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Point-of-Use Disinfection of Household Drinking Water with Copper/Zinc Ions and Oxide Nanoparticles: a Proof-of-Concept Lab Study

机译:使用铜/锌离子和氧化物纳米粒子的家用饮用水的使用点:概念验证实验室研究

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Water in households of the developing world is often microbially unsafe and the cause of waterborne disease. Therefore, simple, effective and convenient treatment methods are needed to disinfect such household water. Disinfecting water with antimicrobial metals as ions or nanoparticles has been inadequately studied for this application. This research quantified the disinfecting efficacy of low (0.2 mg/L) and high (2 mg/l) doses of combinations of ionic copper and zinc and copper and zinc oxide nanoparticles in model buffered water that are considered safe for consumption. Kinetics of disinfection were quantified for three test microorganisms: Bacillus cereus spores, Escherichia coli, and MS-2 coliphage in pH 7.3, 0.04M HEPES-buffered water with and without 10 mg/L added natural aquatic organic matter (NOM); concentrations of culturable microorganisms were assayed at 0, 20, 60, 180, and 360 minutes of contact time. Disinfection conditions that could meet the World Health Organization (WHO) “protective” performance guideline levels of 2 log10 bacteria and parasite reduction (for E. coli and spores of B. cereus, respectively) and 3 log10 virus reduction (for MS-2 coliphage) within 12 hours were investigated for kinetic modeling. Several test conditions of metal form (ion or nanoparticle oxide) and concentrations were efficacious against virus, bacteria and protozoan parasite surrogates within the 12 hour contact time specified. Both copper and zinc ions and nanoparticles oxides were effective in achieving microbial reduction targets in buffered test water lacking added NOM. None of the test conditions were effective in meeting microbial reduction targets in test water lacking added NOM. Additional studies are needed to better document the effect of NOM and other water quality parameters (such as turbidity, pH and chemical behavior of dissolved solids) on the ability of these metal ions and nanoparticles to disinfect drinking water.
机译:发展中国家家庭的水往往是微生物不安全和水性疾病的原因。因此,需要简单,有效和方便的处理方法来消毒这种家庭用水。在本申请中对离子或纳米颗粒具有抗微生物金属的用抗微生物金属消毒。该研究量化了模型缓冲水中的离子铜和锌和铜和铜和氧化锌纳米颗粒的低(0.2mg / L)和高(2mg / L)剂量的消毒效果,其在模型缓冲水中被认为是安全的消费。为三种试验微生物量化消毒剂的动力学:芽孢杆菌孢子,大肠杆菌和在pH 7.3中的MS-2 Coliphage,0.04M HEPES缓冲水,没有10mg / L增加天然水生物有机物(NOM);培养微生物的浓度在0,20,60,180和360分钟的接触时间测定。消毒条件可以满足世界卫生组织(WHO)“保护性”绩效指南水平的2个log10细菌和寄生虫(分别为B.Ceries的大肠杆菌和孢子)和3 log10病毒减少(用于MS-2 Coliphage )针对动力学建模研究了12小时内。金属形式的几种测试条件(离子或纳米颗粒氧化物)和浓度是有效针对病毒,细菌和原生动物寄生虫在指定的12小时接触时间内替代。铜和锌离子和纳米颗粒氧化物都有效地在缺乏添加NOM的缓冲试验水中实现微生物还原靶标。在缺乏添加NOM的测试水中,均未有效地在满足微生物还原靶标中有效。需要额外的研究来更好地记录NOM和其他水质参数(如浊度,pH和溶解固体的化学行为)对这些金属离子和纳米颗粒的能力进行消毒饮用水的能力。

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