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Experimental Investigation of Chemical Oxygen Demand and Turbidity Removal from Cardboard Paper Mill Effluents using Combined Electrocoagulation and Adsorption Processes

机译:电凝与吸附相结合工艺对纸板造纸废水中化学需氧量和浊度去除的实验研究

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摘要

The removal of chemical oxygen demand (COD) and turbidity from cardboard paper mill effluents was experimentally investigated using aluminum and iron electrodes followed by adsorption of treated wastewater on granular activated carbon (GAC). The effects of electrolyse time, current density, initial pH, adsorption time, stirring, and granular activated carbon (GAC) amount were studied. For electrolyses, the maximum removal efficiencies of COD and turbidity under optimal operating conditions i.e. pH = 5.29 for Al electrode and pH = 7.21 for Fe electrode, with a current density of 4.41 mA/cm~2 and operating time of 10 min were 75-37% and 99-93% for Al electrode and 78.76% and 99-92% for Fe electrode, respectively. For electrocoagulation (EC) and adsorption process under operating conditions i.e. pH = 3.21 at 300 rpm with contact time of 120 min for Al electrode and 180 min for Fe electrode, the maximum removal efficiencies of COD were 98.97% and 9337%, respectively. The results obtained show good adsorption efficiency and short contact time obtained after Al-EC due to interference from color of dissolved iron. The present study proves the effectiveness of electrocoagulation/adsorption process for the highly concentrated organic pollutants present in paper mill effluents.
机译:实验研究了使用铝和铁电极从纸板造纸厂废水中去除化学需氧量(COD)和浊度,然后将处理后的废水吸附到颗粒活性炭(GAC)上的方法。研究了电解时间,电流密度,初始pH,吸附时间,搅拌和颗粒活性炭(GAC)量的影响。对于电解,在最佳工作条件下,即铝电极的pH = 5.29和铁电极的pH = 7.21,最佳电流条件下的最大COD去除效率和混浊度为4.41 mA / cm〜2,工作时间为10分钟。 Al电极分别为37%和99-93%,Fe电极为78.76%和99-92%。对于电凝(EC)和吸附过程,在300 rpm的pH = 3.21的操作条件下,铝电极的接触时间为120分钟,铁电极的接触时间为180分钟,最大COD去除效率分别为98.97%和9337%。所得结果显示出良好的吸附效率,并且由于溶解的铁的颜色的干扰,在Al-EC之后获得了短的接触时间。本研究证明了电凝聚/吸附过程对造纸厂废水中存在的高浓度有机污染物的有效性。

著录项

  • 来源
    《Environmental progress & sustainable energy》 |2012年第3期|p.361-370|共10页
  • 作者单位

    Laboratory of Materials and Catalyse, University of Djillali Liabes, Sidi Bel-Abbes, Algeria;

    Laboratory of Materials and Reactive Systems, University of Djillali Liabes, Sidi Bel-Abbes, Algeria;

    Laboratory of Materials and Reactive Systems, University of Djillali Liabes, Sidi Bel-Abbes, Algeria;

    Laboratory of Physico-Chemical Materials, University of Science and Technology, Oran, Algeria;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Al/Fe electrodes; wastewater; electro-chemical method; GAC;

    机译:铝/铁电极;废水;电化学方法广汽集团;

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