首页> 外文期刊>Journal of Environmental Management >Removal of organic matter and ammonium from landfill leachate through different scenarios: Operational cost evaluation in a full-scale case study of a Flemish landfill
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Removal of organic matter and ammonium from landfill leachate through different scenarios: Operational cost evaluation in a full-scale case study of a Flemish landfill

机译:通过不同的方案从垃圾渗滤液中去除有机物和铵:弗拉芒垃圾填埋场的全面案例研究中的运营成本评估

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摘要

Several scenarios are available to landfilling facilities to effectively treat leachate at the lowest possible cost In this study, the performance of various leachate treatment sequences to remove COD and nitrogen from a leachate stream and the associated cost are presented. The results show that, to achieve 100% nitrogen removal, autotrophic nitrogen removal (ANR) or a combination of ANR and nitrification -denitrification (N-dN) is more cost effective than using only the N-dN process (0.58 €/m~3) without changing the leachate polishing costs associated with granular activated carbon (GAC). Treatment of N-dN effluent by ozonation or coagulation led to the reduction of the COD concentration by 10% and 59% respectively before GAC adsorption. This reduced GAC costs and subsequently reduced the overall treatment costs by 7% (ozonation) and 22% (coagulation). On the contrary, using Fenton oxidation to reduce the COD concentration of N-dN effluent by 63% increased the overall leachate treatment costs by 3%. Leachate treatment sequences employing ANR for nitrogen removal followed by ozonation or Fenton or coagulation for COD removal and final polishing with GAC are on average 33% cheaper than a sequence with N-dN + GAC only. When ANR is the preceding step and GAC the final step, choice of AOP i.e., ozonation or Fenton did not affect the total treatment costs which amounted to 1.43 (ozonation) and 1.42 €/m~3 (Fenton). In all the investigated leachate treatment trains, the sequence with ANR + coagulation + GAC is the most cost effective at 0.94 €/m~3.
机译:填埋场可以采用几种方案以最低的成本有效地处理渗滤液在本研究中,提出了各种渗滤液处理顺序以去除渗滤液物流中的COD和氮的性能以及相关的成本。结果表明,要实现100%的脱氮效果,自养脱氮(ANR)或ANR和硝化-反硝化(N-dN)的组合比仅使用N-dN工艺更具成本效益(0.58€/ m〜 3)不改变与颗粒活性炭(GAC)相关的渗滤液抛光成本。通过臭氧化或混凝处理N-dN废水导致GAC吸附之前COD浓度分别降低了10%和59%。这降低了GAC成本,随后将总体处理成本降低了7%(臭氧化)和22%(凝结)。相反,使用Fenton氧化将N-dN废水的COD浓度降低63%,会使总渗滤液处理成本增加3%。采用ANR脱氮,随后进行臭氧氧化或Fenton或混凝去除COD以及使用GAC进行最终抛光的浸出液处理流程平均比仅使用N-dN + GAC的流程便宜33%。当ANR是前一步,而GAC是最后一步时,选择AOP,即臭氧化或Fenton不会影响总处理成本,即1.43(臭氧化)和1.42€/ m〜3(Fenton)。在所有研究的渗滤液处理过程中,采用ANR +混凝+ GAC的顺序最经济,为0.94€/ m〜3。

著录项

  • 来源
    《Journal of Environmental Management》 |2017年第2期|774-781|共8页
  • 作者单位

    LIWET. Department of Industrial Biological Sciences. Ghent University, Campus Kortrijk, Gmaf Karel de Goedelaan 5, B-8500, Kartrijk, Belgium,EnVOC, Department of Sustainable Organic Chemistry and Technology, Faculty of Bioscience Engineering, Ghent University, Coupure Links 653, B-9000, Ghent, Belgium,Kenya Industrial Research and Development Institute (KIRDI), P. O. Box 30650-00100. Nairobi, Kenya;

    LIWET. Department of Industrial Biological Sciences. Ghent University, Campus Kortrijk, Gmaf Karel de Goedelaan 5, B-8500, Kartrijk, Belgium,BIOMATH, Department of Mathematical Modeling. Statistics and Bioinformatics, Ghent University, Ghent, Belgium;

    LIWET. Department of Industrial Biological Sciences. Ghent University, Campus Kortrijk, Gmaf Karel de Goedelaan 5, B-8500, Kartrijk, Belgium;

    EnVOC, Department of Sustainable Organic Chemistry and Technology, Faculty of Bioscience Engineering, Ghent University, Coupure Links 653, B-9000, Ghent, Belgium;

    LIWET. Department of Industrial Biological Sciences. Ghent University, Campus Kortrijk, Gmaf Karel de Goedelaan 5, B-8500, Kartrijk, Belgium,BIOMATH, Department of Mathematical Modeling. Statistics and Bioinformatics, Ghent University, Ghent, Belgium;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Landfill leachate treatment; COD; Ammonium nitrogen; Cost evaluation;

    机译:垃圾渗滤液处理;化学需氧量铵氮;成本评估;

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