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Treatment of leachate from domestic landfills with three-stage physicochemical and biochemical technology

机译:三阶段物化和生化技术处理生活垃圾填埋场渗滤液

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Because domestic landfill leachate concentrates complex organic pollutants, effective treatment of landfill leachate has gained increasing attention in recent years. In this paper, three-stage physicochemical and biochemical technology for treatment of domestic landfill leachate is presented. Based on an eight-month pilot operation, over 96% of the main pollutants, for example CODCr, BOD5, SS, NH4 +–N, coliform, and chrominance, can be removed, among which the removal efficiency of CODCr was 89.5, 8.6, and 1.7% in stages 1, 2, and 3, respectively, and the removal efficiency of BOD5 was 90.3, 8.3, and 1.4%. In the treatment, the biochemical process played a principal role on the removal of pollutants from the leachate. The treatment efficiency depends on how the syntheses of physicochemical, anaerobic, and hydrolytic procedures pave the way for biochemical treatment. Application of a combined efflux and mixed-flow aerator enhanced the removal efficiency during each procedure.
机译:由于生活垃圾填埋场渗滤液浓缩了复杂的有机污染物,因此近年来对垃圾渗滤液的有效处理越来越受到关注。本文介绍了处理生活垃圾渗滤液的三阶段物化和生化技术。根据为期8个月的试运行,超过96%的主要污染物,例如COD Cr ,BOD 5 ,SS,NH 4 可以去除 + -N,大肠菌群和色度,其中在1、2和3阶段,COD Cr 的去除效率分别为89.5、8.6和1.7%。 BOD 5 的去除效率分别为90.3、8.3和1.4%。在处理过程中,生化过程在从渗滤液中去除污染物方面起着主要作用。处理效率取决于物理化学,厌氧和水解程序的合成如何为生化处理铺平道路。结合使用外排和混流曝气器可提高每个过程的去除效率。

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