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Sewage flow control using an inflow controller with an electrical conductivity sensor in the outfall

机译:使用流入控制器和排污口中的电导率传感器进行污水流量控制

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The aim of this study was to investigate the effect of an inflow controller equipped with an electrical conductivity (EC) sensor on sewage flow during rainfall events. To investigate the relationship between the water quality characteristics and EC of sewage in the field, the EC sensor was used for real-time monitoring. The correlation coefficient (R-2) of CODmn vs. EC was more than 0.97. A reliable hourly maximum flow was calculated using the real-time monitoring data and a water level sensor. The capacity of regulating devices was evaluated during rainfall events by comparing the predicted flow with flow measured by field survey. When the gate was closed at an EC of less than 300 mu s/cm, the flow control rate of overflow for the total discharge was about 44% and 75% during the short-term rainfall (once a day) and long-term rainfall events (over 3 d), respectively, and the COD load control rate was about 16% and 61%, respectively. The flow control rate changed according to the EC control setting: the higher the EC control setting, the more the flow control rate increased. The flow control rate was about 40% an EC of 250 mu s/cm. However, it showed that there was some difference below the EC. The results indicated that controlling sewage inflow based on EC increased the removal efficiency of sewage treatment plants during rainfall events by reducing hydraulic load.
机译:这项研究的目的是调查在降雨事件期间配有电导率(EC)传感器的流入控制器对污水流量的影响。为了研究田间水质特征和污水EC之间的关系,使用EC传感器进行实时监测。 CODmn与EC的相关系数(R-2)大于0.97。使用实时监控数据和水位传感器计算出可靠的每小时最大流量。通过将预测流量与现场调查测得的流量进行比较,评估了降雨事件发生期间调节装置的能力。当闸门以小于300μs / cm的EC关闭时,在短期降雨(一天一次)和长期降雨期间,总排放的溢流流量控制率分别约为44%和75%。事件(超过3天),COD负荷控制率分别约为16%和61%。流量控制速率根据EC控制设置而变化:EC控制设置越高,流量控制速率增加的越多。流量控制率约为250%s / cm的EC的40%。但是,这表明在欧共体之下存在一些差异。结果表明,基于EC的污水入流控制可通过减少水力负荷来提高降雨过程中污水处理厂的去除效率。

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