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Purification ability and carbon dioxide flux from surface flow constructed wetlands treating sewage treatment plant effluent

机译:表层人工湿地处理污水处理厂废水的净化能力和二氧化碳通量

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In this study, a two-year experiment was carried out to investigate variation of carbon dioxide (CO2) flux from free water surface constructed wetlands (FWS CW) systems treating sewage treatment plant effluent, and treatment performance was also evaluated. The better 74.6-76.6% COD, 92.7-94.4% NH4+-N, 60.1-84.7% TN and 49.3-70.7% TP removal efficiencies were achieved in planted CW systems compared with unplanted systems. The planted CW was a net CO2 sink, while the unplanted CW was a net CO2 source in the entire study period. An obvious annual and seasonal variability of CO2 fluxes from different wetland systems was also presented with the average CO2 flux ranging from -592.83 mg m(-2) h(-1) to 553.91 mg m(-2) h(-1) during 2012-2013. In addition, the net exchange of CO2 between CW systems and the atmosphere was significantly affected by air temperature, and the presence of plants also had the significant effect on total CO2 emissions. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项研究中,进行了为期两年的实验,以研究来自自由水表面人工湿地(FWS CW)系统处理污水处理厂废水的二氧化碳(CO2)通量的变化,并评估了其处理性能。与未种植的CW系统相比,种植的CW系统实现了更好的74.6-76.6%的COD,92.7-94.4%的NH4 + -N,60.1-84.7%的TN和49.3-70.7%的TP去除效率。在整个研究期间,种植的CW是净CO2汇,而未种植的CW是净CO2源。还显示了来自不同湿地系统的CO2通量的明显年度和季节变化,在此期间平均CO2通量范围为-592.83 mg m(-2)h(-1)至553.91 mg m(-2)h(-1) 2012-2013。此外,连续水系统与大气之间的二氧化碳净交换量受空气温度的显着影响,而且植物的存在也对总的二氧化碳排放量有显着影响。 (C)2016 Elsevier Ltd.保留所有权利。

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