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Updated: Jun 17, 2026

Light-driven Enzymatic Decarboxylation
Published on: May 22, 2016
A mechanistic kinetic model for phenol degradation by the Fenton process
Ricardo F F Pontes1, José E F Moraes, Amilcar Machulek
1Chemical Engineering Department, Universidade de São Paulo, Av. Prof. Luciano Gualberto, Travessa 3, 380, 05508-900, São Paulo, SP, Brazil.
Abstract:
The objective of this paper is to develop and validate a mechanistic model for the degradation of phenol by the Fenton process. Experiments were performed in semi-batch operation, in which phenol, catechol and hydroquinone concentrations were measured. Using the methodology described in Pontes and Pinto [R.F.F. Pontes, J.M. Pinto, Analysis of integrated kinetic and flow models for anaerobic digesters, Chemical Engineering Journal 122 (1-2) (2006) 65-80], a stoichiometric model was first developed, with 53 reactions and 26 compounds, followed by the corresponding kinetic model. Sensitivity analysis was performed to determine the most influential kinetic parameters of the model that were estimated with the obtained experimental results. The adjusted model was used to analyze the impact of the initial concentration and flow rate of reactants on the efficiency of the Fenton process to degrade phenol. Moreover, the model was applied to evaluate the treatment cost of wastewater contaminated with phenol in order to meet environmental standards.
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