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Using numerical simulation of a one stage vertical flow wetland to optimize the depth of a zeolite layer

机译:使用一级垂直流湿地的数值模拟优化沸石层的深度

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This simulation study investigates the treatment performance of a compact French vertical flow wetland using a zeolite layer in order to increase ammonium nitrogen removal. For the modelling exercise, the biokinetic model CW2D of the HYDRUS Wetland Module is used. The calibrated model is able to predict the effect of different depths of the zeolite layer on ammonium nitrogen removal in order to optimize the design of the system. For the model calibration, the hydraulic effluent flow rates as well as influent and effluent concentrations of chemical oxygen demand (COD) and NH4-N have been measured. To model the adsorption capacity of zeolite, Freundlich isotherms have been used. The results present the simulated treatment performance with three different depths of the zeolite layer, 10 cm (default), 15 cm and 20 cm, respectively. The increase of the zeolite layer leads to a significant decrease of the simulated NH4-N effluent concentration.
机译:这种仿真研究通过沸石层调查了紧凑法法式垂直流湿地的处理性能,以增加氮气去除铵。 对于造型锻炼,使用湿度模块的生物漏模块CW2D。 校准模型能够预测沸石层对氮氮去除铵的不同深度的影响,以优化系统的设计。 对于模型校准,已经测量了液压流出流量以及流水和流出物浓度的化学需氧量(COD)和NH4-N。 为了模拟沸石的吸附能力,已经使用了Freundlich等温。 结果呈现了模拟处理性能,分别具有三种不同深度的沸石层,10cm(默认),15cm和20cm。 沸石层的增加导致模拟的NH 4-N流出物浓度的显着降低。

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