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Effects of influent C/N ratios on wastewater nutrient removal and simultaneous greenhouse gas emission from the combinations of vertical subsurface flow constructed wetlands and earthworm eco-filters for treating synthetic wastewater

机译:垂直地下流人工湿地与earth生态滤池组合处理后进水碳氮比对废水养分去除及同时温室气体排放的影响

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摘要

This research focused on the nutrient removal and the simultaneous CO2, CH4, and N2O emission rates of various combinations of vertical subsurface flow constructed wetlands (VSFCWs) and earthworm eco-filters (EEs) under different influent C/N ratios in synthetic wastewater. The optimal parameters for nutrient removal were influent C/N ratios of 5 :1 and 10 :1 as well as the combination VSFCW-EE. Relatively low values of greenhouse gas (GHG) emission rates measured in situ were obtained at a C/N ratio of 5 :1. The emission rates of CH4 and N2O were considerably lower than that of CO2. The VSFCW-EE and EE-VSFCW combinations showed similar GHG emission results. The C/N ratio of 5 :1 and the VSFCW-EE combination exhibited the highest nutrient removal efficiency with the lowest GHG emission rate. Wastewater nutrient removal and GHG emission were both high during summer (June to August) and low during winter (December to February).
机译:这项研究的重点是在不同进水碳氮比下,垂直地下流人工湿地(VSFCW)和worm生态滤池(EE)的各种组合在不同进水C / N比下的养分去除以及同时CO2,CH4和N2O排放速率。去除营养物的最佳参数是进水C / N比为5:1和10:1以及VSFCW-EE组合。以5:1的C / N比获得的原位测量的温室气体(GHG)排放率值相对较低。 CH4和N2O的排放速率明显低于CO2。 VSFCW-EE和EE-VSFCW组合显示出相似的温室气体排放结果。 C / N比为5:1和VSFCW-EE组合显示出最高的养分去除效率和最低的温室气体排放率。废水的养分去除和温室气体排放在夏季(6月至8月)较高,而在冬季(12月至2月)较低。

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