酸根离子对铝板电絮凝处理含镍废水的影响

张峰振, 杨波, 张鸿, 赵绪新, 刘剑洪. 酸根离子对铝板电絮凝处理含镍废水的影响[J]. 环境工程学报, 2014, 8(10): 4081-4085.
引用本文: 张峰振, 杨波, 张鸿, 赵绪新, 刘剑洪. 酸根离子对铝板电絮凝处理含镍废水的影响[J]. 环境工程学报, 2014, 8(10): 4081-4085.
Zhang Fengzhen, Yang Bo, Zhang Hong, Zhao Xuxin, Liu Jianhong. Effect of acid radical ions on removal of Ni2+ by electrocoagulation using aluminum electrodes[J]. Chinese Journal of Environmental Engineering, 2014, 8(10): 4081-4085.
Citation: Zhang Fengzhen, Yang Bo, Zhang Hong, Zhao Xuxin, Liu Jianhong. Effect of acid radical ions on removal of Ni2+ by electrocoagulation using aluminum electrodes[J]. Chinese Journal of Environmental Engineering, 2014, 8(10): 4081-4085.

酸根离子对铝板电絮凝处理含镍废水的影响

  • 基金项目:

    国家自然科学基金资助项目(21177089,11275130)

    国家“863”高技术研究发展计划项目(2013AA062705)

  • 中图分类号: X703.1;O646.5

Effect of acid radical ions on removal of Ni2+ by electrocoagulation using aluminum electrodes

  • Fund Project:
  • 摘要: 电絮凝是去除废水中重金属离子的有效技术。本研究考察了常见酸根离子SO42-、Cl-、NO3-和H2PO2-对铝板电絮凝除Ni2+的影响。结果表明,SO42-、Cl-、NO3-均有利于Ni2+的去除,其中由于NO3-的还原可提高铝阳极溶解效率,因此,当其浓度从0.0186增至0.186 mol/L时,反应30 min后Ni2+去除率从77.9%升至99.8%。H2PO2-会降低絮体絮凝活性并钝化电极,从而显著降低Ni2+去除率,其浓度从0.0186 mol/L增至0.372 mol/L,反应60 min后Ni2+去除率从91.7%降至30.5%。另外,对各阴离子存在下溶解态铝絮体聚合度以及电解过程pH的检测,进一步揭示这4种离子对电絮凝影响机制。
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  • [1] Mollah M.Y.A.,Morkovsky P.,Gomes J.A.G.,et al.Fundamentals,present and future perspectives of electrocoagulation.Journal of Hazardous Materials,2004,114(1-3):199-210
    [2] 曲久辉,刘会娟.水处理电化学原理与技术.北京:科学出版社,2007
    [3] 冯爽,孔海南,褚春凤,等.电絮凝法去除二级处理出水中的磷.中国给水排水,2003,19(1):52-54 Feng Shuang,Kong Hainan,Chu Chunfeng,et al.The removal of phosphorus from secondary treatment effluent by electrocoagulation.China Water & Wastewater,2003,19(1):52-54(in Chinese)
    [4] 由培远,陆晓华.焦化生化外排水电絮凝和化学混凝的深度处理.环境科学与技术,2010,33(6E):337-340 You Peiyuan,Lu Xiaohua.Advanced treatment of bio-treatment outflow of coking wastewater by coagulation and electric flocculation.Environmental Science & Technology,2010,33(6E):337-340(in Chinese)
    [5] 陈福星,周立祥.生物催化合成的施氏矿物对废水中Cr(VI)的吸附.中国环境科学,2006,26(1):11-15 Chen Fuxing,Zhou Lixiang.Adsorption of Cr(VI) in wastewater by catalytic biosynthesis Schwertmannite.China Environmental Science,2006,26(1):11-15(in Chinese)
    [6] 汤鸿霄.无机高分子絮凝理论与絮凝剂.北京:中国建筑工业出版社,2006
    [7] Hu C.Y.,Lo S.L.,Kuan W.H.Effects of co-existing anions on fluoride removal in electrocoagulation (EC) process using aluminum electrodes.Water Research,2003,37(18):4513-4523
    [8] Caizares P.,Martínez F.,Jiménez C.,et al.Coagulation and electrocoagulation of wastes polluted with dyes.Environment Science & Technology,2006,40(20):6418-6424
    [9] Mansouri K.,Elsaid K.,Bedoui A.,et al.Application of electrochemically dissolved iron in the removal of tannic acid from water.Chemical Engineering Journal,2011,172(2-3):970-976
    [10] Hanay .,Hasar H.Effect of anions on removing Cu2+,Mn2+ and Zn2+ in electrocoagulation process using aluminum electrodes.Journal of Hazardous Materials,2011,189(1-2):572-576
    [11] Tanada S.,Kabayama M.,Kawasaki N.,et al.Removal of phosphate by aluminum oxide hydroxide.Journal of Colloid and Interface Science,2003,257(1):135-140
    [12] Sposito G.The Environmental Cchemistry of Aluminum.Boca Raton:CRC Press,1996
    [13] 吴珍,张盼月,曾光明,等.不同铝形态去除水中腐殖酸的混凝特性.环境科学,2008,29(7):1903-1907 Wu Zhen,Zhang Panyue,Zeng Guangming,et al.Coagulation characteristics of different Al species on humic acid removal from water.Environmental Science,2008,29(7):1903-1907(in Chinese)
    [14] 杨天明,王洪杰,兰华春,等.电絮凝-气浮-砂滤组合工艺除氟.环境工程学报,2012,6(6):1890-1894 Yang Tianming,Wang Hongjie,Lan Huachun,et al.Removal of fluoride by combined technology of electrocoagulation-flotation-filtration.Chinese Journal of Environmental Engineering,2012,6(6):1890-1894(in Chinese)
    [15] Malpass G.R.P.,Kalaji M.,Venancio E.C.,et al.Electrodeposition of nickel on carbon felt.Electrochim Acta,2004,49(27):4933-4938
    [16] Kolics A.,Polkinghorne J.C.,Wieckowski A.Adsorption of sulfate and chloride ions on aluminum.Electrochim Acta,1998,43(18):2605-2618
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  • 收稿日期:  2013-11-25
  • 刊出日期:  2014-09-28
张峰振, 杨波, 张鸿, 赵绪新, 刘剑洪. 酸根离子对铝板电絮凝处理含镍废水的影响[J]. 环境工程学报, 2014, 8(10): 4081-4085.
引用本文: 张峰振, 杨波, 张鸿, 赵绪新, 刘剑洪. 酸根离子对铝板电絮凝处理含镍废水的影响[J]. 环境工程学报, 2014, 8(10): 4081-4085.
Zhang Fengzhen, Yang Bo, Zhang Hong, Zhao Xuxin, Liu Jianhong. Effect of acid radical ions on removal of Ni2+ by electrocoagulation using aluminum electrodes[J]. Chinese Journal of Environmental Engineering, 2014, 8(10): 4081-4085.
Citation: Zhang Fengzhen, Yang Bo, Zhang Hong, Zhao Xuxin, Liu Jianhong. Effect of acid radical ions on removal of Ni2+ by electrocoagulation using aluminum electrodes[J]. Chinese Journal of Environmental Engineering, 2014, 8(10): 4081-4085.

酸根离子对铝板电絮凝处理含镍废水的影响

  • 1. 深圳大学化学与化工学院, 深圳市功能高分子重点实验室, 深圳 518060
基金项目:

国家自然科学基金资助项目(21177089,11275130)

国家“863”高技术研究发展计划项目(2013AA062705)

摘要: 电絮凝是去除废水中重金属离子的有效技术。本研究考察了常见酸根离子SO42-、Cl-、NO3-和H2PO2-对铝板电絮凝除Ni2+的影响。结果表明,SO42-、Cl-、NO3-均有利于Ni2+的去除,其中由于NO3-的还原可提高铝阳极溶解效率,因此,当其浓度从0.0186增至0.186 mol/L时,反应30 min后Ni2+去除率从77.9%升至99.8%。H2PO2-会降低絮体絮凝活性并钝化电极,从而显著降低Ni2+去除率,其浓度从0.0186 mol/L增至0.372 mol/L,反应60 min后Ni2+去除率从91.7%降至30.5%。另外,对各阴离子存在下溶解态铝絮体聚合度以及电解过程pH的检测,进一步揭示这4种离子对电絮凝影响机制。

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