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首页> 外文期刊>Journal of the Chinese Institute of Chemical Engineers >Treatment of leachate produced in stabilized landfills by coagulation and Fenton oxidation process
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Treatment of leachate produced in stabilized landfills by coagulation and Fenton oxidation process

机译:通过凝结和Fenton氧化工艺处理稳定垃圾填埋场产生的渗滤液

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摘要

It is very difficult to remove high concentration, non-biodegradable organic substances from the leachate of a stabilized landfill, by biological treatment. The purpose of this paper is to find proper conditions for their removal by using the Fenton oxidation reaction. The ratio of BOD5/COD in the raw water was between 0.11 and 0.17. The optimum condition of the Fenton oxidation process using various coagulants, Fe2+, and Fe3+ was decided by the treatment efficiency of organic substances. When the proper conditions for using coagulant were met, 1,500 mg/l of FeCl3 at PH 5 was added. When the proper conditions for Fenton oxidation using Fe2+ as a catalyst were met, we added 1, 500 mg/l of H2O2 and 2, 000 mg/l of Fe2+ at PH 3, and then, using Fe3+ we added 1,200 mg/l of H2O2 and 1,500 mg/l of Fe3+. The COD removal rate of leachate was between 45.1% and 50% when the Fenton oxidation reaction was applied by itself, but the proper conditions were reached using, 500 mg/l of H2O2 and 600 mg/l 1 of Fe2+ at PH 3, when the coagulation process and Fenton oxidation process using Fe2+ as a catalyst were put together. At this time the ratio of BOD5/COD was improved to 0.45 and this process is observed to be applicable as a biological pre-treatment. [References: 7]
机译:通过生物处理从稳定的垃圾填埋场的渗滤液中去除高浓度,不可生物降解的有机物质非常困难。本文的目的是通过Fenton氧化反应找到合适的去除条件。原水中的BOD5 / COD之比在0.11至0.17之间。使用各种混凝剂Fe2 +和Fe3 +的Fenton氧化过程的最佳条件取决于有机物质的处理效率。当满足使用凝结剂的适当条件时,在PH 5下添加1,500 mg / l的FeCl3。当满足使用Fe2 +作为催化剂进行Fenton氧化的适当条件时,我们在pH 3下添加了1,500 mg / l的H2O2和2,000 mg / l的Fe2 +,然后,使用Fe3 +添加了1,200 mg / l的H2O2。 H2O2和1,500 mg / l Fe3 +。单独进行Fenton氧化反应时,渗滤液的COD去除率在45.1%至50%之间,但当pH值为3时,使用500 mg / l的H2O2和600 mg / l 1的Fe2 +达到了适当的条件。以Fe2 +为催化剂的凝固过程和Fenton氧化过程结合在一起。此时,BOD5 / COD的比例提高到0.45,并且可以观察到该方法适用于生物预处理。 [参考:7]

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