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Full-scale treatment of landfill leachate by using the mechanical vapor recompression combined with coagulation pretreatment

机译:机械蒸汽再压缩联合混凝预处理对垃圾渗滤液进行大规模处理

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摘要

Landfill leachate contains high concentrations of organic compounds and ammonium, and the presence of heavy metal ions, which normally requires expensive and complex treatment processes. In this study, full-scale experiments were implemented to evaluate the feasibility of mechanical vapor recompression (MVR) treating leachate. Results revealed that despite the drastic changes of influent pollutant concentrations, MVR system possessed the ability to reduce most of the pollutants and guarantee the effluent in compliance with the discharge limits of Chinese Standard. Fouling analyses revealed that the main components in the fouling were crystalline (Mg_(0.06)Ca_(0.94))(CO_3), combining with humus and silicon compounds. A fouling cleaning method was developed with the adding sequence of first sulphamic acid and then NaOH, which could remove 88.62% fouling. Although fouling was inevitable for MVR treating leachate, coagulation pretreatment removed large amounts of COD, BOD_5, total nitrogen, ammonium and total phosphorus, with the respective means of 68.4%, 69.4%, 81.0%, 84.1% and 81.4%, and thereafter reduced the treatment cost 27.4% from 47.06 RMB (6.92 US dollars)/m~3 to 34.15 RMB (5.02 US dol-lars)/m~3. These outcomes provided that in addition to the combination method of biological removal process with membrane technology, MVR process was another feasible solution for leachate treatment.
机译:垃圾渗滤液含有高浓度的有机化合物和铵,并且存在重金属离子,这通常需要昂贵且复杂的处理过程。在这项研究中,进行了全面的实验,以评估机械蒸汽压缩(MVR)处理渗滤液的可行性。结果表明,尽管进水污染物浓度发生了巨大变化,但MVR系统仍具有减少大多数污染物并保证废水符合中国标准排放限值的能力。结垢分析表明,结垢的主要成分是晶体(Mg_(0.06)Ca_(0.94))(CO_3),与腐殖质和硅化合物结合在一起。开发了一种污垢清洗方法,先添加氨基磺酸,然后添加NaOH,可以去除88.62%的污垢。尽管MVR处理渗滤液不可避免会结垢,但混凝预处理去除了大量的COD,BOD_5,总氮,铵和总磷,分别为68.4%,69.4%,81.0%,84.1%和81.4%,然后降低处理成本为27.4%,从47.06人民币(6.92美元)/ m〜3降至34.15人民币(5.02美元)/ m〜3。这些结果表明,除了将生物去除工艺与膜技术相结合之外,MVR工艺是渗滤液处理的另一种可行解决方案。

著录项

  • 来源
    《Waste Management》 |2017年第8期|88-96|共9页
  • 作者单位

    Key Laboratory of Urban Pollutant Conversion, Institute of Urban Environment, Chinese Academy of Sciences, No. 1799 Jimei Road, Xiamen City, Fujian 361021, China;

    Dongguan MangRove Environmental Protection Technology Co., Ltd., Building 2A, Block B5, No. 29 Yizhan Road, Dongguan City, Guangdong 523078, China;

    Focused Photonics (Hangzhou). Inc., 760 Bin'an Road, Binjiang District, Hangzhou 310052, Zhejiang Province, China;

    Dongguan MangRove Environmental Protection Technology Co., Ltd., Building 2A, Block B5, No. 29 Yizhan Road, Dongguan City, Guangdong 523078, China;

    Key Laboratory of Urban Pollutant Conversion, Institute of Urban Environment, Chinese Academy of Sciences, No. 1799 Jimei Road, Xiamen City, Fujian 361021, China;

    Key Laboratory of Urban Pollutant Conversion, Institute of Urban Environment, Chinese Academy of Sciences, No. 1799 Jimei Road, Xiamen City, Fujian 361021, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Leachate; Mechanical vapor recompression; Solid waste; Fouling; Heavy metal;

    机译:渗滤液机械蒸气压缩;固体垃圾;结垢;重金属;

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