印染废水生化出水中各类有机物在Fenton 氧化过程中的去除效果

李新, 刘勇弟, 孙贤波, 徐宏勇, 钱飞跃, 李欣珏, 李暮. 印染废水生化出水中各类有机物在Fenton 氧化过程中的去除效果[J]. 环境工程学报, 2012, 6(11): 3953-3958.
引用本文: 李新, 刘勇弟, 孙贤波, 徐宏勇, 钱飞跃, 李欣珏, 李暮. 印染废水生化出水中各类有机物在Fenton 氧化过程中的去除效果[J]. 环境工程学报, 2012, 6(11): 3953-3958.
Li Xin, Liu Yongdi, Sun Xianbo, Xu Hongyong, Qian Feiyue, Li Xinjue, Li Mu. Removal effect of different organic fractions from bio-treated effluent of dye wastewater by Fenton reagent[J]. Chinese Journal of Environmental Engineering, 2012, 6(11): 3953-3958.
Citation: Li Xin, Liu Yongdi, Sun Xianbo, Xu Hongyong, Qian Feiyue, Li Xinjue, Li Mu. Removal effect of different organic fractions from bio-treated effluent of dye wastewater by Fenton reagent[J]. Chinese Journal of Environmental Engineering, 2012, 6(11): 3953-3958.

印染废水生化出水中各类有机物在Fenton 氧化过程中的去除效果

  • 基金项目:

    国家"863"高技术研究发展计划重点项目(2009AA063904)

  • 中图分类号: X791

Removal effect of different organic fractions from bio-treated effluent of dye wastewater by Fenton reagent

  • Fund Project:
  • 摘要: 考察了Fenton氧化法处理印染废水生化出水时,不同因素对色度去除效果的影响。在最佳处理条件下,即[H2O2]∶[Fe2+]为6∶1,反应初始pH为4.0,H2O2和FeSO4的投加量分别为3.6 mmol/L和0.6 mmol/L,反应时间为30 min,UV254、DOC和COD的去除率分别达到了84%、52%和84%,ADMI7.6和稀释倍数表征的色度去除率分别达到了94%和96%。通过XAD-8/XAD-4吸附树脂联用技术将印染废水生化出水中溶解性有机物分为疏水酸、非酸疏水物质、弱疏水物质及亲水物质4类有机物。实验结果表明,对于该印染废水的生化出水,疏水性物质是引起色度的主要物质,所占比例以ADMI7.6表征时为92%,其中以非酸疏水物质的贡献最大,达到53%。Fenton试剂氧化处理对此水样中的非酸疏水物质和疏水酸均有较好的去除效果,对弱疏水性有机物和亲水性有机物去除率较低。
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  • [1] 戴日成, 张统, 郭茜, 等. 印染废水水质特征及处理技术综合. 给水排水, 2000, 26(10): 33-37 Dai Richeng, Zhang Tong, Guo Qian, et al. Printing and dyeing wastewater treatment technology and comprehensive features. Water & Wastewater, 2000, 26(10): 33-37 (in Chinese)
    [2] 汪晓军, 顾晓扬. 纺织印染废水治理的现状及未来发展的思考. 中国科技成果, 2008, (10): 18-20 Wang Xiaojun, Gu Xiaoyang. Textile printing and dyeing wastewater treatment situation and future development of thinking. China Science and Technology Achievements, 2008, (10): 18-20(in Chinese)
    [3] 毛艳梅, 奚旦立, 杨晓波. 印染废水深度处理技术及回用的现状和发展. 江苏纺织, 2005,(8):3 Mao Yanmei, Xi Danli, Yang Xiaobo. Present and prospects of the advanced treatment and reuse of dyeing wastewater. Jiangsu Textile, 2005,(8):3(in Chinese)
    [4] 龚剑丽, 孙贤波, 刘勇弟,等. 焦化废水二级生化出水中有机污染物的氧化特性.环境化学, 2008, 27(2): 193-196 Gong Jianli, Sun Xianbo, Liu Yongdi. Oxidative characteristics of organic fractions in secodnary effluent of coking wastewater. Environmental Chemistry, 2008, 27(2): 193-196(in Chinese)
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    [6] 付丽君, 李冰璟, 蒋文新, 等. 低耗环保COD测定方法的研究. 环境污染与防治, 2008, (3): 57-61 Fu Lijun,Li BingJing,Jiang Wenxin, et al. Efficient and cost effective methods for measuring COD of water samples. Environmental Pollution and Control, 2008, (3): 57-61(in Chinese)
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    [8] Gallard H., De Laat J. Kinetic modelling of Fe(Ⅲ)/H2O2 oxidation reaction in dilute aqueous solution using atrazine as a modle organic compound. Water Res., 2000, 34(12): 3107-3116
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出版历程
  • 收稿日期:  2011-11-25
  • 刊出日期:  2012-11-09
李新, 刘勇弟, 孙贤波, 徐宏勇, 钱飞跃, 李欣珏, 李暮. 印染废水生化出水中各类有机物在Fenton 氧化过程中的去除效果[J]. 环境工程学报, 2012, 6(11): 3953-3958.
引用本文: 李新, 刘勇弟, 孙贤波, 徐宏勇, 钱飞跃, 李欣珏, 李暮. 印染废水生化出水中各类有机物在Fenton 氧化过程中的去除效果[J]. 环境工程学报, 2012, 6(11): 3953-3958.
Li Xin, Liu Yongdi, Sun Xianbo, Xu Hongyong, Qian Feiyue, Li Xinjue, Li Mu. Removal effect of different organic fractions from bio-treated effluent of dye wastewater by Fenton reagent[J]. Chinese Journal of Environmental Engineering, 2012, 6(11): 3953-3958.
Citation: Li Xin, Liu Yongdi, Sun Xianbo, Xu Hongyong, Qian Feiyue, Li Xinjue, Li Mu. Removal effect of different organic fractions from bio-treated effluent of dye wastewater by Fenton reagent[J]. Chinese Journal of Environmental Engineering, 2012, 6(11): 3953-3958.

印染废水生化出水中各类有机物在Fenton 氧化过程中的去除效果

  • 1. 华东理工大学资源与环境工程学院,上海 200237
基金项目:

国家"863"高技术研究发展计划重点项目(2009AA063904)

摘要: 考察了Fenton氧化法处理印染废水生化出水时,不同因素对色度去除效果的影响。在最佳处理条件下,即[H2O2]∶[Fe2+]为6∶1,反应初始pH为4.0,H2O2和FeSO4的投加量分别为3.6 mmol/L和0.6 mmol/L,反应时间为30 min,UV254、DOC和COD的去除率分别达到了84%、52%和84%,ADMI7.6和稀释倍数表征的色度去除率分别达到了94%和96%。通过XAD-8/XAD-4吸附树脂联用技术将印染废水生化出水中溶解性有机物分为疏水酸、非酸疏水物质、弱疏水物质及亲水物质4类有机物。实验结果表明,对于该印染废水的生化出水,疏水性物质是引起色度的主要物质,所占比例以ADMI7.6表征时为92%,其中以非酸疏水物质的贡献最大,达到53%。Fenton试剂氧化处理对此水样中的非酸疏水物质和疏水酸均有较好的去除效果,对弱疏水性有机物和亲水性有机物去除率较低。

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