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REMOVAL OF METALS IN LEACHATE FROM SEWAGE SLUDGE USING ELECTROCHEMICAL TECHNOLOGY

机译:电化学技术去除污水污泥中渗滤液中的金属

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Heavy metals in acidic leachates from sewage sludge are usually removed by chemical precipitation, which often requires high concentration of chemicals and induces high metallic sludge production. Electrochemical technique has been explored as an alternative method in a laboratory pilot scale reactor for heavy metals (Cu and Zn) removal from sludge leachate. Three electrolytic cell arrangements using different electrodes materials were tested: mild steel or aluminium bipolar electrode (EC cell), Graphite/stainless steel monopolar electrodes (ER cell) and iron-monopolar electrodes (EC-ER cell). Results showed that the best performances of metal removal were obtained with EC and EC-ER cells using mild steel electrodes operated respectively at current intensities of 0.8 and 2.0A through 30 and 60 min of treatment. The yields of Cu and Zn removal from leachate varied respectively from 92.4 to 98.9% and from 69.8 to 76.6%. The amounts of 55 and 44 kg tds~(-1) of metallic sludge were respectively produced using EC and EC-ER cells. EC and EC-ER systems involved respectively a total cost of 21.2 and 13.1 CAN$ per ton of dry sludge treated including only energy consumption and metallic sludge disposal. The treatment using EC-ER system was found to be effective and more economical than the traditional metal precipitation using either Ca(OH)_2 and/or NaOH.
机译:污水污泥中酸性渗滤液中的重金属通常通过化学沉淀法去除,这通常需要高浓度的化学物质并导致高金属污泥产生。电化学技术已经作为实验室中试规模反应器中的一种替代方法进行了探索,该反应器用于从污泥渗滤液中去除重金属(铜和锌)。测试了三种使用不同电极材料的电解池装置:低碳钢或铝双极电极(EC池),石墨/不锈钢单极电极(ER池)和铁单极电极(EC-ER池)。结果表明,使用EC和EC-ER电池使用分别在30和60分钟的电流强度分别为0.8和2.0A的低碳钢电极运行时,可获得最佳的金属去除性能。从渗滤液中去除铜和锌的产率分别为92.4%至98.9%和69.8%至76.6%。使用EC和EC-ER池分别产生了55和44 kg tds〜(-1)的金属污泥。 EC和EC-ER系统每吨干污泥的总成本分别为21.2和13.1 CAN $,仅包括能耗和金属污泥处置。发现使用EC-ER系统进行处理比使用Ca(OH)_2和/或NaOH进行传统金属沉淀更为有效且经济。

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