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Effect of recirculation on nitrogen removal in a hybrid constructed wetland system

机译:在混合人工湿地系统中再循环对氮去除的影响

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摘要

Pilot-scale treatment of a small community's domestic wastewater was performed over a period of more than 2 years. The study involves removal of nitrogen in serially operated horizontal (HFCW) and vertical (VFCW) sub-surface flow constructed wetlands. Anaerobically pretreated wastewater was first introduced into HFCW and then VFCW before being discharged. HFCW supported denitrification in addition to removal of organic matter whereas VFCW obtained nitrification. Effective parameters such as temperature and effluent recirculation rate were tested in the system. Lower effluent concentrations were obtained with a 100% recirculation ratio compared to nonrecirculation. On the other hand, nitrification was found to be significantly higher in summer compared to winter. The pilot-scale system achieved the project goals by obtaining 98% total Kjeldahl nitrogen (TKN) and 79% total nitrogen (TN) removal during operation with recirculation. The study points out a novelty that the discharge limits could be achieved for nitrogen by the application of recirculation in a hybrid constructed wetland. The study shows that a hybrid constructed wetland system with recirculation is an effective method to obtain low nitrogen concentrations in downstream of anaerobic pretreatment of domestic wastewaters of small communities, particularly in the warm climate of the Mediterranean Region.
机译:对小型社区的生活污水进行了中试处理,时间超过2年。该研究涉及在连续操作的水平(HFCW)和垂直(VFCW)地下流人工湿地中去除氮。经厌氧预处理的废水首先被引入HFCW,然后被引入VFCW,然后排放。 HFCW除了去除有机物外,还支持反硝化作用,而VFCW获得了硝化作用。在系统中测试了有效的参数,例如温度和废水再循环率。与非再循环相比,以100%的再循环率获得了较低的废水浓度。另一方面,夏季的硝化作用明显高于冬季。中试规模的系统通过在再循环操作期间获得98%的凯氏定氮(TKN)和79%的总氮(TN)去除来实现项目目标。该研究指出了一种新颖性,即通过在混合人工湿地中应用再循环技术,可以达到氮的排放极限。研究表明,在循环利用的混合湿地系统中,对小社区生活废水进行厌氧预处理的下游,尤其是在地中海地区的温暖气候下,是获得低氮浓度的有效方法。

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