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A novel gravity-driven nanofibrous membrane for point-of-use water disinfection: polydopamine-induced in situ silver incorporation

机译:一种用于使用点水消毒的新型重力驱动纳米纤维膜:聚多巴胺诱导的原位银掺入

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摘要

We report a facile method for preparing silver-loaded membranes for point-of-use disinfection and disaster relief applications. A bio-inspired material, polydopamine, was coated onto a highly porous nanofibrous polyacrylonitrile substrate. We then take advantage of the redox properties of polydopamine to form silver nanoparticles in situ. These nanoparticles were uniformly distributed on the surface of nanofibers with no apparent agglomeration at a silver loading up to 4.36 wt.% (cPAN-Ag1.5). The silver-incorporated membrane cPAN-Ag1.5 achieved a high pure water flux of 130 Lm−2 h−1 at 10-cm water head, demonstrating the feasibility of energy-efficient gravity-driven filtration and eliminating the need for electrical power. The strong anti-bacterial activity and high physical rejection of the membrane led to an excellent disinfection power, with no viable bacterial cells detected in its permeate water. The membrane exhibited >7 log reduction for E. coli and >6 log reduction for B. subtilis. The strategy reported here provides an efficient and green route to synthesize point-of-use membranes. Combining their excellent permeability and disinfection effectiveness, these membranes offer an ideal solution to water supply in disaster-affected areas.
机译:我们报告了一种方便的方法,该方法可为使用点消毒和救灾应用准备载银膜。将具有生物启发性的材料聚多巴胺涂覆到高度多孔的纳米纤维聚丙烯腈基质上。然后,我们利用聚多巴胺的氧化还原特性在原位形成银纳米颗粒。这些纳米颗粒均匀分布在纳米纤维的表面,在银负载量高达4.36 wt。%(cPAN-Ag1.5)时没有明显的团聚。掺银膜cPAN-Ag1.5在10厘米水头处实现了130 Lm-2 h-1的高纯水通量,证明了节能型重力驱动过滤的可行性,并消除了对电力的需求。该膜具有很强的抗菌活性和较高的物理排斥性,因此具有出色的消毒能力,在其渗透水中未检测到活细菌细胞。对于大肠杆菌,该膜表现出> 7 log的减少,对于枯草芽孢杆菌,该膜表现出> 6的log减少。本文报道的策略为合成使用点膜提供了有效且绿色的途径。这些膜结合了优异的渗透性和消毒效果,为受灾地区的供水提供了理想的解决方案。

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