INDUSTRIAL WATER TREATMENT ›› 2016, Vol. 36 ›› Issue (10): 76-79. doi: 10.11894/1005-829x.2016.36(10).076

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Research on the decolorization kinetics of the treatment of Cango red wastewater by aluminum-carbon microelectrolysis

Fu Qianggen1, Sun Jian2   

  1. 1. Guangzhou City Construction College, Guangzhou 510925, China;
    2. Guangdong University of Technology, Guangzhou 510006, China
  • Received:2016-07-11 Online:2016-10-20 Published:2016-11-08

铝炭微电解处理刚果红废水的脱色动力学研究

傅强根1, 孙健2   

  1. 1. 广州城建职业学院, 广东广州 510925;
    2. 广东工业大学, 广东广州 510006
  • 通讯作者: 孙健,电话:13480273800。
  • 作者简介:傅强根(1987-),硕士研究生,讲师。E-mail:fqgscut@163.com。

Abstract:

Congo red wastewater has been treated by aluminum-carbon microelectrolysis process. The results of kinetics research indicate that the decolorization of Congo red by aluminum-carbon microelectrolysis complies with apparent second-order kinetics equation. The decolorization reaction speed increases with the increase of initial pH of solution,aluminumpowder dosage,temperature,and rotating speed of shaking bed;and increases with the decrease of Al/C mass ratio firstly,and then decreases. When temperature is in the range of 15-35℃,the Cango red decolorization reaction activating energy is 17.75 kJ/mol. Aluminum-carbon microelectrolysis process has been used for treating the actual printing and dyeing wastewater in a textile,printing and dyeing Co. The experiments show that when pH is in the range of 11-12,the wastewater COD removing rate is not lower than 50%. After the treatment,the effluent is basically colorless.

Key words: aluminum-carbon microelectrolysis, Congo red, decolorization, kinetics, printing and dyeing wastewater

摘要:

采用铝炭微电解法处理刚果红废水。动力学研究结果表明,铝炭微电解降解刚果红的脱色过程符合表观二级动力学方程。刚果红脱色反应速率随着溶液初始pH、铝粉投加量、温度、摇床转速的增大而提高,随着铝炭质量比的降低先提高后降低。在温度为15~35℃范围内刚果红脱色反应活化能为17.75 kJ/mol。采用铝炭微电解法处理某纺织印染公司实际印染废水,实验表明,在pH为11~12范围内,废水COD去除率不低于50%,反应后出水基本无颜色。

关键词: 铝炭微电解, 刚果红, 脱色, 动力学, 印染废水

CLC Number: