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Synergistic inactivation of Cryptosporidium parvum using ozone followed by free chlorine in natural water

机译:臭氧后天然水中游离氯协同杀灭小隐孢子虫

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The synergistic effect of sequential exposure to ozone followed by free chlorine on inactivation of Cryptosporidium parvum oocysts suspended in natural waters was studied in bench-scale batch reactors. Animal infectivity using neonatal CD-1 mice was used to measure oocyst inactivation. The synergistic effect measured in two alkaline (pH 8.1) natural waters was statistically significant but was considerably smaller than previously reported in buffered de-ionized water at pH 6.0. Temperature, ozone primary treatment level, and water type did not have measurable impacts on the synergistic effect. Efforts to increase the synergistic effect by reducing the pH from 8 to 6 by acid addition were unsuccessful. In the two low alkalinity (pH 6.0) natural waters tested, the measured synergistic effect was greater than in the alkaline waters, but was still less than that measured previously in buffered de-ionized water. It was concluded that the synergistic effect reduction in the natural waters tested was due in part to alkalinity and in part to other unidentified water quality characteristics. Sequential treatment with ozone followed by free chlorine may only be a feasible strategy for achieving synergistic C. parvum inactivation credit for water treatment facilities with natural waters having a low pH (near 6.0).
机译:在台式规模的分批反应器中研究了先后暴露于臭氧,接着释放游离氯对悬浮在天然水中的小隐隐孢子虫卵囊的失活的协同作用。使用新生CD-1小鼠的动物感染性用于测量卵囊失活。在两个碱性(pH 8.1)天然水中测得的协同作用具有统计学意义,但比先前在pH 6.0的缓冲去离子水中报道的协同作用小得多。温度,臭氧一级处理水平和水类型对协同效应没有可测量的影响。通过添加酸将pH从8降低到6来增加协同作用的努力没有成功。在测试的两种低碱度(pH 6.0)天然水中,所测得的协同作用大于碱性水中,但仍小于先前在缓冲去离子水中测得的协同作用。结论是,所测试的天然水中协同效应的降低部分归因于碱度,部分归因于其他未确定的水质特征。依次进行臭氧处理和游离氯的臭氧处理可能仅是一种可行的策略,该方法可实现具有低pH值(接近6.0)的天然水的水处理设施的协同小球藻灭活作用。

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