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The effects of material loading and flow rate on the disinfection of pathogenic microorganisms using cation resin-silver nanoparticle filter system

机译:使用阳离子树脂 - 银纳米粒子过滤系统对致病微生物消毒的物质载荷和流速对致病微生物消毒的影响

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Waterborne diseases have a negative impact on public health in instances where the available drinking water is of a poor quality. Decentralised systems are needed to provide safe drinking water to rural communities. Therefore, the present study aimed to develop and investigate the point-of-use (POU) water treatment filter packed with resin-coated silver nanoparticles. The filter performance was evaluated by investigating the effects of various bed masses (10 g, 15 g, 20 g) and flow rates (2 mL/min, 5 mL/min, 10 mL/min) by means of breakthrough curves for the removal efficiency of presumptive Escherichia coli, Shigella dysenteriae, Salmonella typhimurium and Vibrio cholerae from spiked groundwater samples. The results revealed that, as the bed mass increases the breakthrough time also increases with regards to all targeted microorganisms. However, when the flow rate increases the breakthrough time decreased. These tests demonstrated that resin-coated silver nanoparticle can be an effective material in removing all targeted microorganisms at 100% removal efficiency before breakthrough points are achieved. Moreover the filter system demonstrated that it is capable of producing 15 L/day of treated water at an operating condition of 10 mL/min flow rate and 15 g bed mass, which is sufficient to provide for seven individuals in the household if they consume 2 L/person/day for drinking purpose. Therefore, the bed mass of the filter system should be increased in order for it to produce sufficient water that will conform to the daily needs of an individual. (C) 2016 Elsevier Ltd. All rights reserved.
机译:水性疾病对可用饮用水质量差的情况下对公共卫生产生负面影响。需要分散的系统来为农村社区提供安全的饮用水。因此,本研究旨在开发和研究与树脂涂覆的银纳米颗粒包装的使用点(POU)水处理过滤器。通过通过突破曲线研究各种床块(10g,15g,20g)和流速(2ml / min,5ml / min,10ml / min)的突破性曲线来评估过滤器性能推定大肠杆菌的效率,Shigella痢疾,Salmonella Typhimurium和Spiked地下水样品的血管池。结果表明,随着床质量增加的突破时间也增加了所有靶向微生物。然而,当流量增加时,突破时间减少。这些试验证明,树脂涂覆的银纳米粒子可以是在实现突破点之前在100%的去除效率下除去所有靶向微生物的有效材料。此外,过滤系统证明它能够以10mL / min流速和15g床块的操作条件下生产15L /天处理的水,这足以提供家庭中的七个个体如果它们消耗2 l /饮酒的人/日。因此,应增加过滤系统的床质量,以便产生足够的水,这将符合个体的日常需求。 (c)2016 Elsevier Ltd.保留所有权利。

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