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Enhancing the Anti-biofouling Properties of Polyethersulfone Membrane Using Chitosan-Powder Activated Carbon Composite

机译:壳聚糖-粉末活性炭复合材料增强聚醚砜膜的抗污垢性能

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摘要

Biofouling is one of the major challenges of membrane technology in water and wastewater treatments. In this work, we investigated the potential of chitosan/chitosan powder activated carbon (PAC) composite to reduce biofouling of membrane. Polyethersulfone (PES) membrane was modified with chitosan/chitosan-PAC composite and the performance of the modified membrane in river water treatment was evaluated. The effect of different concentration of polymer [(chitosan: 2.0% (w/v), 1.0% (w/v), 0.5% (w/v), 0.1% (w/v), and chitosan-PAC composite: 1.5% (w/v)-1.0 (w/v), 0.5% (w/v)-0.2% (w/v)] on the membrane performance was examined. The properties of the modified membrane such as roughness, morphology, surface functional groups wettability, swelling ration and contact angle were analyzed. The membrane water flux increased with increasing chitosan concentration from 0.1% (w/v) (7.36mL/cm(2)m) to 1.0% (w/v) (9.46mL/cm(2)m), but decreased at (2.0 w/v) (5.30mL/cm(2)m). However, the water flux for chitosan-PAC-modified membrane was about 6.86mL/cm(2)m, which was slightly lower than unmodified membrane (7.36mL/cm(2)m). The chitosan-modified membrane resulted in 28% reduction in total coliform bacteria while the chitosan-PAC-modified membrane reduced 45% of the total coliform bacteria. These results indicated that chitosan and chitosan-PAC composite could enhance the anti-microbial properties of PES membrane, which would prevent biofilm formation during water treatment.
机译:生物污染是膜技术在水和废水处理中的主要挑战之一。在这项工作中,我们研究了壳聚糖/壳聚糖粉末活性炭(PAC)复合材料减少膜生物结垢的潜力。壳聚糖/壳聚糖-PAC复合材料对聚醚砜(PES)膜进行了改性,并评价了改性膜在河水处理中的性能。不同浓度的聚合物[(壳聚糖:2.0%(w / v),1.0%(w / v),0.5%(w / v),0.1%(w / v)和壳聚糖-PAC复合材料:1.5)的影响检查膜性能的%(w / v)-1.0(w / v),0.5%(w / v)-0.2%(w / v)],改性膜的性质,例如粗糙度,形态,表面对官能团的润湿性,溶胀率和接触角进行了分析,膜水通量随着壳聚糖浓度的增加而从0.1%(w / v)(7.36mL / cm(2)m)增加到1.0%(w / v)(9.46mL) / cm(2)m),但在(2.0 w / v)(5.30mL / cm(2)m)时降低;但是,壳聚糖-PAC改性膜的水通量约为6.86mL / cm(2)m ,略低于未修饰的膜(7.36mL / cm(2)m)。壳聚糖修饰的膜导致大肠菌群总数减少28%,而壳聚糖-PAC修饰的膜减少大肠菌群总数的45%。这些结果表明,壳聚糖和壳聚糖-PAC复合材料可以增强PES m的抗菌性能。防止在水处理过程中形成生物膜。

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