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Comparative study of electrochemical wastewater treatment processes for bilge water as oily wastewater: A kinetic approach

机译:舱底水为含油废水的电化学废水处理工艺的比较研究:动力学方法

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In this study treatability of bilge water was investigated by electrochemical processes: electrocoagulation/electroflotation process and also the electro-fenton process as an indirect electrooxidation process. As the seawater is mixed into bilge water, the chloride content and the conductivity of bilge water are quite high, which is a great advantage in terms of electrochemical wastewater treatment. Treatability of bilge water by electrocoagulation/electroflotation process is investigated by using aluminum and iron electrodes in accordance with pH, time, temperature and current density. When the aluminum and iron electrodes are compared in electrocoagulation-electroflotation process, the results clearly showed that the aluminum electrodes were more efficient and as well as in a short period of time as 10 min. Chemical oxygen demand and oil-grease removal values obtained as 64.8% and 57% from Al and 36.2% and 12.5% from Fe, respectively. On the other hand by electro-fenton process, it was seen that higher removal efficiencies were obtained in comparison to the electrocoagulation method, with the COD and oil-grease removal being equal to 71% and 69%, respectively. The discharge standards specified by MARPOL were obtained by the electro-fenton process. When processes are analyzed in economically way, the electricity cost of electrocoagulation process by aluminum, iron and electro-fenton process was 0.54 $/m(3), 0.53 $/m(3), 0.51 $/m(3), respectively. In addition, pseudo-second-order kinetic model was fitted for both COD and Oil&Grease removal in electrocoagulation process. (C) 2015 Published by Elsevier B.V.
机译:在这项研究中,通过电化学过程研究了舱底水的可处理性:电凝/电浮过程以及作为间接电氧化过程的电芬顿过程。由于海水被混入舱底水中,因此舱底水中的氯化物含量和电导率都很高,这在电化学废水处理方面具有很大的优势。根据pH,时间,温度和电流密度,使用铝和铁电极研究了通过电凝/电浮法处理舱底水的可处理性。当在电凝-电浮选过程中比较铝电极和铁电极时,结果清楚地表明,铝电极更有效,并且在短时间内(如10分钟)。从铝获得的化学需氧量和去除油脂的值分别为:Al的64.8%和57%,Fe的36.2%和12.5%。另一方面,通过电芬顿法,可以看出与电凝法相比,去除效率更高,COD和油脂去除率分别等于71%和69%。 MARPOL规定的排放标准是通过电子芬顿法获得的。从经济角度对工艺进行分析时,铝,铁和芬顿法电凝工艺的电费分别为0.54 $ / m(3),0.53 $ / m(3),0.51 $ / m(3)。此外,拟二阶动力学模型适用于电凝过程中COD和油脂的去除。 (C)2015由Elsevier B.V.发布

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