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Sequencing treatment of landfill leachate using ammonia stripping, Fenton oxidation and biological treatment

机译:氨汽提,Fenton氧化和生物处理对垃圾渗滤液的排序处理

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Landfill leachates contain a wide variety of pollutants such as organic matter, refractory compounds, ammonia, particulate and dissolved solids and hazardous metals requiring application of advanced and well designed treatment processes before release to the environment. The main purpose of this research was to evaluate the efficiency of combined air stripping, Fenton oxidation and biological treatment in treating landfill leachate, especially the elimination of ammonia and refractory organics. The laboratory scale set-up consisted of three sequential but separate steps. The optimum conditions for air stripping and the Fenton oxidation were determined for landfill leachate from Karaj city, Iran. The final step was a moving bed bioreactor with HRTs of 18, 12 and 6 h. The highest NH_3-N removal was 79% in the air stripping process at pH 10.5. At the optimum conditions for the Fenton reaction at a reaction time of 90 min, pH 3 and a H_2O_2/Fe~(2+) mass ratio of 20, the COD removal was 61% and improved the BOD/COD ratio from 0.42 to 0.78. The overall COD removal including the final biological reactor with a HRT of 6 h resulted in an effluent COD concentration of less than 100 mg L~(-1).
机译:垃圾填埋场渗滤液中包含多种污染物,例如有机物,难熔化合物,氨,颗粒和溶解的固体以及有害金属,在排放到环境中之前需要应用先进且经过精心设计的处理工艺。这项研究的主要目的是评估空气吹脱,Fenton氧化和生物处理相结合处理垃圾渗滤液的效率,尤其是消除氨和难熔有机物的效率。实验室规模的设置包括三个连续但独立的步骤。确定了来自伊朗卡拉伊市的垃圾渗滤液的气提和Fenton氧化的最佳条件。最后一步是HRT为18、12和6小时的移动床生物反应器。在pH 10.5的空气汽提过程中,最高的NH_3-N去除率为79%。在90分钟的反应时间,pH 3和H_2O_2 / Fe〜(2+)质量比为20的Fenton反应的最佳条件下,COD去除率为61%,BOD / COD比从0.42提高到0.78。 。包括最终生物反应器(HRT为6 h)在内的全部COD去除导致流出的COD浓度小于100 mg L〜(-1)。

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