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在微生物燃料电池中从垃圾渗滤液中发电和去除污染物:阳极微生物组的变化和影响。

Power generation and pollutants removal from landfill leachate in microbial fuel cell: Variation and influence of anodic microbiomes.

机构信息

Shanghai Key Laboratory for Urban Ecological Process and Eco-Restoration, School of Ecology & Environmental Science, East China Normal University, Shanghai 200241, China; Department of Environmental Science, Karakoram International University, Main KIU Road, Gilgit 15100, Pakistan.

Shanghai Key Laboratory for Urban Ecological Process and Eco-Restoration, School of Ecology & Environmental Science, East China Normal University, Shanghai 200241, China.

出版信息

Bioresour Technol. 2018 Jan;247:434-442. doi: 10.1016/j.biortech.2017.09.124. Epub 2017 Sep 20.

Abstract

MFC was studied using young and old landfill leachate substrate to remove pollutants and produce renewable energy coupled with study of anodic microbiomes. The power output of 96.8mWm with COD removal of 90.0±1.2% was achieved at 60% young leachate in batch mode, which decreased to 75mWm having 55.5% COD abatement in continuous mode employing 100% young leachate. Power production using simulated wastewater without organic source proved that ammonium could also serve as fuel in MFC. The high ammonium dosage increased the overall system performance but beyond a certain limit, the inhibitory effect intensified. Nitrogen removal (66.0±3.3% NH-N and 86.0±0.1% NO-N) occurred obeying different removal pathways. Sequencing analyses revealed that anammox bacteria (2%), denitrifying bacteria (5%) and electrogenic bacteria (15%) were in abundance of the microbial community in the anode. This technology can be promising for leachate treatment and power production however certain constraints still exist in pilot scale experiments.

摘要

采用年轻和年老垃圾渗滤液作为底物,研究了 MFC 去除污染物和生产可再生能源,并研究了阳极微生物群落。在批式运行中,当年轻渗滤液的比例为 60%时,可获得 96.8mWm 的功率输出和 90.0±1.2%的 COD 去除率,而在连续运行中,当采用 100%年轻渗滤液时,功率输出降至 75mWm,COD 去除率为 55.5%。使用不含有机源的模拟废水进行的产电实验证明,铵也可以作为 MFC 的燃料。高铵剂量会提高整个系统的性能,但超过一定限度后,抑制作用会加剧。氮的去除(66.0±3.3% NH-N 和 86.0±0.1% NO-N)遵循不同的去除途径。序列分析表明,在阳极微生物群落中,厌氧氨氧化菌(2%)、反硝化菌(5%)和产电菌(15%)较为丰富。该技术在渗滤液处理和发电方面具有广阔的应用前景,但在中试规模实验中仍存在一定的限制。

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