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Water quality and greenhouse gas fluxes for stormwater detained in a constructed wetland

机译:人工湿地中滞留的雨水的水质和温室气体通量

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摘要

Constructed wetlands (CWs) have been extensively used to deal with stormwater runoff and prevent flooding, as well as to improve water quality. However, some studies indicate that runoff from CWs can be a source of greenhouse gas (GHG) emissions to the atmosphere, as well as have increased levels of organic matter and nitrogen that may affect the environment and water quality of receiving waterways. We collected water samples at five different locations within a constructed stormwater detention wetland and determined dissolved organic carbon (DOC) and nitrate (NO3-), as well as carbon dioxide (CO2), methane (CH4) and nitrous oxide (N2O) concentrations and fluxes. Results showed that the water had high levels of DOC and NO3-. Analysis of DOC quality showed that the organic matter is mainly derived from soil and plant litter, but it has some contribution from microbial sources as well. Additionally, the water was supersaturated with CO2 and CH4 with respect to the atmosphere, which resulted in high evasion fluxes of 4.1 g CO2 -Cm(-2)d(-1)and 45 mg CH4-Cm(-2)d(-1). N2O flux was low, 36.6 mu g N2O-N m(-2) d(-1), and varied between uptake and emission throughout the study period. Consideration of water quality and GHG emissions is key to evaluate the environmental performance of stormwater management systems.
机译:人工湿地(CW)已被广泛用于处理雨水径流,防止洪水以及改善水质。但是,一些研究表明,化武产生的径流可能是向大气排放温室气体(GHG)的来源,并且有机物和氮的含量增加,可能影响接收水道的环境和水质。我们在人工雨水滞留湿地的五个不同位置收集了水样,并确定了溶解有机碳(DOC)和硝酸盐(NO3-)以及二氧化碳(CO2),甲烷(CH4)和一氧化二氮(N2O)的浓度,以及通量。结果表明,水中的DOC和NO3-含量较高。 DOC质量分析表明,有机物主要来自土壤和植物凋落物,但也有微生物来源。此外,相对于大气,水中的CO2和CH4过饱和,导致逃逸通量为4.1 g CO2-Cm(-2)d(-1)和45 mg CH4-Cm(-2)d(- 1)。 N2O通量很低,为36.6μgN2O-N m(-2)d(-1),并且在整个研究期间吸收和排放之间都存在差异。考虑水质和温室气体排放是评估雨水管理系统的环境绩效的关键。

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