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Effect of artificial aeration and macrophyte species on nitrogen cycling and gas flux in constructed wetlands

机译:人工通气和大型植物对人工湿地氮循环和气体通量的影响

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摘要

Constructed wetlands (CWs) are efficient at removing excessive nutrients from wastewaters. However, this removal often results in the flux of important greenhouse gases (GHG), such as nitrous oxide (N2O), carbon dioxide (CO2) and methane (CH4) that could mitigate the environmental benefits of CWs. We studied the efficiency of artificial aeration and 2 different macrophyte species (Phragmites australis, Typha angustifolia) on the removal and transformations of nitrogen and GHG gas flux using CW mesocosms supplied with 60Lm~(-1) d~(-1) of wastewater. Removal of total nitrogen (TN) and dissolved organic nitrogen (DON) was generally high in all beds but resulted in a net production of oxidized nitrogen (NO_y) in aerated CW mesocosms as compared to ammonium (NH_4~+) in non-aerated units. Aerated units emitted less N2O when planted with P. australis or left unplanted. Aerated beds and planted mesocosms had lower CH4 fluxes than non-aerated units and unplanted beds, respectively. Our study suggests that planted systems with artificial aeration have the overall best performances in that they lead to a reduction of GHG flux and promote the release of NO_y over NH_4~+ in their effluents.
机译:人工湿地(CW)可有效去除废水中的过多养分。但是,这种去除通常会导致重要温室气体(GHG)的释放,例如一氧化二氮(N2O),二氧化碳(CO2)和甲烷(CH4),这可能会减轻化工厂的环境效益。我们研究了使用60Lm〜(-1)d〜(-1)废水的连续水压降法,人工曝气和2种不同的大型植物(芦苇,香蒲)去除氮和转化GHG气体通量的效率。在所有床中,总氮(TN)和溶解有机氮(DON)的去除率通常很高,但与未曝气单元中的铵(NH_4〜+)相比,曝气CW介观膜中净产生了氧化氮(NO_y)。 。加有南方假单胞菌或不种植时,加气单元排放的N2O较少。充气床和种植的中观膜的CH4通量分别低于未充气的单位和未种植的床。我们的研究表明,人工曝气的种植系统总体上具有最佳性能,因为它们可减少温室气体通量,并促进废水中NH_4〜+的NO_y释放。

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