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Evaluation of the Treatment Process of Landfill Leachate Using the Toxicity Assessment Method

机译:利用毒性评估方法评估垃圾渗滤液的处理过程

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Landfill leachate is composed of a complex composition with strong biological toxicity. The combined treatment process of coagulation and sedimentation, anaerobics, electrolysis, and aerobics was set up to treat landfill leachate. This paper explores the effect of different operational parameters of coagulation and sedimentation tanks and electrolytic cells, while investigating the combined process for the removal efficiency of physicochemical indices after processing the landfill leachate. Meanwhile, a battery of toxicity tests with Vibrio fischeri , zebrafish larvae, and embryos were conducted to evaluate acute toxicity and calculated the toxicity reduction efficiency after each treatment process. The combined treatment process resulted in a 100% removal efficiency of Cu, Cd and Zn, and a 93.50% and an 87.44% removal efficiency of Ni and Cr, respectively. The overall removal efficiency of chemical oxygen demand (COD), ammonium nitrogen (NH 4 + -N), and total nitrogen (TN) were 93.57%, 97.46% and 73.60%, respectively. In addition, toxicity test results showed that the acute toxicity of landfill leachate had also been reduced significantly: toxicity units (TU) decreased from 84.75 to 12.00 for zebrafish larvae, from 82.64 to 10.55 for zebrafish embryos, and from 3.41 to 0.63 for Vibrio fischeri . The combined treatment process was proved to be an efficient treatment method to remove heavy metals, COD, NH 4 + -N, and acute bio-toxicity of landfill leachate.
机译:垃圾填埋渗滤液由具有强烈生物毒性的复杂组合物组成。建立了凝血和沉淀,厌氧,电解和有氧运动的组合治疗过程以治疗垃圾填埋场渗滤液。本文探讨了不同操作参数的凝固和沉降罐和电解细胞的影响,同时研究了处理垃圾填埋渗滤液后物理化学索引的去除效率的组合过程。同时,进行了一种毒性试验与vibrio fischeri,斑马鱼幼虫和胚胎进行急性毒性,并计算每种处理过程后的毒性降低效率。结合的处理过程导致Cu,Cd和Zn的100%除去效率,分别为93.50%和Ni和Cr的去除效率为93.50%和87.44%。化学需氧量(COD),氮气(NH 4 + -N)和总氮(TN)的总去除效率分别为93.57%,97.46%和73.60%。此外,毒性测试结果表明,垃圾渗滤液的急性毒性也显着降低:毒性单位(TU)从84.75〜12.00降低到斑马鱼幼虫,从82.64到10.55,用于斑马鱼胚胎,从3.41到0.63 for vibrio fischeri 。总而言之,将合并的处理过程成为一种有效的处理方法,以除去垃圾填埋液的重金属,鳕鱼,NH 4 + -N和急性生物毒性。

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