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Evaluation of the main parameters affecting the Fenton oxidation process in municipal landfill leachate treatment

机译:市政垃圾填埋场渗滤液处理中影响Fenton氧化过程的主要参数评估

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The aim of this study was to investigate the use of the Fenton oxidation process for treating leachate from a municipal solid waste landfill collected from Aradkooh site, Tehran, Iran. The focus of the study was to evaluate the process performance by COD removal efficiency. Results indicate that the optimum amounts of oxidation parameters in the Fenton process were as follows: oxidation pH = 4, H_2O_2/Fe~(2+) molar ratio = 4-5, Fe~(2+) ion dosage = 11200-19 600 mgL~(-1) and oxidation time = 20-30 min. In addition, the maximum amount of COD that it was possible to remove by the Fenton process was about 47% of the initial value (i.e. 35000mgL~(-1)). This level of removal was achieved by using 19 600mg of Fe~(2+) per litre of leachate with H_2O_2/Fe~(2+) molar ratio of 4.5, for the following operational conditions: oxidation pH=4; coagulation pH = 7.5; oxidation time= 100min; coagulation time = 30min. Furthermore, it was found that 90% of oxidation occurred during the first 20 min of the oxidation stage. All the experiments, except for oxidation time, were conducted in two rounds for better optimization.
机译:这项研究的目的是研究Fenton氧化工艺用于处理从伊朗德黑兰Aradkooh场收集的城市固体垃圾填埋场中的渗滤液。研究的重点是通过去除COD的效率来评估工艺性能。结果表明,Fenton工艺的最佳氧化参数为:氧化pH = 4,H_2O_2 / Fe〜(2+)摩尔比= 4-5,Fe〜(2+)离子用量= 11200-19 600 mgL〜(-1),氧化时间= 20-30分钟。另外,可以通过芬顿法除去的COD的最大量约为初始值的47%(即35000mgL·(-1))。在以下操作条件下,通过使用19 600mg Fe〜(2 +)/升浸出液,H_2O_2 / Fe〜(2+)摩尔比为4.5,达到该去除水平:氧化pH = 4;凝结pH = 7.5;氧化时间= 100min;凝结时间= 30min。此外,发现在氧化阶段的前20分钟内发生了90%的氧化。除氧化时间外,所有实验均分两轮进行,以实现更好的优化。

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