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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Microfiltration performance of electrospun nanofiber membranes with varied fiber diameters and different membrane porosities and thicknesses
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Microfiltration performance of electrospun nanofiber membranes with varied fiber diameters and different membrane porosities and thicknesses

机译:电纺纳米纤维膜具有不同纤维直径的微滤性能和不同膜孔隙孔隙率和厚度

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Electrospun nanofiber membranes (with varied fiber diameters and different membrane porosities and thicknesses) have been explored as innovative microfiltration media for the highly efficient and cost-effective removal of contaminations with particle sizes of 0.2 mm (even 0.1 mm) from water. For the first time, the membrane porosity has been judiciously adjusted/controlled by a facile hot-pressing method; and the relationships between membrane properties and microfiltration performances have been systematically investigated. Upon the hot-pressing process, the membrane porosity could be significantly decreased from similar to 86% to as low as similar to 34%, further leading to the substantial increase of rejection fraction from 0% to similar to 100% for 0.2 mm particles; moreover, some of these membranes (consisting of small diameter nanofibers) that were hot-pressed with relatively high pressure could even reject all of 0.1 mm particles. As compared to conventional microfiltration media, these membranes exhibited significantly higher flux values and substantially lower degrees of fouling without distinguishably sacrificing particle rejection fractions. For example, the rejection fraction and permeate flux value of one membrane (fiber diameters: similar to 150-250 nm, membrane porosity: similar to 40%) were similar to 99.3% and similar to 71.2.L.h(-1).m(-2).psi(-1) at 13 mL volume fed, respectively, indicating that electrospun nanofiber membranes might be highly promising for microfiltration applications (particularly water purification). (C) 2017 Elsevier Ltd. All rights reserved.
机译:Electromun纳米纤维膜(具有变化的纤维直径和不同的膜孔隙孔和厚度)被探索为创新的微滤介质,用于高效且经济高效地除去粒径为0.2mm(甚至0.1mm)的污染物。首次首次通过轻度热压方法明智地调节/控制膜孔隙率;并系统地研究了膜特性和微滤性能之间的关系。在热压过程中,膜孔隙率可能显着降低至86%,与34%相似,进一步导致抑制馏分从0%的抑制分数增加到0.2mm颗粒的100%;此外,其中一些具有相对高压的热压的这些膜(由小直径纳米纤维组成)甚至可以拒绝所有0.1mm的颗粒。与传统的微滤介质相比,这些膜表现出显着更高的助焊剂值,并且在不明确地牺牲颗粒排斥级分的情况下结垢显着更高。例如,一种膜的排斥分数和渗透物通量值(纤维直径:类似于150-250nm,膜孔隙率:与40%相似)类似于99.3%,类似于71.2.lH(-1).m( -2).psi(-1)分别在13ml体积下喂食,表明电纺纳米纤维膜可能对微滤应用(特别是水净化)的高度承诺。 (c)2017 Elsevier Ltd.保留所有权利。

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