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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Plant species diversity impacts nitrogen removal and nitrous oxide emissions as much as carbon addition in constructed wetland microcosms
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Plant species diversity impacts nitrogen removal and nitrous oxide emissions as much as carbon addition in constructed wetland microcosms

机译:植物物种多样性影响人工湿地微观世界中氮的去除和一氧化二氮的排放以及碳的添加

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With the aim to develop an approach for treating wastewater with low carbon (C) to nitrogen (N) ratio in constructed wetlands (CWs), we compared the effects of C addition and species diversity on N removal and nitrous oxide (N2O) emissions. Compared with the monocultures without C addition, C addition significantly increased N removal efficiency in monocultures (reached 71% on average); increasing species richness impacted N removal as much as C addition, and the N removal efficiency in the four-species mixture reached 75%. Both C addition and increasing species richness level significantly increased N2O emission rates (reached 1.26 and 1.40 mg m(-2) d(-1), respectively), but had no significant effect on N2O emissions per unit N removal. The effects of species richness on N removal and N2O emissions were stronger than species identity. Compared with C addition, assembling plant communities with high diversity in actual applications could be an effective and more economical approach for treating wastewater with low C/N ratio in CWs. (C) 2016 Published by Elsevier B.V.
机译:为了开发一种在人工湿地(CWs)中处理低碳(C)与氮(N)比率的废水的方法,我们比较了碳的添加和物种多样性对氮去除和一氧化二氮(N2O)排放的影响。与不添加碳的单培养相比,添加碳显着提高了单培养的氮去除效率(平均达到71%)。物种丰富度的增加对氮的去除和碳的添加影响一样大,四种混合物中的氮去除效率达到75%。碳的添加和物种丰富度的增加都显着提高了N2O排放速率(分别达到1.26和1.40 mg m(-2)d(-1)),但对单位氮去除量的N2O排放没有显着影响。物种丰富度对氮去除和N2O排放的影响要强于物种同一性。与添加碳相比,在实际应用中组装具有高度多样性的植物群落可能是一种有效且经济的方法,用于处理化学废物中低C / N比的废水。 (C)2016由Elsevier B.V.发布

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