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Comparative study of microbial community structure in integrated vertical-flow constructed wetlands for treatment of domestic and nitrified wastewaters

机译:垂直流人工湿地处理生活污水和硝化废水的微生物群落结构比较研究

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Microbial processes play a vital important role in the removal of contaminants in constructed wetland (CW). However, the microbial physiology and community structure can be influenced by environmental conditions. In this study, four pilot-scale integrated vertical-flow constructed wetlands (IVCWs) were employed to treat domestic and nitrified wastewaters. The microbial properties, along with their response to wastewater quality characteristics and seasonal variation, were determined. The results showed higher Shannon-Weiner diversity (H) and evenness (E) index of fatty acids (FAs), and relative abundances of signature FAs in down-flow cells and in the systems fed with domestic wastewater (DW). The relative abundances of fungi and gram-negative and aerobic bacteria were greater in up-flow cells. The dominant anaerobic bacteria found in most cells might be accounted for the prevailing anaerobic environment within the wetland beds, which could mean that the system fed with nitrified wastewater (NW) should perform better in nitrogen removal. The redundancy analysis (RDA) showed that pollutant concentrations, especially organic matter, influence the FA compositions greatly, and the most significant difference of microbial community structures was detected in down-flow cells fed with DW and up-flow ones with NW. The branched FAs, which could be used to represent anaerobic bacteria, were observed in down-flow cells treating DW and had a significant positive correlation with chemical oxygen demand (COD) concentration, probably suggesting the important role of anaerobic bacteria in organic matter degradation in the IVCWs. Seasonal variation, however, did not greatly influence the microbial community structure in the IVCWs.
机译:微生物过程在去除人工湿地(CW)中的污染物方面起着至关重要的重要作用。但是,微生物的生理和群落结构会受到环境条件的影响。在这项研究中,采用了四个中试规模的垂直流人工湿地(IVCWs)来处理生活和硝化废水。确定了微生物的性质,以及它们对废水质量特征和季节变化的响应。结果显示,较高的脂肪酸(FAs)香农-韦纳多样性(H)和均匀性(E)指数,以及下流池和饲喂生活污水(DW)的系统中标志性FA的相对丰度。上流细胞中真菌和革兰氏阴性菌和需氧菌的相对丰度更高。大多数细胞中发现的主要厌氧细菌可能是湿地河床中普遍存在的厌氧环境的原因,这可能意味着饲喂硝化废水(NW)的系统在脱氮方面应表现更好。冗余分析(RDA)表明,污染物浓度,尤其是有机物,对FA的组成有很大的影响,在饲喂DW的下流池和流入NW的上流池中,微生物群落结构的差异最大。在处理DW的下流细胞中观察到了可用于代表厌氧菌的分支FA,并且与化学需氧量(COD)浓度呈显着正相关,这可能暗示了厌氧菌在土壤有机物降解中的重要作用。 IVCW。然而,季节性变化并没有很大地影响IVCWs中微生物群落的结构。

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