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Assessment of pollutant removal processes and kinetic modelling in vertical flow constructed wetlands at elevated pollutant loading

机译:循环载荷荷载湿地湿润地污染物去除过程和动力学建模的评估

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摘要

Constructed wetland (CW), an ecological wastewater treatment technology, is low cost and easily to operate. Vertical flow constructed wetland (VF-CW) systems have been used to treat various wastewaters across the world. The present work exhibits the detail study of five type's multi-layered vertically constructed wetlands operated at 24h hydraulic retention time under semi-continuous vertical flow mode. Except N-NO3-, all the pollutants were sufficient removal in iron scraps constructed wetland (ISs-CW). The highest average pollutant removal efficiency achieved in ISs-CW was 85.04%, 77.57%, 85.99%, 62.01% and 88.91% for N-NH4+, N-NO2+, total nitrogen, total phosphate and sulphate respectively. The present CWs planted with Eichhornia crassipes is a promising system for municipal wastewater treatment. The first-order kinetic modelling was best suited for the removal rate since it presents higher R-2, rate constant (k) and B values.
机译:构造的湿地(CW),生态废水处理技术,成本低,操作很容易。 垂直流动构造的湿地(VF-CW)系统已被用于在全球范围内治疗各种废水。 本工作表现出在半连续垂直流动模式下在24H液压保留时间下操作的五种多层垂直构造湿地的详细研究。 除了N-NO3-,所有污染物都足够地在铁屑中构造的湿地(ISS-CW)。 在IS-CW中实现的最高平均污染物去除效率分别为N-NH4 +,N-NO 2 +,总氮,总磷酸盐和硫酸盐的85.04%,77.57%,85.99%,62.01%和88.91%。 用Eichhornia Crassipes种植的目前CW是市政废水处理的有希望的系统。 一阶动力学建模最适合去除率,因为它呈现较高的R-2,速率常数(k)和B值。

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