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Humic acid removal by electrocoagulation using aluminium sacrificial anode under influencing operational parameters

机译:在影响操作参数的情况下使用铝牺牲阳极通过电凝去除腐殖酸

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摘要

Humic acids (HA) in water can react with active chlorine to produce carcinogenic compounds and their presence is, therefore, considered as a serious problem in water purification plants throughout the world. The present study was undertaken with the aim of investigating the efficiency of using an electrocoagulation (EC) process based on aluminium electrodes at a laboratory scale as a complementary treatment step for HA removal from surface water. A series of experimental assays were performed to determine the optimal operating conditions (electrolysis time, pH, current intensity and initial concentration) involved in the EC mechanism during the HA removal process. The findings revealed that under optimum conditions HA could be removed by up to 72%. Further, high performance liquid chromatography and Fourier transform infrared spectroscopy analyses showed the non-forming products and non-attack points of the HA molecules, respectively. Overall, the results yielded in a pH range (6-7) and low current density (1.78-7.14 mA/cm~2) were promising and indicated that the EC method was effective for the achievement of HA removal from surface waters.
机译:水中的腐殖酸(HA)可以与活性氯反应生成致癌化合物,因此,腐殖酸(HA)的存在被认为是全世界净水厂中的严重问题。进行本研究的目的是研究在实验室规模上使用基于铝电极的电凝(EC)工艺作为从地表水中去除HA的补充处理步骤的效率。进行了一系列实验测定,以确定在HA去除过程中EC机制所涉及的最佳操作条件(电解时间,pH,电流强度和初始浓度)。研究结果表明,在最佳条件下,HA最多可以去除72%。此外,高效液相色谱和傅立叶变换红外光谱分析分别显示了HA分子的非形成产物和非攻击点。总体而言,在pH范围(6-7)和低电流密度(1.78-7.14 mA / cm〜2)下获得的结果是有希望的,表明EC方法对于实现从地表水中去除HA而言是有效的。

著录项

  • 来源
    《Desalination and water treatment》 |2014年第30期|5442-5453|共12页
  • 作者单位

    Faculte des Sciences de l'Ingenieur, Laboratoire de Biochimie et de Microbiologie Industrielle, Department de Chimie Industrielle, Universite Saad Dahlab de Blida, B.P 270, Blida 09000, Algeria,Centre National de Recherche et de Developpement de la Peche et de l'Aquaculture 11, Bd Colonel Amirouche, Bousmail, Algeria;

    Faculte des Sciences de l'Ingenieur, Laboratoire de Biochimie et de Microbiologie Industrielle, Department de Chimie Industrielle, Universite Saad Dahlab de Blida, B.P 270, Blida 09000, Algeria,Centre National de Recherche et de Developpement de la Peche et de l'Aquaculture 11, Bd Colonel Amirouche, Bousmail, Algeria;

    Faculte des Sciences de l'Ingenieur, Laboratoire de Biochimie et de Microbiologie Industrielle, Department de Chimie Industrielle, Universite Saad Dahlab de Blida, B.P 270, Blida 09000, Algeria;

    Faculte des Sciences de l'Ingenieur, Laboratoire de Genie Chimique, Department de Chimie Industrielle, Universite Saad Dahlab de Blida, Blida, Algeria;

    Faculte des Sciences de l'Ingenieur, Laboratoire de Biochimie et de Microbiologie Industrielle, Department de Chimie Industrielle, Universite Saad Dahlab de Blida, B.P 270, Blida 09000, Algeria;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Electrocoagulation; Humic acids; Aluminium electrodes; Surface waters; Mechanisms;

    机译:电凝;腐殖酸;铝电极;地表水;机制;

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