首页> 外文期刊>International journal of environmental analytical chemistry >Development and application of an analytical protocol for evaluation of treatment processes for landfill leachates. Ⅱ. Evaluation of leachate treatment efficiency of different steps in a constructed pilot plant
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Development and application of an analytical protocol for evaluation of treatment processes for landfill leachates. Ⅱ. Evaluation of leachate treatment efficiency of different steps in a constructed pilot plant

机译:分析规程的开发和应用,用于评估垃圾渗滤液的处理过程。 Ⅱ。评估中试工厂不同步骤的渗滤液处理效率

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Different methods for treatment of leachate from a municipal solid waste (MSW) landfill were tested in a pilot plant. Raw leachate was pre-treated with aeration and sedimentation, followed by several parallel individual steps such as bioremediation, chemical oxidation, ozonation, and geo-bed filters. The efficiency of different treatment steps was evaluated according to one previously developed protocol, which includes measurements of several parameters such as conductivity, pH, nutrients, chloride, metals, organic compounds, and acute toxicity before and after a treatment step. The treatment steps which showed the highest efficiency towards organic pollutants in leachate were ozone treatment and chemical oxidation. The use of an adsorption filter, a geo-bed with a mixture of peat and bottom ash with ca 10% remaining carbon, also had good effects. A combination of pre-treatment and a geo-bed filter with peat and carbon ash gave the best overall treatment results when water-quality parameters such as total organic carbon and ammonia-nitrogen were also considered.
机译:在中试工厂中测试了处理城市生活垃圾(MSW)垃圾填埋场渗滤液的不同方法。原始渗滤液经过曝气和沉淀预处理,然后经过几个平行的独立步骤,例如生物修复,化学氧化,臭氧化和地质床过滤器。根据一项先前开发的协议评估了不同处理步骤的效率,该协议包括在处理步骤之前和之后对多个参数(例如电导率,pH,营养素,氯化物,金属,有机化合物和急性毒性)进行测量。对渗滤液中有机污染物的处理效率最高的处理步骤是臭氧处理和化学氧化。使用吸附滤池,泥炭和底灰的混合物(含约10%的残留碳)的地质床也具有良好的效果。当还考虑水质参数(例如总有机碳和氨氮)时,将预处理和土工层过滤器与泥炭和碳灰混合使用可获得最佳的总体处理效果。

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