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Remediation of MSW landfill leachate by permeable reactive barrier with vegetation

机译:植被渗透性反应屏障对生活垃圾填埋场渗滤液的修复

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This research was conducted to investigate in situ treatment of leachate by pilot-scale permeable reactive barrier (PRB) with vegetation. Two different types of PRB media, with and without the presence of ferric chloride sludge, for the removal of pollutants were examined. The composite media of PRB comprised a clay and sand mixture of 40:60%w/w (system 1) and a clay, ferric chloride sludge and sand mixture of 30:10:60%w/w (system 2). The system was operated at a hydraulic loading rate of 0.028 m(3)/m(2).d and hydraulic retention time of 10 days. The results showed that the performance of system 2 was better in terms of pollutant removal efficiencies, with average biochemical oxygen demand, chemical oxygen demand and total Kjeldahl nitrogen removals of 76.1%, 68.5% and 73.5%, respectively. Fluorescence excitation-emission matrix analyses of water samples and sequential extraction of PRB media suggested the removal of humic substances through the formation of iron-organic complex. Greenhouse gas (GHG) emissions during the treatment of PRB were 8.2-52.1 mgCH(4)/m(2).d, 69.1-601.8 mgCO(2)/m(2).d and 0.04-0.99 mgN(2)O/m(2).d. The use of system 2 with vegetation resulted in lower GHG emissions. The results show that PRB with vegetation could be used as a primary treatment for leachate from closed landfill sites.
机译:进行了这项研究,以调查中试规模的渗透性反应性屏障(PRB)对植被的渗滤液的原位处理。检查了两种不同类型的PRB介质(有无氯化铁污泥)用于去除污染物。 PRB的复合介质包含40:60%w / w的粘土和沙子混合物(系统1)和30:10:60%w / w的粘土,氯化铁污泥和沙子混合物(系统2)。该系统以0.028 m(3)/ m(2).d的水力加载速率和10天的水力停留时间运行。结果表明,系统2的性能在污染物去除效率方面更好,平均生化需氧量,化学需氧量和凯氏总氮去除率分别为76.1%,68.5%和73.5%。水样品的荧光激发-发射矩阵分析和PRB介质的顺序萃取表明,通过形成铁有机复合物可以去除腐殖质。 PRB处理期间的温室气体(GHG)排放为8.2-52.1 mgCH(4)/ m(2).d,69.1-601.8 mgCO(2)/ m(2).d和0.04-0.99 mgN(2)O /m(2).d。将系统2与植被配合使用可减少温室气体排放。结果表明,带植被的PRB可作为封闭填埋场渗滤液的主要处理方法。

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