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Wastewater reuse in on-site wastewater treatment: bacteria and virus movement in unsaturated flow through sand filter

机译:现场废水处理中的废水回用:细菌和病毒在不饱和流中通过砂滤器的运动

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In on-site wastewater treatment plants, effluents are pre-treated by septic tank and treated by soil infiltration or sand filtration systems, with unsaturated flow conditions. These systems remove efficiently carbon, nitrogen and suspended solids. But for microbial pollution, the treatment efficiency depends on the hydrodynamic behaviour and filtering media characteristics. Contamination of superficial water and groundwater due to pathogenic viruses and pathogenic bacteria is responsible for many diseases. The objective of this study is to approach the mechanisms and operating conditions to control bacteria and virus release in the environment. Experiments were carried out on reactors of different length packed with sand. Hydraulic load of 90 cm.d(-1) with a pulse periodic flow was used. The influence of chemical composition of the solution on the treatment efficiency has also been studied. For the first time, the residence time distribution (RTD) has been studied using a conservative tracer (KI), to determine the main hydrodynamic parameters. For the second time, the RTD with bacterial and viral tracers (E coli, bacteriophage MS2) was applied, with the aim to define microbial behaviour in filtering media, including adsorption and filtration phenomena. This work allowed us to determine retardation factors according to the hydraulic loads and chemical composition. [References: 17]
机译:在现场废水处理厂中,废水通过化粪池进行预处理,并通过土壤渗透或沙滤系统进行处理,且流量不饱和。这些系统可有效去除碳,氮和悬浮固体。但是对于微生物污染,处理效率取决于流体动力学行为和过滤介质的特性。致病性病毒和致病性细菌对地表水和地下水的污染是造成许多疾病的原因。这项研究的目的是探讨控制环境中细菌和病毒释放的机制和操作条件。在装有沙子的不同长度的反应器上进行了实验。使用具有脉冲周期性流量的90 cm.d(-1)的液压负载。还研究了溶液的化学组成对处理效率的影响。首次使用保守示踪剂(KI)研究了停留时间分布(RTD),以确定主要的流体动力学参数。第二次应用带有细菌和病毒示踪剂(大肠杆菌,噬菌体MS2)的RTD,目的是定义过滤介质中的微生物行为,包括吸附和过滤现象。这项工作使我们能够根据水力负荷和化学成分确定延迟因子。 [参考:17]

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