华南理工大学学报(自然科学版) ›› 2005, Vol. 33 ›› Issue (2): 24-28.

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臭氧与对硝基苯酚溶液在鼓泡塔中反应的模拟

沈慧芳 陈焕钦   

  1. 华南理工大学 化工与能源学院,广东 广州 510640
  • 收稿日期:2004-09-06 出版日期:2005-02-25 发布日期:2005-02-25
  • 通信作者: 沈慧芳(1971-),女,讲师,博士,主要从事水处理及精细化工研究. E-mail:cehfshen@ scut.edu.cn
  • 作者简介:沈慧芳(1971-),女,讲师,博士,主要从事水处理及精细化工研究.

Simulation of Ozone Reaction with P-Nitrophenol Solution in Bubble Column

Shen Hui-fang  Chert Huan-qin   

  1. College of Chemical and Energy Engineering,South China Univ.of Tech.,Guangzhou 510640,Guangdong,China
  • Received:2004-09-06 Online:2005-02-25 Published:2005-02-25
  • Contact: Shen Hui—fang(born in 1971),female,lecturer,Ph. D.,mainly researches on water treatment an d fine chemical engineering E-mail:cehfshen@ scut.edu.cn
  • About author:Shen Hui—fang(born in 1971),female,lecturer,Ph. D.,mainly researches on water treatment an d fine chemical engineering

摘要: 研究了鼓泡塔中臭氧与对硝基苯酚水溶液反应的吸收传质过程.首先在半连续状态及298K下,将气相臭氧连续注入盛有对硝基苯酚溶液的鼓泡塔中进行吸收实验,并对吸收过程进行模拟.然后运用全混流模型,建立了臭氧吸收过程的质量平衡方程.采用Matlab软件中的ODE程序求解该质量平衡方程和增强因子的联立方程,模拟吸收过程中臭氧和对硝基苯胺浓度的变化,并与实验值进行比较.发现在合适的pH值下,在80%的对硝基苯酚降解之前,模拟值和实验值吻合较好,当对硝基苯酚的浓度下降到某一值时,模拟值和实验值出现一定的偏差.研究结果表明,在短的鼓泡塔中,应用全混流模型来描述气相和液相的流体状态是可行的.

关键词: 臭氧, 对硝基苯酚, 传质, 鼓泡塔, 模拟

Abstract:

The absorption and mass transfer process of ozone reaction with p-nitrophenol solution in the bubble column was investigated in this paper.First,ab sorption experiments were carried out in semibatch mode by continuously injecting gaseous ozone into a bubble column containing p-nitrophenol solution at 298 K,and the ab sorption process was simulated.Next,the mass balance equations of ozone absorption in p-nitrophenol solu-tion were estab lished by using the complete mixing model.Then,by utilizing the Matlab ODE program,the simultaneous equations of the mass balance equations and the enhancing factors were solved,thus simulating the variations of ozone concentration and p-nitrophenol concentration in the ab sorption process.The simulated re-suits were finally compared with the measured ones.It is shown that.at appropriate pH.the simulated results
accord well with the measured ones as far as 80%p-nitrophenol is degraded,while there is a certain deviation when p-nitrophenol concentration declines to a certain level.It is also indicated that the complete mixing model is feasible to describe the fluid flow states in both gas and liquid phases in a short bubble column.

Key words: ozone, p-nitrophenol, mass transfer, bubble column, simulation