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Microbial nitrogen removal pathways in integrated vertical-flow constructed wetland systems

机译:一体化垂直流人工湿地系统中的微生物脱氮途径

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Microbial nitrogen (N) removal pathways in planted (Canna indica L.) and unplanted integrated vertical-flow constructed wetland systems (IVCWs) were investigated. Results of, molecular biological and isotope pairing experiments showed that nitrifying, anammox, and denitrifying bacteria were distributed in both down-flow and up-flow columns of the IVCWs. Further, the N transforming bacteria in the planted IVCWs were significantly higher than that in the unplanted ones (p < 0.05). Moreover, the potential nitrification, anammox, and denitrification rates were highest (18.90, 11.75, and 7.84 nmol N g (1) h (1), respectively) in the down-flow column of the planted IVCWs. Significant correlations between these potential rates and the absolute abundance of N transformation genes further confirmed the existence of simultaneous nitrification, anammox, and denitrification (SNAD) processes in the IVCWs. The anammox process was the major N removal pathway (55.6-60.0%) in the IVCWs. The results will further our understanding of the microbial N removal mechanisms in IVCWs. (C) 2016 Elsevier Ltd. All rights reserved.
机译:研究了种植的(Canna indica L.)和未种植的集成垂直流人工湿地系统(IVCW)中微生物氮(N)的去除途径。分子生物学和同位素配对实验的结果表明,硝化细菌,厌氧氨氧化菌和反硝化细菌分布在IVCW的下流和上流柱中。此外,种植的IVCWs中的N转化细菌显着高于未种植的NPC(p <0.05)。此外,在种植的IVCW的下流塔中,潜在的硝化,厌氧氨氧化和反硝化速率最高(分别为18.90、11.75和7.84 nmol N g(1)h(1))。这些潜在的速率与N转化基因的绝对丰度之间的显着相关性进一步证实了IVCW中同时存在硝化,厌氧氨化和反硝化(SNAD)过程。厌氧氨氧化过程是IVCW中主要的氮去除途径(55.6-60.0%)。结果将进一步使我们了解IVCWs中微生物氮的去除机理。 (C)2016 Elsevier Ltd.保留所有权利。

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