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Post-treatment of sanitary landfill leachate by coagulation-flocculation using chitosan as primary coagulant

机译:壳聚糖作为主要混凝剂的混凝絮凝处理卫生垃圾渗滤液

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Chitosan was chosen as an alternative primary coagulant in a complementary coagulation-flocculation treatment of sanitary landfill leachate with the aim of removing recalcitrant organic matter. In order to optimize the process conditions, central composite design and response surface methodology were applied. To evaluate the performance of the process using chitosan, we also carried out tests with aluminium sulphate (Al-2 (SO4)(3 center dot)14 H2O) as coagulant. In addition, acute toxicity tests were carried using the duckweed Lemna minor and the guppy fish Poecilia reticulata as test organisms. The analytic hierarchy process was employed for selecting the most appropriate coagulant. Mean values of true colour removal efficiency of 80% and turbidity removal efficiency of 91.4% were reached at chitosan dosages of 960 mg L-1 at pH 8.5. The acute toxicity tests showed that organisms were sensitive to all samples, mainly after coagulation-flocculation using chitosan. CE50 for L. minor was not determined because there was no inhibition of the average growth rate and biomass production; LC50 for P. reticulata was 23% (v v(-1)). Multi-criteria analysis showed that alum was the most appropriate coagulant. Therefore, chitosan as primary coagulant was not considered to be a viable alternative in the post-treatment of landfill leachate.
机译:壳聚糖被选作卫生垃圾渗滤液的补充混凝-絮凝处理的替代主要凝结剂,目的是去除顽固的有机物。为了优化工艺条件,应用了中心复合材料设计和响应面方法。为了评估使用壳聚糖的工艺的性能,我们还使用硫酸铝(Al-2(SO4)(3中心点)14 H2O)作为凝结剂进行了测试。此外,使用浮萍小Lemna和孔雀鱼鱼Poecilia reticulata作为测试生物进行了急性毒性测试。采用层次分析法选择最合适的混凝剂。在pH 8.5的情况下,在960 mg L-1的壳聚糖剂量下,真色去除效率和浊度去除效率的平均值分别为80%和91.4%。急性毒性试验表明,生物体对所有样品均敏感,主要是在使用壳聚糖进行混凝絮凝之后。未确定小L. CE50的CE50,因为没有抑制平均增长率和生物量产生;网纹假单胞菌的LC50为23%(v v(-1))。多标准分析表明,明矾是最合适的混凝剂。因此,壳聚糖作为主要凝结剂在垃圾渗滤液的后处理中不被认为是可行的选择。

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