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Preliminary Study on the Effect of Wastewater Storage in Septic Tank on E. coli Concentration in Summer

机译:夏季化粪池废水存储对大肠杆菌浓度影响的初步研究

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On-site wastewater treatment systems (OWTS) work by first storing the wastewater in a septic tank before releasing it to soils for treatment that is generally effective and sustainable. However, it is not clear how the abundance of E. coli changes during its passage through the tank. In this study, which was conducted under the UGA young Scholar Program in summer of 2010, we examined the change in wastewater quality parameters during the passage of the wastewater through the tank and after its release into soil. We collected wastewater samples at the inlet and outlet of an experimental septic tank in addition to obtaining water samples from lysimeters below trenches where the drainpipes were buried. We report that E. coli concentration was higher by 100-fold in the septic tank effluent than influent wastewater samples, indicating the growth of E. coli inside the tank under typical Georgian summer weather. This is contrary to the assumption that E. coli cells do not grow outside their host and suggests that the microbial load of the wastewater is potentially enhanced during its storage in the tank. Electrical conductivity, pH and nitrogen were similar between the influent and effluent wastewater samples. E. coli and total coliform concentrations were mainly below detection in lysimeter samples, indicating the effectiveness of the soil in treating the wastewater.
机译:现场废水处理系统(OWTS)的工作方式是,首先将废水存储在化粪池中,然后再将其释放到土壤中进行有效且可持续的处理。但是,尚不清楚大肠杆菌在通过水箱期间的丰度如何变化。在2010年夏季由UGA青年学者计划进行的这项研究中,我们检查了废水通过储罐期间以及释放到土壤中后废水质量参数的变化。我们从实验化粪池的入口和出口收集废水样品,此外还从掩埋排水管的沟渠下方的渗漏仪中获得水样品。我们报告说,化粪池出水中的大肠杆菌浓度比进水废水样品高100倍,这表明在典型的乔治亚夏季天气下,池中大肠杆菌的生长。这与大肠埃希菌细胞不在其宿主外生长并认为废水在罐中储存期间的微生物负荷有可能增加的假设相反。进水和出水废水样品之间的电导率,pH和氮相似。大肠杆菌和总大肠菌群的浓度主要低于溶渗仪样品中的检测值,表明土壤在处理废水中的有效性。

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