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Treatment of mature landfill leachate by biofilters and Fenton oxidation

机译:生物滤池和Fenton氧化处理成熟垃圾填埋场渗滤液

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摘要

A series of processes by biofilter and Fenton oxidation to treat mature landfill leachate has been devised. At a hydraulic loading rate of 201 m~(-3) d~(-1), a biofilter packed with aged refuse is found to remove 80% of chemical oxygen demand (COD), 89% of ammonia nitrogen and 96% of total phosphorus (TP). Particularly, TP levels dropped below 1 mg 1~(-1). The optimal condition for Fenton oxidation was selected to be an initial pH of 5, a dosage of 0.01 and 0.02 mol l~(-1) of FeSO_4 and H_2O_2, respectively, and a duration of 3 h, where COD removal efficiency reaches 58.6%, and BOD_5/COD ratio is raised from 0.05 to 0.20. Subsequent treatment by a biofilter packed with slag reduces COD, ammonia nitrogen levels to less than 100, 25 mg l~(-1), respectively. A pilot scale experiment conducted in situ demonstrates that this series of processes exhibits a high efficiency in removing pollutants from mature landfill leachate and it is viable for application.
机译:已经设计了一系列的生物滤池和Fenton氧化法处理成熟的垃圾渗滤液。在201 m〜(-3)d〜(-1)的水力加载速率下,发现装有老化垃圾的生物滤池可去除80%的化学需氧量(COD),89%的氨氮和96%的总氮磷(TP)。特别是TP水平下降到1 mg 1〜(-1)以下。 Fenton氧化的最佳条件选择为初始pH为5,分别添加0.01和0.02 mol l〜(-1)的FeSO_4和H_2O_2的剂量,持续3 h,其中COD去除效率达到58.6%。 ,并且BOD_5 / COD的比例从0.05提高到0.20。随后通过装满矿渣的生物滤池进行处理,分别将COD和氨氮水平分别降至100、25 mg l(-1)以下。原位进行的中试实验表明,这一系列工艺在从成熟的垃圾渗滤液中去除污染物方面显示出很高的效率,并且可以应用。

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  • 来源
    《Waste Management》 |2010年第11期|p.2108-2112|共5页
  • 作者

    B. Xie; Z. Lv; B.Y. Lv; Y.X. Gu;

  • 作者单位

    Department of Environmental Science & Technology, Shanghai Key Laboratory on Urbanization Ecological Process and Ecorestoration, Shanghai 200062, East China Normal University, PR China;

    Department of Environmental Science & Technology, Shanghai Key Laboratory on Urbanization Ecological Process and Ecorestoration, Shanghai 200062, East China Normal University, PR China;

    Department of Environmental Science & Technology, Shanghai Key Laboratory on Urbanization Ecological Process and Ecorestoration, Shanghai 200062, East China Normal University, PR China;

    Shanghai Environment Engineering & Technology Co., Ltd., Shanghai 200070, PR China;

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