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Degradation kinetics and mechanisms of phenolin photo-Fenton process
作者姓名:He F  Lei LC
作者单位:DepartmentofEnvironmentalEngineering,ZhejiangUniversity,Hangzhou310027,China
摘    要:Phenol degradation in photochemically enhanced Fenton process was investigated in this work. UV-VIS spectra of phenol degradation showed the difference between photo-Fenton process and UV/H2O2, which is a typical hydroxyl radical process. A possible pathway diagram for phenol degradation in photo-Fenton process was proposed, and a mathematical model for chemical oxygen demand (COD) removal was developed. Operating parameters such as dosage of H2O2 and ferrous ions, pH, suitable carrier gas were found to impact the removal of COD significantly. The results and analysis of kinetic parameters calculated from the kinetic model showed that complex degradation of phenol was the main pathway for removal of COD: while hydroxyl radicals acted weakly in the photo-Fenton degradation of phenol.

关 键 词:苯酚  降解机制  紫外线  双氧水  COD  废水处理

Degradation kinetics and mechanisms of phenol in photo-Fenton process
He F,Lei LC.Degradation kinetics and mechanisms of phenol in photo-Fenton process[J].Journal of Zhejiang University Science,2004,5(2):198-205.
Authors:He Feng  Lei Le-cheng
Institution:Department of Environmental Engineering, Zhejiang University, Hangzhou 310027, China.
Abstract:Phenol degradation in photochemically enhanced Fenton process was investigated in this work. UV-VIS spectra of phenol degradation showed the difference between photo-Fenton process and UV/H(2)O(2), which is a typical hydroxyl radical process. A possible pathway diagram for phenol degradation in photo-Fenton process was proposed, and a mathematical model for chemical oxygen demand (COD) removal was developed. Operating parameters such as dosage of H(2)O(2) and ferrous ions, pH, suitable carrier gas were found to impact the removal of COD significantly. The results and analysis of kinetic parameters calculated from the kinetic model showed that complex degradation of phenol was the main pathway for removal of COD; while hydroxyl radicals acted weakly in the photo-Fenton degradation of phenol.
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