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Performance of Four Full-Scale Artificially Aerated Horizontal Flow Constructed Wetlands for Domestic Wastewater Treatment

机译:四个全尺寸人工曝气水平流人工湿地处理生活污水的性能

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A comparison of the performance of four full-scale aerated horizontal flow constructed wetlands was conducted to determine the efficacy of the technology on sites receiving high and variable ammonia loading rates not yet reported in the literature. Performance was assessed in terms of ammonia and solids removal, hydraulic conductivity and mixing patterns. The capability of systems to produce ammonium effluent concentrations <3 mgNH 4 + -N/L was observed across all sites in systems receiving variable loadings between 0.1 and 13.0 gNH 4 + -N/m 2 /d. Potential resilience issues were observed in relation to response to spike loadings posited to be due to an insufficient nitrifying population within the beds. Hydraulic conductivity and flow mixing patterns observed suggested deterioration of the reactor effective volume over time. Overall, the study demonstrates the efficacy of the technology where ammonium removal is required on small sites receiving high and variable flow rates, with adequate removal of organics and solids, but no significant benefit to the long term hydraulics of the system.
机译:比较了四个全尺寸水平充气流式人工湿地的性能,以确定该技术在尚未收到文献报道的高氨负荷率和可变氨负荷率的地点的功效。根据氨和固体的去除,水力传导率和混合方式评估了性能。在系统中的所有站点上,在0.1至13.0 gNH 4 + -N / m 2 / d之间的可变负载下,观察到系统产生氨水浓度<3 mgNH 4 + -N / L的能力。观察到潜在的回弹问题,这与由于床内硝化种群不足而导致的峰值负荷响应有关。观察到的水力传导率和流动混合模式表明反应器有效体积随时间而变差。总体而言,该研究表明该技术的有效性,即在流量高且流量可变的小场所需要除铵的同时,有机物和固体的去除也很充分,但对系统的长期液压系统没有明显的好处。

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