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温度作为替代示踪剂来确定污水处理厂的混合特性。

Temperature as an alternative tracer for the determination of the mixing characteristics in wastewater treatment plants.

机构信息

Institute for Urban Water Management, Technische Universität Dresden, 01062 Dresden, Germany.

出版信息

Water Res. 2010 Mar;44(6):1765-76. doi: 10.1016/j.watres.2009.11.047. Epub 2009 Nov 29.

Abstract

The hydraulic characteristics, i.e. the residence time distributions, of wastewater treatment plant reactors are usually determined using conventional tracers. This paper aims to present an alternative approach based on wastewater temperature. The step in temperature change, e.g. from stormwater events with cold rainwater, is used as a tracer signal. The method was verified using lab- and pilot-scale tests that showed very good agreement of the time series estimated both with conventional and temperature tracer methods. Results from lab-scale tests exhibit a zone with a minor water exchange of about 10% of the volume of all reactors, while the respective zone in the pilot-scale tests was estimated at about 30% of the total volume. The short-circuit flow was more than 50% of the inflow resulting from gaps between the walls inside the reactor cascade. An application example shows the importance of reliable residence time distribution underlying activated sludge modelling and the uncertainty associated with neglecting the determination of appropriate flow-through characteristics.

摘要

污水处理厂反应器的水力特性,即停留时间分布,通常使用常规示踪剂来确定。本文旨在提出一种基于废水温度的替代方法。温度变化的阶跃,例如来自寒冷雨水的暴雨事件,被用作示踪信号。该方法通过实验室和中试规模的测试进行了验证,结果表明,使用传统示踪剂和温度示踪剂方法估算的时间序列非常吻合。实验室规模测试的结果显示了一个约占所有反应器体积 10%的小水力交换区域,而中试规模测试的相应区域约占总容积的 30%。短路流量超过流入量的 50%,这是由于反应器级联内部墙壁之间的间隙造成的。应用实例表明,可靠的停留时间分布对活性污泥模型的重要性,以及忽略确定适当的穿透特性所带来的不确定性。

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