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首页> 外文期刊>Journal of Environmental Management >Interactive effect of carbon source with influent COD/N on nitrogen removal and microbial community structure in subsurface flow constructed wetlands
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Interactive effect of carbon source with influent COD/N on nitrogen removal and microbial community structure in subsurface flow constructed wetlands

机译:碳源与进水COD / N交互作用对地下流人工湿地脱氮和微生物群落结构的影响

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摘要

Carbon source and influent COD/N (chemical oxygen demand: total nitrogen) pose distinct effects on nitrogen removal efficiency and microbial community structure of constructed wetlands. To investigate the interactive effect of carbon source with COD/N on nitrogen removal and microbial community structure in subsurface flow constructed wetlands, glucose (C6H12O6) and sodium acetate (C2H3NaO2) were used to determine five COD/N ratios in nine groups of constructed wetlands divided into glucose constructed wetlands and sodium acetate constructed wetlands. Results showed that efficiency in COD removal increased with COD/N, and peak value reached 92.7%. Interactive effect of carbon source with COD/N on system pH and ammonium removal was notably significant. Differences in ammonium removal performance between treatments were achieved by the variation of influent COD/N ratio and the change of system pH resulted from different carbon sources, and the result suggested that glucose was a better choice at high COD/N ratio. System microbial community structure was significantly affected by carbon source, influent COD/N ratio and their interaction. Microbial biomass in constructed wetlands significantly increased with increasing COD/N ratio. Higher density and diversity of fungus were observed in glucose constructed wetlands, particularly at COD/N ratio of 7 and 10.
机译:碳源和进水COD / N(化学需氧量:总氮)对人工湿地的脱氮效率和微生物群落结构产生明显影响。为了研究碳源与COD / N相互作用对地下流人工湿地中氮去除和微生物群落结构的影响,使用葡萄糖(C6H12O6)和乙酸钠(C2H3NaO2)确定了九组人工湿地中的五个COD / N比。分为葡萄糖人工湿地和醋酸钠人工湿地。结果表明,COD去除效率随COD / N的增加而增加,峰值达到92.7%。碳源与COD / N相互作用对系统pH和去除铵的影响非常显着。进水COD / N比的变化和不同碳源引起的系统pH值的变化,使处理之间的铵去除性能有所不同,结果表明在高COD / N比下,葡萄糖是更好的选择。系统微生物群落结构受碳源,进水COD / N比及其相互作用的影响很大。随着COD / N比的增加,人工湿地中的微生物量显着增加。在葡萄糖建造的湿地中观察到较高的真菌密度和多样性,尤其是在COD / N为7和10的情况下。

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