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首页> 外文期刊>Water Research >Solar water disinfection (SODIS) of Escherichia coli, Enterococcus spp., and MS2 coliphage: Effects of additives and alternative container materials
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Solar water disinfection (SODIS) of Escherichia coli, Enterococcus spp., and MS2 coliphage: Effects of additives and alternative container materials

机译:大肠杆菌,肠球菌和MS2噬菌体的太阳能消毒(SODIS):添加剂和替代性容器材料的影响

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The use of alternative container materials and added oxidants accelerated the inactivation of MS2 coliphage and Escherichia coli and Enterococcus spp. bacteria during solar water disinfection (SODIS) trials. Specifically, bottles made from polypropylene copolymer (PPCO), a partially UVB-transparent plastic, resulted in three-log inactivation of these organisms in approximately half the time required for disinfection in bottles made from PET, polycarbonate, or Tritan~®, which absorb most UVB light. Furthermore, the addition of 125 mg/L sodium percarbonate in combination with either citric acid or copper plus ascorbate tended to accelerate inactivation by factors of 1.4-19. Finally, it was observed that the inactivation of E. coli and enterococci derived from local wastewater was far slower than the inactivation of laboratory-cultured E. coli and Enterococcus spp., while the inactivation of MS2 was slowest of all. These results highlight the importance of UVB in SODIS under certain conditions, and also the greater sunlight resistance of some viruses and of bacteria of fecal origin, as compared to the laboratory-cultured bacteria commonly used to model their inactivation. Furthermore, this study illustrates promising new avenues for accelerating the inactivation of bacteria and viruses by solar disinfection.
机译:使用替代性容器材料和添加的氧化剂加速了MS2噬菌体,大肠杆菌和肠球菌的灭活。太阳能水消毒(SODIS)试验中的细菌。具体来说,聚丙烯共聚物(PPCO)(一种对UVB透明的塑料)制成的瓶子使这些生物在三个对数级失活,而用PET,聚碳酸酯或Tritan®制成的瓶子在消毒后所需的消毒时间大约为一半,它们可以吸收大多数UVB灯。此外,加入125 mg / L过碳酸钠与柠檬酸或铜加抗坏血酸盐的组合往往会以1.4-19的倍数加速失活。最后,据观察,大肠杆菌和源自本地废水的肠球菌的灭活比实验室培养的大肠杆菌和肠球菌的灭活慢得多,而MS2的灭活最慢。这些结果突出了在某些条件下UVB在SODIS中的重要性,以及与通常用于模拟其灭活的实验室培养细菌相比,某些病毒和粪便来源的细菌具有更强的耐日光性。此外,这项研究说明了有望通过太阳消毒来加速细菌和病毒灭活的新途径。

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