Modeling catalytic trickle-bed and upflow packed-bed reactors for wet air oxidation of phenol with phase change
被引:8
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作者:
Guo, J
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Washington Univ, Chem React Engn Lab, Dept Chem Engn, St Louis, MO 63130 USAWashington Univ, Chem React Engn Lab, Dept Chem Engn, St Louis, MO 63130 USA
Guo, J
[1
]
Al-Dahhan, M
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Washington Univ, Chem React Engn Lab, Dept Chem Engn, St Louis, MO 63130 USAWashington Univ, Chem React Engn Lab, Dept Chem Engn, St Louis, MO 63130 USA
Al-Dahhan, M
[1
]
机构:
[1] Washington Univ, Chem React Engn Lab, Dept Chem Engn, St Louis, MO 63130 USA
In this study, to simulate the steady-state behavior of packed-bed reactors for catalytic wet oxidation of phenol, one-dimensional (1D) axial dispersion model for the liquid phase is coupled with a cell stack model for the gas phase, providing considerable phase change under the selected operating conditions. The reactor scale governing equations, reaction kinetics involved, and solution strategy are discussed. The computational approach accounts for the observed catalyst activities, combined with local transport and catalyst wetting effects. The approach selected is shown to be suitable and efficient in dealing with the problem in question. Comparisons of simulated model predictions and lab scale experimental data are presented. Reasonably simulating the concentration profiles in the reactor at steady-state operation, the model allows designers to determine the effects of catalyst activity and operating and feed conditions on reactor performance. The model also clearly demonstrates the importance of including the phase change effect in the reactor scale flow distribution.
机构:
School of Chemistry and Chemical Engineering, Beijing Institute of Technology, BeijingSchool of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing
Tan J.
Nie M.
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School of Chemistry and Chemical Engineering, Beijing Institute of Technology, BeijingSchool of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing
Nie M.
Li Z.
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School of Chemistry and Chemical Engineering, Beijing Institute of Technology, BeijingSchool of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing
Li Z.
Ji Y.
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机构:
School of Chemistry and Chemical Engineering, Beijing Institute of Technology, BeijingSchool of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing
Ji Y.
Chen S.
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机构:
School of Chemistry and Chemical Engineering, Beijing Institute of Technology, BeijingSchool of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing
Chen S.
Deng W.
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机构:
School of Chemistry and Chemical Engineering, Beijing Institute of Technology, BeijingSchool of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing
Deng W.
Chen L.
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机构:
School of Material Science and Engineering, Beijing Key Laboratory of Environmental Science and Engineering, Beijing Institute of Technology, BeijingSchool of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing
Chen L.
Lu Y.
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机构:
School of Material Science and Engineering, Beijing Key Laboratory of Environmental Science and Engineering, Beijing Institute of Technology, BeijingSchool of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing
Lu Y.
Su Y.
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机构:
School of Material Science and Engineering, Beijing Key Laboratory of Environmental Science and Engineering, Beijing Institute of Technology, BeijingSchool of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing
Su Y.
Journal of Advanced Manufacturing and Processing,
2019,
1
(04):