Heavy metals partition between leachate and solids in the course of municipal sewage treatment

H. Obarska-Pempkowiak, Wieslaw Butajlo, J. Pempkowiak
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Abstract

Measurements of heavy metals contents (Cu, Zn, Pb, Cd) were carried out in liquid and solid fractions of sewage and sewage sludge after stabilization as well as dewatering. Investigation was carried out in municipal WWTP ,,Wschod" in Gdansk. The flow of sewage was equal to 88 000 m3 /d. The treatment consists of two stages: the first stage - mechanical (4screens, 2 sandtraps, 4 primary sedimentation tanks) and the second stage - advanced biological MUCT system (6 reactors - each incorporating the following chambers: dephosphatation, pre-denitrification, denitrification and nitrification followed by 2 secondary sedimentation tanks) modified by introduction of an additional chamber which secures dioxidation of sewage recirculated between nitrification and denitrification chambers. Sewage sludge (primary and secondary) is stabilized by fermentation. The last step of sludge utilization is mechanical dewatering. Samples of sewage were collected at the following points of the WWTP: at the beginning - raw sewage, mechanically treated sewage and biologically treated sewage. Samples of reject waters after thickening and after mechanical dewatering of sludge were collected too. The following types of sewage sludge were investigated: primary, secondary, thickened (on the Klein press), digested and mechanically dewatered (Noxon centrifuges). In the sampling points samples were collected twice per month during the 6 months period in the years 2000-2001. Inflowing sewage carried the following loads of heavy metals: Zn - 27.2 kg/d, Cu - 5.4 kg/d, Pb - 1.3 kg/d and Cd - 0.4 kg/d.  Basing on balances of heavy metals loads it was proved that 87.0% Zn and 83.0% Cu were kept in sludge. Among analysed sewage sludge samples, the highest contents of heavy metals was found in sludge after mechanical dewatering and in the mixture of primary and secondary sludge (Zn - 780.4 mg/kg d.m., Cu - 144.6 mg/kg d.m., Pb - 5.4 mg/kg d.m. and Cd - 2.4 mg/kg d.m. The contents of heavy metals in examined sludge were compared with Polish admissible loads of metals applied with sludge to soil fertilization. Basing on the findings, admissible loads of sewage sludge to agricultural land were not exceeded.
城市污水处理过程中,重金属在渗滤液和固体固体之间的分割
对稳定化和脱水后的污水和污泥的液体和固体组分进行了重金属(Cu、Zn、Pb、Cd)含量的测定。调查在格但斯克市的市政污水处理厂,Wschod进行。污水流量为88 000 m3 /d。处理包括两个阶段:第一阶段-机械(4个筛网,2个沙池,4个初级沉淀池)和第二阶段-先进的生物MUCT系统(6个反应器-每个反应器包括以下室:除磷、预反硝化、反硝化和硝化(随后是2个二级沉淀池),通过引入一个额外的室来改进,该室确保在硝化和反硝化室之间循环的污水氧化。污水污泥(一级和二级)通过发酵稳定。污泥利用的最后一步是机械脱水。污水样本在污水处理厂的以下地点收集:开始时-未经处理的污水,机械处理的污水和生物处理的污水。并收集了污泥浓缩后和机械脱水后的废水样品。研究了以下类型的污水污泥:一级,二级,浓缩(在克莱因压榨机上),消化和机械脱水(诺克森离心机)。在2000-2001年的6个月期间,在采样点每月收集两次样本。流入污水的重金属负荷为:Zn - 27.2 kg/d, Cu - 5.4 kg/d, Pb - 1.3 kg/d, Cd - 0.4 kg/d。根据重金属负荷平衡,污泥中锌和铜的保有量分别为87.0%和83.0%。在分析的污水污泥样本中,在机械脱水后的污泥和一次污泥和二次污泥的混合物中发现重金属含量最高(Zn - 780.4 mg/kg d.m, Cu - 144.6 mg/kg d.m, Pb - 5.4 mg/kg d.m和Cd - 2.4 mg/kg d.m)。所检查污泥中的重金属含量与波兰土壤施肥污泥中重金属的允许负荷进行了比较。根据调查结果,污水污泥对农业用地的允许负荷没有超过。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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