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Municipal solid waste landfill leachate treatment by fenton photo-fenton and fenton-like processes: Effect of some variables

机译:芬顿光芬顿和类芬顿工艺处理城市生活垃圾填埋场渗滤液:一些变量的影响

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摘要

Advanced oxidation processes like Fenton and photo-Fenton have been effectively applied to oxidize the persistent organic compounds in solid waste leachate and convert them to unharmful materials and products. However, there are limited data about application of Fenton-like process in leachate treatment. Therefore, this study was designed with the objective of treating municipal landfill leachate by Fenton, Fenton-like and photo–Fenton processes to determine the effect of different variables, by setting up a pilot system. The used leachate was collected from a municipal unsanitary landfill in Qaem-Shahr in the north of Iran. Fenton and Fenton-like processes were conducted by Jar-test method. Photo-Fenton process was performed in a glass photo-reactor. In all processes, H2O2 was used as the oxidant. FeSO4.7H2O and FeCl3.6H2O were used as reagents. All parameters were measured based on standard methods. The results showed that the optimum concentration of H2O2 was equal to 5 g/L for the Fenton-like process and 3 g/L for the Fenton and photo-Fenton processes. The optimum ratio of H2O2: Fe+2/Fe+3 were equal to 8:1 in all processes. At optimum conditions, the amount of COD removal was 69.6%, 65.9% and 83.2% in Fenton, Fenton-like and photo–Fenton processes, respectively. In addition, optimum pH were 3, 5 and 3 and the optimum contact time were 150, 90 and 120 minutes, for Fenton, Fenton-like and photo–Fenton processes, respectively. After all processes, the biodegradability (BOD5/COD ratio) of the treated leachate was increased compared to that of the raw leachate and the highest increase in BOD5/COD ratio was observed in the photo-Fenton process. The efficiency of the Fenton-like process was overally less than Fenton and photo-Fenton processes, meanwhile the Fenton-like process was at higher pH and did not show problems.
机译:Fenton和Photo-Fenton等先进的氧化工艺已被有效地用于氧化固体垃圾渗滤液中的持久性有机化合物,并将其转化为无害的材料和产品。但是,关于Fenton样工艺在渗滤液处理中的应用的数据有限。因此,本研究的目的是通过建立试验系统,通过芬顿,类芬顿和光芬顿过程处理市政垃圾渗滤液,以确定不同变量的影响。用过的渗滤液是从伊朗北部Qaem-Shahr的一个市政不卫生垃圾填埋场收集的。 Fenton和类Fenton过程通过Jar-test方法进行。在玻璃光反应器中进行光芬顿法。在所有过程中,都使用H2O2作为氧化剂。 FeSO4.7H2O和FeCl3.6H2O用作试剂。所有参数均根据标准方法进行测量。结果表明,对于Fenton样工艺,H2O2的最佳浓度等于5μg/ L,对于Fenton和光Fenton工艺,其最佳浓度为3μg/ L。在所有过程中,H2O2:Fe +2 / Fe +3 的最佳比例等于8:1。在最佳条件下,Fenton,类Fenton和光Fenton工艺的COD去除量分别为69.6%,65.9%和83.2%。此外,对于Fenton,类Fenton和光Fenton工艺,最佳pH分别为3、5和3,最佳接触时间分别为150、90和120分钟。在所有过程之后,与未经处理的渗滤液相比,处理过的渗滤液的生物降解性(BOD5 / COD比)增加,并且在光芬顿工艺中观察到BOD5 / COD比的最高增加。 Fenton样工艺的效率总体上低于Fenton和光Fenton工艺,同时Fenton样工艺的pH较高,没有出现问题。

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