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Cost-Effective Filter Materials Coated with Silver Nanoparticles for the Removal of Pathogenic Bacteria in Groundwater

机译:具有成本效益的银纳米颗粒过滤材料用于去除地下水中的病原细菌

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摘要

The contamination of groundwater sources by pathogenic bacteria poses a public health concern to communities who depend totally on this water supply. In the present study, potentially low-cost filter materials coated with silver nanoparticles were developed for the disinfection of groundwater. Silver nanoparticles were deposited on zeolite, sand, fibreglass, anion and cation resin substrates in various concentrations (0.01 mM, 0.03 mM, 0.05 mM and 0.1 mM) of AgNO3. These substrates were characterised by SEM, EDS, TEM, particle size distribution and XRD analyses. In the first phase, the five substrates coated with various concentrations of AgNO3 were tested against E. coli spiked in synthetic water to determine the best loading concentration that could remove pathogenic bacteria completely from test water. The results revealed that all filters were able to decrease the concentration of E. coli from synthetic water, with a higher removal efficiency achieved at 0.1 mM (21–100%) and a lower efficiency at 0.01 mM (7–50%) concentrations. The cation resin-silver nanoparticle filter was found to remove this pathogenic bacterium at the highest rate, namely 100%. In the second phase, only the best performing concentration of 0.1 mM was considered and tested against presumptive E. coli, S. typhimurium, S. dysenteriae and V. cholerae from groundwater. The results revealed the highest bacteria removal efficiency by the Ag/cation resin filter with complete (100%) removal of all targeted bacteria and the lowest by the Ag/zeolite filter with an 8% to 67% removal rate. This study therefore suggests that the filter system with Ag/cation resin substrate can be used as a potential alternative cost-effective filter for the disinfection of groundwater and production of safe drinking water.
机译:致病细菌对地下水源的污染给完全依赖供水的社区带来了公共卫生问题。在本研究中,开发了潜在廉价的,涂有银纳米颗粒的过滤材料来消毒地下水。银纳米颗粒以各种浓度(0.01 mM,0.03 mM,0.05 mM和0.1 mM)的AgNO3沉积在沸石,沙子,玻璃纤维,阴离子和阳离子树脂基底上。通过SEM,EDS,TEM,粒度分布和XRD分析对这些基质进行了表征。在第一阶段中,对五种涂覆有不同浓度AgNO3的基质进行了针对掺入合成水中的大肠杆菌的测试,以确定可以从测试水中完全去除病原细菌的最佳负载浓度。结果表明,所有过滤器均能够降低合成水中的大肠杆菌浓度,在0.1 mM(21-100%)的浓度下去除效率更高,而在0.01 mM(7-50%)的浓度下去除效率更低。发现阳离子树脂-银纳米颗粒过滤器以最高的比率,即100%,去除了这种病原细菌。在第二阶段中,仅考虑了表现最佳的浓度为0.1 mM,并针对地下水中的推测大肠杆菌,鼠伤寒沙门氏菌,痢疾链球菌和霍乱弧菌进行了测试。结果表明,用Ag /阳离子树脂过滤器去除所有目标细菌的效率最高(100%),而用Ag /沸石过滤器去除细菌的效率最低,达到8%至67%。因此,这项研究表明,具有Ag /阳离子树脂基质的过滤器系统可以用作潜在的替代成本效益型过滤器,用于地下水的消毒和安全饮用水的生产。

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