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Static Electricity Powered Copper Oxide Nanowire Microbicidal Electroporation for Water Disinfection

机译:静电供电的氧化铜纳米线杀菌电穿孔用于水消毒

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Safe water scarcity occurs mostly in developing regions that also suffer from energy shortages and infrastructure deficiencies. Low-cost and energy-efficient water disinfection methods have the potential to make great impacts on people in these regions. At the present time, most water disinfection methods being promoted to households in developing countries are aqueous chemical-reaction-based or filtration-based. Incorporating nanomaterials into these existing disinfection methods could improve the performance; however, the high cost of material synthesis and recovery as well as fouling and slow treatment speed is still limiting their application. Here, we demonstrate a novel flow device that enables fast water disinfection using one-dimensional copper oxide nanowire (CuONW) assisted electroporation powered by static electricity. Electroporation relies on a strong electric field to break down microorganism membranes and only consumes a very small amount of energy. Static electricity as the power source can be generated by an individual person's motion in a facile and low-cost manner, which ensures its application anywhere in the world. The CuONWs used were synthesized through a scalable one-step air oxidation of low-cost copper mesh. With a single filtration, we achieved complete disinfection of bacteria and viruses in both raw tap and lake water with a high flow rate of 3000 L/(h?m~2), equivalent to only 1 s of contact time. Copper leaching from the nanowire mesh was minimal.
机译:安全缺水主要发生在发展中地区,这些地区也遭受能源短缺和基础设施不足的困扰。低成本,高能效的水消毒方法有可能对这些地区的人们产生巨大影响。目前,在发展中国家推广到家庭的大多数水消毒方法是基于水化学反应或基于过滤的。将纳米材料结合到这些现有的消毒方法中可以提高性能。然而,材料合成和回收的高成本以及结垢和缓慢的处理速度仍然限制了它们的应用。在这里,我们演示了一种新颖的流量设备,该设备可以使用一维氧化铜纳米线(CuONW)辅助电穿孔通过静电驱动进行快速水消毒。电穿孔依赖于强电场来分解微生物膜,并且仅消耗非常少量的能量。静电作为电源可以通过个人的动作以便捷且低成本的方式生成,从而确保了其在世界任何地方的应用。所用的CuONW是通过可升级的低成本铜网一步式空气氧化合成的。通过一次过滤,我们就可以以3000 L /(h?m〜2)的高流速(仅相当于1 s的接触时间)完全净化自来水和湖水中的细菌和病毒。从纳米线网中浸出的铜最少。

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