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Kinetics of phenol oxidation in a trickle bed reactor over active carbon catalyst

机译:活性碳催化剂在滴流床反应器中苯酚氧化的动力学

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摘要

The wet air oxidation of phenol over a commercial active carbon catalyst was studied in a trickle bed reactor (TBR) in the temperature and oxygen partial pressure ranges of 120-160 degrees C and 0.1-0.2 MPa, respectively. The performance of the active carbon was compared in terms of phenol and COD destruction. The weight change of active carbon due to reaction was also measured. Finally, oxic phenol adsorption isotherms were assessed in batch conditions at 25, 125 and 160 degrees C. In order to use the conversion data obtained from the TBR for a kinetic study, special care was taken to check the kinetic control in the TBR experiments. Several kinetic models including power law or Langmuir-Hinshelwood expressions were considered to describe the catalytic oxidation of phenol over active carbon. The simple power law model with first order dependence on both phenol and oxygen concentration predicted satisfactorily the experimental data not only over the entire range of operating conditions studied, but also outside its validity range. (c) 2005 Society of Chemical Industry.
机译:在滴流床反应器(TBR)中分别在120-160摄氏度和0.1-0.2 MPa的温度和氧分压范围内研究了在商用活性炭催化剂上苯酚的湿空气氧化。根据苯酚和COD的破坏情况比较了活性炭的性能。还测量了由于反应引起的活性炭的重量变化。最后,在25、125和160摄氏度的分批条件下评估了氧化苯酚的吸附等温线。为了将从TBR获得的转化数据用于动力学研究,在TBR实验中要特别注意检查动力学控制。包括幂律或Langmuir-Hinshelwood表达式在内的几种动力学模型被认为可以描述苯酚在活性炭上的催化氧化。一阶依赖于苯酚和氧浓度的简单幂律模型可以令人满意地预测实验数据,不仅在所研究的整个工作条件范围内,而且在其有效范围之外。 (c)2005年化学工业协会。

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