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Microbial indicators and pathogens: Removal, relationships and predictive capabilities in water reclamation facilities

机译:微生物指标和病原体:再生水设施的去除,关系和预测能力

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Four water reclamation facilities in north-eastern Spain were monitored over 2 years to determine the occurrence and concentrations of a set of microbial indicators (total coli-forms, Escherichia coli, enterococci, spores of sulphite reducing clostridia, somatic coli-phages, F-specific RNA phages, phages infecting Bacteroides fragilis strain RYC2056 and phages infecting Bacteroides tethaiotaomicron strain GA-17), and two selected pathogens (cytopathogenic enteroviruses and viable Cryptosporidium oocysts). The indicator (survival) and index (presence) functions of the various indicators tested were evaluated through the wastewater treatments. The inactivation pattern of all groups of bacteriophages tested was closer to the inactivation of enteroviruses than to the inactivation of the conventional bacterial indicators tested. The inactivation of sulfite reducing clostridia spores and bacteriophages more closely approximates the reduction of viable Cryptosporidium than do the conventional bacterial indicators. We observed neither index functions nor a predictive relationship between any of microbial indicators and viable Cryptosporidium oocysts. In contrast, several regression models (r > 0.6) and discriminant functions (67-88% well classified samples) based mostly on numbers of bacteriophages were able to predict both the presence and concentrations of enteroviruses. A combination of both bacterial and bacteriophage indicators seem to be the best choice for ensuring the microbial quality of reclaimed water.
机译:在两年内对西班牙东北部的四个水回收设施进行了监测,以确定一组微生物指标的发生和浓度(总的大肠杆菌形式,大肠杆菌,肠球菌,亚硫酸盐还原梭状芽孢杆菌的孢子,体细胞噬菌体,F-特定的RNA噬菌体,感染脆弱拟杆菌的菌株RYC2056的噬菌体和感染拟杆菌假单胞菌GA-17的噬菌体,以及两个选定的病原体(细胞致病性肠病毒和活的隐孢子虫卵囊)。通过废水处理评估了所测试的各种指标的指标(生存)和指标(存在)功能。所测试的所有噬菌体的灭活模式更接近于肠病毒的灭活,而不是与所测试的常规细菌指示剂的灭活。与传统的细菌指示剂相比,亚硫酸盐还原梭菌孢子和噬菌体的失活更接近可行隐孢子虫的降低。我们既没有观察到指标功能,也没有观察到任何微生物指标与隐孢子虫卵囊之间的预测关系。相反,主要基于噬菌体数目的几种回归模型(r> 0.6)和判别函数(67-88%分类良好的样本)能够预测肠病毒的存在和浓度。细菌指标和噬菌体指标的组合似乎是确保再生水微生物质量的最佳选择。

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