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首页> 外文期刊>Separation and Purification Technology >In situ synthesizing silver nanoparticels by bio-derived gallic acid to enhance antimicrobial performance of PVDF membrane
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In situ synthesizing silver nanoparticels by bio-derived gallic acid to enhance antimicrobial performance of PVDF membrane

机译:原位通过生物衍生的Gallic酸合成银纳米颗粒,提高PVDF膜的抗微生物性能

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摘要

Modifying membranes with nanoparticles is a promising approach to mitigate biofouling in membrane preparation processes. However, high costs of the modification agents limit the practical applications of this approach. In this work, we developed a cost-effective and ecofriendly method to provide polyvinylidene fluoride membrane with a strong antimicrobial activity by loading silver nanoparticles (AgNPs). In this approach, gallic acid (GA) was used as a capturing and reducing agent to in situ synthesize AgNPs on membrane surface. The resulting AgNPs-functionalized membrane exhibited a 3.5-fold higher pure water flux and enhanced antifouling capacity compared to the control membrane. Specifically, AgNPs endowed the membrane a compelling antimicrobial activity on both Gram-positive and Gram-negative bacteria, evidenced by diffusion inhibition zone and bacterial proliferation test results. More importantly, pomegranate peel extracts rich in GA was effectively used in such a membrane functionalization approach. Taken together, this work demonstrates the robust in situ fabrication of antimicrobial AgNPs-functionalized membranes through bio-derived GA and provides a promising alternative for their potential practical applications.
机译:用纳米颗粒改性膜是一种有望的方法,可以减轻膜制备方法的生物污染。然而,改进剂的高成本限制了这种方法的实际应用。在这项工作中,我们开发了一种成本效益和生态的方法,通过装载银纳米颗粒(AgNP)提供具有强抗微生物活性的聚偏二氟乙烯膜。在这种方法中,用作捕获和还原剂在原位合成膜表面上的捕获和还原剂。与对照膜相比,所得AgNPS官能化膜的3.5倍较高的纯水通量和增强的防污容量。具体而言,AgNP赋予膜对革兰氏阳性和革兰氏阴性细菌的引人注目的抗微生物活性,通过扩散抑制区和细菌增殖试验结果证明。更重要的是,在这种膜官能化方法中有效地使用富含Ga的石榴剥皮提取物。在一起,这项工作通过生物衍生的GA表现出抗微生物AGNPS官能化膜的稳健性,并为其潜在的实际应用提供了有希望的替代品。

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