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Electrochemical oxidation of herbicide bifenox acid in aqueous medium using diamond thin film electrode
Authors:Amira Zaouak  Fatma Matoussi  Mohamed Dachraoui
Institution:1. Laboratoire de Chimie Analytique et d’Electrochimie, Campus Universitaire, Université El Manar , Tunis;2. Institut National des Sciences Appliquées et de Technologie, Université de Carthage, Centre Urbain Nord , Tunis
Abstract:The electrochemical oxidation of bifenox acid was studied at a boron-doped diamond thin film by cyclic voltammetry and galvanostatic electrolysis. The course of the electrolysis was monitored by measurement of chemical oxygen demand (COD) and by gas chromatography/mass spectrometry (GC / MS) analysis. It was found that exhaustive electrolysis leads to degradation and, ultimately, to mineralization of the starting herbicide. The degradation intermediates were identified showing that the oxidation process begins with the fragmentation of the molecule followed by reactions involving the hydroxyl radical, which is generated by the discharge of water. The study of the effect of current density and concentration showed that the degradation efficiency increases with decreasing current densities and increasing concentrations. The whole results were interpreted in a mechanistic scheme involving two oxidation pathways, the first is a direct oxidation at the electrode and the second uses hydroxyl radical as mediator of the oxidation. Finally, a kinetic study based on spectrophotometric measurements showed that the degradation process is pseudo first order.
Keywords:Bifenox acid  boron-doped-diamond  degradation  electron transfer  herbicide  mineralization
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