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Hazardous waste landfill leachate treatment by combined chemical and biological techniques

机译:化学和生物技术相结合的危险废物填埋场渗滤液处理

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The efficacies of coagulation, ozonation, Fenton treatment, activated sludge process, Fenton treatment-activated sludge process (CHEM-BIO) and activated sludge process-Fenton treatment (BIO-CHEM) to treat hazardous waste landfill leachate were investigated and compared. The results of the biodegradability test revealed a high content of readily biodegradable organic matter in semicoke landfill leachate, and thus, aerobic biological oxidation was found to be a more reasonable and cost-effective technique for leachate treatment than direct chemical processes (ozonation, Fenton treatment). However, in terms of treatment efficacy, both chemical and biological processes resulted in a high residual organic load, indicating an insufficient leachate quality improvement. The treatment performance of the combined schemes (BIO-CHEM and CHEM-BIO) proved more effective and ensured the removal efficacy percentage met that required by EU legislation as well as the specific target discharge limits of the measured parameters. Accounting for the treatment cost-effectiveness, BIO-CHEM proved to be a more feasible option and could be suggested as the most efficient and practicable technological scheme for hazardous waste landfill leachate treatment.
机译:研究并比较了混凝,臭氧化,芬顿处理,活性污泥法,芬顿处理-活性污泥法(CHEM-BIO)和活性污泥法-芬顿处理(BIO-CHEM)对危险废物填埋场渗滤液的处理效果。生物降解性测试的结果表明,半焦垃圾填埋场渗滤液中易生物降解的有机物含量很高,因此,有氧生物氧化被认为是一种比直接化学过程(臭氧化,芬顿处理)更合理,更具成本效益的渗滤液处理技术。 )。然而,就治疗效果而言,化学和生物过程均导致高残留有机负荷,表明渗滤液质量改进不足。组合方案(BIO-CHEM和CHEM-BIO)的处理性能证明更为有效,并确保去除效率百分比符合欧盟法规的要求以及所测参数的特定目标排放限值。考虑到处理的成本效益,BIO-CHEM被证明是一种更可行的选择,并被建议作为危险废物垃圾渗滤液处理的最有效,最可行的技术方案。

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