INDUSTRIAL WATER TREATMENT ›› 2017, Vol. 37 ›› Issue (4): 62-65. doi: 10.11894/1005-829x.2017.37(4).015

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Research on the ozone, ozone/hydrogen peroxide catalytic oxidation to the advanced treatment of chemical industrial wastewater

Xu Jun, Tu Yong, Wu Qian, Zhang Yaohui, Tang Min, Li Jun, Chen Yong   

  1. Jiangsu Provincial Academy of Environment Science, Jiangsu Province Key Laboratory of Environmental Engineering, Nanjing 210036, China
  • Received:2017-03-07 Online:2017-04-20 Published:2017-05-10

臭氧尧臭氧/双氧水催化氧化深度处理化工废水

徐军, 涂勇, 武倩, 张耀辉, 唐敏, 李军, 陈勇   

  1. 江苏省环境科学研究院, 江苏省环境工程重点实验室, 江苏南京 210036
  • 通讯作者: 涂勇,E-mail:67057591@qq.com。 E-mail:67057591@qq.com
  • 作者简介:徐军(1977-),工程师,博士研究生。
  • 基金资助:

    国家水体污染控制与治理科技重大专项(2012ZX07101-003)

Abstract:

The effects of four kinds of processes for the advanced treatment of chemical industrial wastewater,including ozone,ozone catalytic oxidation,ozone/hydrogen peroxide and ozone/hydrogen peroxide catalytic oxidation,have been compared. The results show that when the influent COD is 95.7 mg/L and chroma 90 times,the effluent COD removing rates of the four advanced treatment processes are 23.66%,26.77%,29.24% and 32.97%,respectively,and the chroma removing rates of four processes are 64.44%,64.44%,82.22% and 82.22% respectively. Both the catalyst and hydrogen peroxide can enhance the ozone oxidation effect by a small extent. Continuous ozone oxidation can make the effluent COD decrease to 20 mg/L. In addition,when the ozone dosage is 60 mg/L,the effluent of all four kinds of processes has certain biodegradability,meeting the needs for the subsequent biochemical processes.

Key words: catalytic ozonation, ozone/hydrogen peroxide, chemical industrial wastewater, advanced treatment

摘要:

对比了臭氧、臭氧催化氧化、臭氧/双氧水和臭氧/双氧水催化氧化4种工艺深度处理化工废水的效果,结果表明,当进水COD和色度分别为95.7 mg/L和90倍时,4种工艺出水的COD去除率分别为23.66%、26.77%、29.24%、32.97%,色度去除率分别为64.44%、64.44%、82.22%、82.22%,催化剂和双氧水均能小幅强化臭氧氧化效果。连续臭氧氧化可使出水COD降至20 mg/L,同时当臭氧投加量为60 mg/L时,4种工艺出水均具有一定的可生化性,满足后序生化工艺的需求。

关键词: 臭氧催化, 臭氧/双氧水, 化工废水, 深度处理

CLC Number: