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Removal of Real Textile Dyes by Electrocoagulation/Electroflotation in a Pilot External-Loop Airlift Reactor 被引量:1
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作者 H.Chenik M.Elhafdi +2 位作者 A.Dassaa A.H.Essadki m.azzi 《Journal of Water Resource and Protection》 2013年第10期1000-1006,共7页
This paper studied the efficiency of electrocoagulation/electroflotation in removing colour from real textile wastewater by using aluminum and iron electrodes in an innovative pilot external-loop airlift reactor of 15... This paper studied the efficiency of electrocoagulation/electroflotation in removing colour from real textile wastewater by using aluminum and iron electrodes in an innovative pilot external-loop airlift reactor of 150 L. The reactor was designed to operate in batch and continuous modes. The real effluent contained 90% of disperse dye and 10% of reactive dye. A complete flotation of pollutants with acceptable mixing was achieved in this reactor using only the overall liquid recirculation induced by H2 microbubbles. The treatment of these discharges was easier using electrodes of iron rather than aluminum. The optimal initial pH was 10 for both aluminum and iron electrodes. By using iron electrodes, the maximum decolourisation efficiency and COD reduction efficiency reached respectively 96% and 65% for 90 minutes of treatment. Similarly, by using aluminum electrodes, the maximum decolourisation efficiency reached 90%, COD reduction reached 51% for 120 minutes of treatment. In the case of an initial pH slightly different to 10, the required time to reach 90% ranged from double to triple. 展开更多
关键词 Pilot External Airlift Reactor ELECTROCOAGULATION ELECTROFLOTATION Real Textile Dye
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用电凝法处理鞣制废水
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作者 Z.ZAROUAL m.azzi +3 位作者 N.SAIB Y.KARHAT M.ZERTOUBI 聂敏(译) 《北京皮革(中外皮革信息版)(中)》 2005年第4期79-82,共4页
采用电凝法处理鞣制废水,考查了电凝时间,电流和电压对处理效果的影响。铁电极作为牺牲阳极。处理复合废水和鞣制废水的最佳条件分别是0.15A/cm^2,30min和0.70V,90min.可除去两种待查废水中超过99%的铬。实验结果表明电凝法可中... 采用电凝法处理鞣制废水,考查了电凝时间,电流和电压对处理效果的影响。铁电极作为牺牲阳极。处理复合废水和鞣制废水的最佳条件分别是0.15A/cm^2,30min和0.70V,90min.可除去两种待查废水中超过99%的铬。实验结果表明电凝法可中和废水的pH,并提出了导致pH变化的机理。 展开更多
关键词 废水 鞣制 凝法 用电 pH变化 牺牲阳极 最佳条件 铁电极
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