首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >The impact of influent mode on nitrogen removal in horizontal subsurface flow constructed wetlands: A simple analysis of hydraulic efficiency and nutrient distribution
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The impact of influent mode on nitrogen removal in horizontal subsurface flow constructed wetlands: A simple analysis of hydraulic efficiency and nutrient distribution

机译:进水方式对水平地下流人工湿地脱氮的影响:水力效率和养分分布的简单分析

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摘要

Influent mode in constructed wetlands can cause changes of hydraulic efficiency and carbon source distribution. In this study, impacts of four influent modes on nitrogen removal were studied by hydraulic tracer test and nutrient distribution analysis. NH_4~+-N, TN and COD were sampled along the reactors in different layers. Results showed that diffusive inflow contributed highest NH_4~+-N and TN removal reaching 64.3% and 60.9%, respectively. It proved that diffusive inflow achieved higher effective volume ratio and hydraulic efficiency. Moreover, nutrient distribution analysis implied that diffusive inflow enhanced reaeration causing efficient NH_4~+-N reduction. Compared with other modes, diffusive inflow has also resulted in well-distributed carbon source for denitrification in bottom layer. In addition, ANOVA test analyzed the significance among influent modes indicating that diffusive inflow had obvious effects on enhancing nitrogen removal. The study documented the feasibility of using diffusive inflow to enhance the treatment by improving hydraulic conditions and carbon source distribution in CWs.
机译:人工湿地的进水方式会导致水力效率和碳源分布的变化。本研究通过水力示踪试验和养分分布分析研究了四种进水方式对脱氮的影响。沿反应器的不同层对NH_4〜+ -N,TN和COD进行采样。结果表明,扩散入流对NH_4〜+ -N和TN去除的贡献最大,分别达到64.3%和60.9%。事实证明,扩散入流具有较高的有效容积比和水力效率。此外,养分分布分析表明,扩散流入增加了氮素的释放,有效降低了NH_4〜+ -N。与其他模式相比,扩散流入还导致底层反硝化的碳源分布均匀。此外,ANOVA测试分析了进水方式之间的显着性,表明扩散进水对提高脱氮效果有明显影响。该研究记录了通过扩散水流通过改善水力条件和连续水厂的碳源分布来加强处理的可行性。

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