紫外催化湿式双氧水氧化处理化学镀铜废液

刘鹏, 李朝林, 孔祥瀚, 陆钢, 崔海波, 张文方. 紫外催化湿式双氧水氧化处理化学镀铜废液[J]. 环境工程学报, 2013, 7(12): 4719-4723.
引用本文: 刘鹏, 李朝林, 孔祥瀚, 陆钢, 崔海波, 张文方. 紫外催化湿式双氧水氧化处理化学镀铜废液[J]. 环境工程学报, 2013, 7(12): 4719-4723.
Liu Peng, Li Chaolin, Kong Xianghan, Lu Gang, Cui Haibo, Zhang Wenfang. Treatment of electroless copper plating waste liquid by UV-catalytic wet peroxide oxidation[J]. Chinese Journal of Environmental Engineering, 2013, 7(12): 4719-4723.
Citation: Liu Peng, Li Chaolin, Kong Xianghan, Lu Gang, Cui Haibo, Zhang Wenfang. Treatment of electroless copper plating waste liquid by UV-catalytic wet peroxide oxidation[J]. Chinese Journal of Environmental Engineering, 2013, 7(12): 4719-4723.

紫外催化湿式双氧水氧化处理化学镀铜废液

  • 基金项目:

    国家自然科学基金资助项目(51178135)

  • 中图分类号: X703.1

Treatment of electroless copper plating waste liquid by UV-catalytic wet peroxide oxidation

  • Fund Project:
  • 摘要: 利用化学镀铜废液自身含有的铜作为催化剂,应用紫外催化湿式双氧水氧化工艺处理化学镀铜废液取得了良好效果。通过单因素实验确定的推荐工艺条件为:pH=2.0(保持原始值不变);不额外投加铜催化剂;H2O2用量为2倍理论量。在此条件下处理化学镀铜废液180 min,COD去除率可达到96.6%;之后采用沉淀法回收铜,调节处理后废水pH到9.5,铜的回收率可达到99.8%。
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  • [1] 乌锡康. 有机化工废水治理技术. 北京:化学工业出版社, 1999
    [2] 陈世荣, 郑伟强, 陈志传, 等. 印刷电路板化学镀铜液回收EDTA的研究. 广东工业大学学报, 2005, 22(3):21-24 Chen S. R., Zheng W. Q., Chen Z. C., et al. The recovery of EDTA in waste PCB chemical-copper solution. Journal of Guangdong University of Technology, 2005, 22(3):21-24(in Chinese)
    [3] 杨佘维, 铁柏清, 文乐元, 等. Fe3+、Co2+、Ni2+、Cu2+参与UV/类Fenton反应动力学研究. 水处理技术, 2007, 33(11):45-48 Yang S. W., Tie B. Q, Wen L. Y., et al. Kinetic study of UV/Fenton-like reaction with Fe3+, Co2+, Ni2+ and Cu2+. Technology of Water Treatment, 2007, 33(11):45-48(in Chinese)
    [4] Janez L., Albin P. Catalytic wet air oxidation processes:A review. Catalysis Today, 2007, 124(3-4):5080-5090
    [5] Lopez-Ayala S., Rincon M. E. Catalytic and photocatalytic performance of mesoporous CuxO-TiO2. J. Photochem. Photobiol. A, 2011, 222(1):249-257
    [6] 刘鹏, 李朝林, 陆钢, 等. 紫外催化湿式氧化工艺降解油墨废水. 环境工程学报, 2012, 6(7):2265-2270 Liu P., Li C. L., Lu G., et al. Degradation of ink wastewater by UV-catalytic wet oxidation process. Chinese Journal of Environmental Engineering, 2012, 6(7):2265-2270(in Chinese)
    [7] Abramovic B.F., Banic N.D., Sojic D.V. Degradation of thiacloprid in aqueous solution by UV and UV/H2O2 treatments. Chemosphere, 2010, 81(1):114-119
    [8] Liao C.H., Lu M.C., Su S.H. Role of cupric ions in the H2O2/UV oxidation of humic acids. Chemosphere, 2001, 44(5):913-919
    [9] Jiraroj D., Unob F., Hagege A. Degradation of Pb-EDTA complex by a H2O2/UV process. Water Res., 2006, 40(1):107-112
    [10] Kuo W. G. Decolorizing dye wastewater with Fenton's reagent. Water Research, 1992, 26(7):881-886
    [11] Sevimli M. F., Kinaci C. Decolorization of textile wastewater by ozonation and Fenton's process. Water Science and Technology, 2002, 45(12):279-286
    [12] Aleboyeh A., Moussa Y., Aleboyeh H. The effect of operational parameters on UV/H2O2 decolourisation of Acid Blue 74. Dyes Pigm., 2005, 66(2):129-134
    [13] Stumm W., Morgan J. J. Aquatic Chemistry. Wiley Inter-science. New York, 1970
    [14] 刘守新, 刘鸿. 光催化及光电催化基础与应用.北京:化学工业出版社, 2006
    [15] Baxendale J. H., Wilson J. A. The photolysis of hydrogen peroxide at high light intensities. Trans. Faraday Soc., 1957, 53(3):344-356
    [16] 何莼, 奚红霞, 张娇, 等. 沸石和活性炭为载体的Fe3+和Cu2+型催化剂催化氧化苯酚的比较. 离子交换与吸附, 2003, 19(4):289-296 He C., Xi H. X., Zhang J., et al. Comparisons of catalytic oxidation of phenol by Fe3+ and Cu2+ catalysts supported by permutite and activated carbon. Ion Exchange and Adsorption, 2003, 19(4):289-296(in Chinese)
    [17] 樊美公, 姚建年, 佟振合, 等.分子光化学与光功能材料科学.北京:科学出版社, 2009
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出版历程
  • 收稿日期:  2013-01-21
  • 刊出日期:  2013-12-08
刘鹏, 李朝林, 孔祥瀚, 陆钢, 崔海波, 张文方. 紫外催化湿式双氧水氧化处理化学镀铜废液[J]. 环境工程学报, 2013, 7(12): 4719-4723.
引用本文: 刘鹏, 李朝林, 孔祥瀚, 陆钢, 崔海波, 张文方. 紫外催化湿式双氧水氧化处理化学镀铜废液[J]. 环境工程学报, 2013, 7(12): 4719-4723.
Liu Peng, Li Chaolin, Kong Xianghan, Lu Gang, Cui Haibo, Zhang Wenfang. Treatment of electroless copper plating waste liquid by UV-catalytic wet peroxide oxidation[J]. Chinese Journal of Environmental Engineering, 2013, 7(12): 4719-4723.
Citation: Liu Peng, Li Chaolin, Kong Xianghan, Lu Gang, Cui Haibo, Zhang Wenfang. Treatment of electroless copper plating waste liquid by UV-catalytic wet peroxide oxidation[J]. Chinese Journal of Environmental Engineering, 2013, 7(12): 4719-4723.

紫外催化湿式双氧水氧化处理化学镀铜废液

  • 1. 哈尔滨工业大学深圳研究生院, 深圳 518055
  • 2. 暨南大学理工学院, 广州 510632
  • 3. 深圳市道汇科技有限公司, 深圳 518055
  • 4. 悉地国际设计顾问(深圳)有限公司, 深圳 518048
基金项目:

国家自然科学基金资助项目(51178135)

摘要: 利用化学镀铜废液自身含有的铜作为催化剂,应用紫外催化湿式双氧水氧化工艺处理化学镀铜废液取得了良好效果。通过单因素实验确定的推荐工艺条件为:pH=2.0(保持原始值不变);不额外投加铜催化剂;H2O2用量为2倍理论量。在此条件下处理化学镀铜废液180 min,COD去除率可达到96.6%;之后采用沉淀法回收铜,调节处理后废水pH到9.5,铜的回收率可达到99.8%。

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