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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >High-effective denitrification of low C/N wastewater by combined constructed wetland and biofilm-electrode reactor (CW-BER)
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High-effective denitrification of low C/N wastewater by combined constructed wetland and biofilm-electrode reactor (CW-BER)

机译:组合构造的湿地和生物膜电极反应器(CW-BER)高效脱氮废水

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The low denitrification effect on constructed wetlands (CWs) treating low carbon to nitrogen ratio (C/N) wastewater was a problem. In this study, a novel coupled system by installing CW and biofilm-electrode reactor (CW-BER) was developed. In this system, the heterotrophic and autotrophic denitrifying bacteria all played their roles in denitrification process. The system was investigated systematically with simulated wastewater at different C/Ns, electric current intensities (I), hydraulic retention times (HRTs), and pH. Results showed that the optimum running conditions were C/N = 0.75-1, I = 15 mA, HRT = 12 h, and pH = 7.5. The highest removal efficiency of NO3-N and TN at the best conditions was respectively 63.03% and 98.11% for CW-BER. Also, the TN and NO3-N enhancive removal efficiency of CW-BER was 23.26% and 24.20%, respectively. No residual organic carbon source was detected in final effluent at the best parameters. (C) 2015 Elsevier Ltd. All rights reserved.
机译:对处理低碳与氮比(C / N)废水的低脱氮效果是一个问题。 在该研究中,开发了一种通过安装CW和生物膜电极反应器(CW-BER)的新型耦合系统。 在该系统中,异养和自养的反硝化细菌全部在脱硝过程中发挥作用。 系统地用不同的C / NS,电流强度(I),液压保留时间(HRT)和pH有系统地研究了该系统。 结果表明,最佳运行条件是C / N = 0.75-1,I = 15mA,HRT = 12h,pH = 7.5。 最佳条件下NO3-N和TN的最高去除效率分别为CW-BER的63.03%和98.11%。 此外,CW-BER的TN和NO3-N增强效率分别为23.26%和24.20%。 在最佳参数中,在最终流出物中没有检测到残留的有机碳源。 (c)2015 Elsevier Ltd.保留所有权利。

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