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Selective grafting of morphologically modified poly(vinylidene fluoride) ultrafiltration membrane by poly(acrylic acid) for inducing antifouling property

机译:聚(丙烯酸)对形态改性聚(偏二氟乙烯)超滤膜的选择性接枝诱导防沟性能

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Fouling propensity of a membrane depends on water wetting property and interaction of foulants with the surface. Surface initiated polymerization usually leads to the grafting of main membrane forming polymer. Herein, we report a process for the selective grafting of blend component of poly(vinylidene fluoride) (PVDF) membrane, and the effect of morphological feature on the water wetting behaviour and antifouling property. Polymerization of acrylic acid (AA) in contact with a morphologically modified blend membrane of PVDF leads to selective grafting of blend component by PAA chains. Polymerization causes formation of graft copolymer throughout the membrane matrix. Base membrane morphology and grafting time profoundly influence surface roughness, permeate flux and water wetting behaviour of the membranes. Grafting time window of 2-4 h produces membranes with high oil rejection (99.5%), high flux recovery ratio (95%) and low flux reduction (30-36%) during recovery of water from surfactant free and surfactant stabilized oil-in-water emulsions. The surface roughness and morphology of the base and grafted membranes are important factors to induce hydrophilic property, which in turn reduces the fouling propensity of the membranes. This work provides an insight regarding the influence of surface roughness on the water wetting behaviour and antifouling property of the membranes.
机译:膜的污垢倾向取决于水润湿性和污垢与表面的相互作用。表面引发的聚合通常导致主膜形成聚合物的接枝。在此,我们报告了聚(偏二氟乙烯)(PVDF)膜的共混组分的选择性接枝的方法,以及形态特征对水润湿行为和防污性的影响。丙烯酸(AA)与PVDF的形态学改性混合膜接触的聚合导致PAA链的共混组分接枝。聚合导致在整个膜基质中形成接枝共聚物。基础膜形态和接枝时间深刻地影响膜的表面粗糙度,渗透磁通量和水润湿行为。 2-4小时的接枝时间窗产生具有高油排斥(> 99.5%),高通量回收率(> 95%)和低通量减少(30-36%),从表面活性剂自由和表面活性剂稳定的油回收水中 - 水乳液。碱和接枝膜的表面粗糙度和形态是诱导亲水性的重要因素,这反过来减少了膜的污垢倾向。这项工作提供了关于表面粗糙度对膜的水润湿行为和防污性的影响的洞察力。

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