在纤维表面,并通过溶剂诱导的纤维熔合来改善膜的机械性能和表面粗糙度。制成的PES ENM还显示出更高的净水生产率。此外,我们显示,通过使用水过滤测试,水中的颗粒污染物主要被ENM表面排除。根据我们的结论,我们提出了合适的ENM再生方法,并确认所制造的ENM具有出色的再生能力。 (C)2016由Elsevier Ltd.出版

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