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Modelling and evaluation of nitrogen removal performance in subsurface flow and free water surface constructed wetlands

机译:地下流动和自由水表面人工湿地中脱氮性能的建模和评估

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With the aim of protecting drinking water sources in rural regions, pilot-scale subsurface water flow (SSF) and free water surface flow (FWS) constructed wetland systems were evaluated for removal efficiencies of nitrogenous pollutants in tertiary stage treated wastewaters (effluent from the Pasakoy biological nutrient removal plant). Five different hydraulic application rates and emergent (Canna, Cyperus, Typhia sp., Phragmites sp., Juncus, Poaceae, Paspalum and Iris) and floating (Pistia, Salvina and Lemna) plant species were assayed. The average annual NH4-N, NO3-N and organic-N treatment efficiencies were 81, 40 and 74% in SSFs and 76, 59 and 75% in FWSs, respectively. Two types of the models (first-order plug flow and multiple regression) were tried to estimate the system performances. Nitrification, denitrification and ammonification rate constants (k(20)) values in SSF and FWS systems were 0.898 d(-1) and 0.541 d(-1), 0.486 d(-1) and 0.502 d(-1), 0.986 d(-1) and 0.908, respectively. Results show that the first-order plug flow model clearly estimates slightly higher or lower values than observed,when compared with the other model.
机译:为了保护农村地区的饮用水源,评估了中试规模的地下水流量(SSF)和自由水表面流量(FWS)的湿地系统对三级处理废水(Pasakoy废水)中氮污染物的去除效率。生物营养去除设备)。测定了五种不同的水力施用率和出苗(Canna,Cyperus,Typhaa sp。,Phragmites sp。,Juncus,Poaceae,Paspalum和Iris)和漂浮植物(Pistia,Salvina和Lemna)。 SSFs的年平均NH4-N,NO3-N和有机氮的处理效率分别为81%,40%和74%,FWSs分别为76%,59%和75%。尝试使用两种类型的模型(一阶塞流和多元回归)来估计系统性能。 SSF和FWS系统中的硝化,反硝化和氨化速率常数(k(20))值分别为0.898 d(-1)和0.541 d(-1),0.486 d(-1)和0.502 d(-1),0.986 d (-1)和0.908。结果表明,与其他模型相比,一阶塞流模型明显估计出比所观察到的略高或略低的值。

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