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Modelling COD and N removal in the water and in the benthic biofilm for the River Wupper in Germany

机译:为德国伍珀河的水和底栖生物膜中的COD和N去除建模

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摘要

The River Wupper, a tributary of the River Rhine, is at several locations influenced by anthropogenous nitrogen input, hydraulic structures, and influents from other tributaries. These influences have an impact both on the water quality and on the hydrodynamic conditions. The model approaches used for this article are based on work of Rauch et al. and the River Water Quality Model No. 1; they allow the simulation of the nitrogen conversion in the River Wupper. They are compatible with the activated sludge models and can thus be used also for integrated approaches. The calibration and validation of the model was realized using actual data of the River Wupper over a length of 60 km with one dam, 10 weirs, three wastewater treatment plants and 11 tributaries. The model considers the nitrogen conversion and COD removal and has a strong focus on biofilm processes in the benthic zone. Additional information is given about the sedimentation processes, the physical oxygen input processes, biofilm detachment processes, molecular diffusion, the influence of the laminar border layer and the changing of COD fractions and biofilm densities.
机译:伍珀河是莱茵河的支流,在几个地方受到人为氮输入,水力结构和其他支流的影响。这些影响对水质和流体动力条件都有影响。本文使用的模型方法基于Rauch等人的工作。河流水质模型1号;它们允许模拟伍珀河中的氮转化。它们与活性污泥模型兼容,因此也可用于集成方法。该模型的校准和验证是利用60公里长的伍珀河的实际数据实现的,其中包括一个大坝,10个堰,三个废水处理厂和11个支流。该模型考虑了氮的转化和COD的去除,并高度关注底栖生物膜过程。给出了有关沉积过程,物理氧气输入过程,生物膜分离过程,分子扩散,层流边界层的影响以及COD分数和生物膜密度变化的其他信息。

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