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Anammox, biochar column and subsurface constructed wetland as an integrated system for treating municipal solid waste derived landfill leachate from an open dumpsite

机译:Anammox,Biochar柱和地下构造湿地作为一种用于处理城市固体废物衍生垃圾渗透液的综合系统

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摘要

This study aims to treat nitrogen-rich landfill leachate from Karadiyana open dumpsite, Sri Lanka, through an integrated treatment train consists of an anammox process, Municipal Solid Waste derived biochar column followed by a biochar embedded subsurface constructed wetland. Characterization of leachate was done and the leachate pollution index (LPI) was estimated. Meanwhile, leachate was treated through a treatment system comprising an anammox reactor having 140 mm diameter and 250 mm height, a biochar reactor having the same dimensions with 1.3 kg of MSW biochar, and a laboratory-scale constructed wetland of 1 × 0.3 × 0.45 m. The influent and effluent quality was assessed for the samples taken in 24 h intervals. The analysis indicated that the leachate was high in COD (4000-14,000 mg/L), ammonia (760-900 mg/L), nitrate (60-126 mg/L), and phosphorus (33-66 mg/L). Ammonia and nitrite were removed 94 and 99% by anammox unit, respectively. Nitrate, phosphate, COD and conductivity were significantly removed by the constructed wetland system in 78, 70, 65 and 61%, respectively, whereas biochar barricades extended support for removal of the contaminants and color. The combined treatment system demonstrated treatment efficiencies as 100% of ammonia, 98.7% of nitrite, 98.2% of nitrate, 80.9% of phosphate, 79.7% of COD, and 69.9% of conductivity. Thus, it can be concluded that the anammox, combined with biochar embedded treatment train is promising to treat landfill leachate, having a high pollutant index.
机译:本研究旨在通过综合治疗火车来治疗富含氮垃圾渗滤液,通过综合治疗火车由一个厌氧过程,城市固体废物衍生的生物炭柱,其次是一家BioChar嵌入地下构造的湿地。完成渗滤液的表征,估计渗滤液污染指数(LPI)。同时,通过一种处理系统处理渗滤液,该处理系统包括具有140mm直径和250mm高度的厌氧反应器,具有与1.3kg MSW BioChON相同尺寸的Biochar反应器,并且实验室标度构造湿地为1×0.3×0.45米。对24小时间隔采集的样品评估流水和污水质量。分析表明,脱水液在COD(4000-14,000mg / L)中高,氨(760-900mg / L),硝酸盐(60-126mg / L)和磷(33-66mg / L)。通过厌氧单位除去氨和亚硝酸盐94和99%。通过78,70,65和61%的构造湿地系统显着除去硝酸盐,磷酸酯,鳕鱼和导电性,而Biochar障碍物延伸支持去除污染物和颜色。合并治疗系统证明了治疗效率为100%的氨,亚硝酸盐98.7%,硝酸盐的98.2%,磷酸盐的80.9%,鳕鱼的79.7%,导电率的69.9%。因此,可以得出结论,厌氧与生物炭嵌入式治疗火车相结合的是有前途治疗垃圾填埋液,具有高污染物指数。

著录项

  • 来源
    《Environmental research》 |2020年第10期|109880.1-109880.10|共10页
  • 作者单位

    Department of Civil Engineering Faculty of Engineering Technology The Open University of Sri Lanka Nawala Nugegoda Sri Lanka;

    Ecosphere Resilience Research Center Faculty of Applied Sciences University of Sri Jayewardenepura Nugegoda Sri Lanka;

    Department of Civil Engineering Faculty of Engineering Technology The Open University of Sri Lanka Nawala Nugegoda Sri Lanka;

    Department of Civil Engineering Faculty of Engineering Technology The Open University of Sri Lanka Nawala Nugegoda Sri Lanka;

    Department of Civil Engineering Faculty of Engineering Technology The Open University of Sri Lanka Nawala Nugegoda Sri Lanka;

    Ecosphere Resilience Research Center Faculty of Applied Sciences University of Sri Jayewardenepura Nugegoda Sri Lanka;

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

    Anammox; Constructed wetland; Municipal solid waste; Green technology; Biochar;

    机译:anammox;建造湿地;城市生活垃圾;绿色技术;生物炭;
  • 入库时间 2022-08-18 21:51:11

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