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Comparative pilot study of the performances of two constructed wetland wastewater treatment hybrid systems

机译:两种人工湿地废水混合处理系统性能的比较中试研究

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For small settlements sanitation, constructed wetland systems offer a suitable social economic alternative to the classic wastewater treatment plants. In order to study the treatment mechanisms occurring in the soil-plant system, we set up a small-scale pilot wastewater treatment plant composed by a settler/digester followed by two trains combining two different types of subsurface flow constructed wetlands called 'hybrid systems'. The first train represents a combination of a vertical flow reed (Phragmites australis) bed followed by a horizontal bed, planted with Typha, whereas in the second one, the combination is reversed.The hybrid systems are fed intermittently with a hydraulic load of 0.2 m per day given in two sequences of one hour separated by a six-hour rest period. We followed the quality of the effluent at the outlet of the beds. The two hybrid systems present satisfactory performances: yields higher than 90% in organic matter removal are registered.For the first system we could obtain a substantial nitrification but uncompleted denitrification whereas for the second system we observed that the total nitrogen (NTK) reduction was achieved by denitrification and nitrification remains almost complete. The pathogenic bacteria abatement is satisfactory for the two systems but more remarkable for the second (2 u log).
机译:对于小型定居点的卫生设施,人工湿地系统可以为传统的废水处理厂提供合适的社会经济替代方案。为了研究土壤-植物系统中发生的处理机理,我们建立了一个小规模的中试废水处理厂,由定居者/消化器组成,然后是两列火车,将两种不同类型的地下流动人工湿地结合在一起,称为“混合系统” 。第一列代表垂直流芦苇床(Phragmites australis)床与水平层床的组合,后者种植有香蒲,而第二列则相反,混合系统间歇性地以0.2 m的水力供给每天分为两个小时序列,分别是一小时和六个小时的休息时间。我们跟踪了床出口处废水的质量。两种混合系统表现出令人满意的性能:有机物去除率高于90%。对于第一种系统,我们可以获得大量的硝化作用,但反硝化作用不完全;而对于第二种系统,我们观察到总氮(NTK)的减少量得以实现通过反硝化和硝化仍几乎完成。两种系统的病原菌消减效果令人满意,但第二种系统(2 u log)的消减效果更显着。

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