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Electro-oxidation of the dye azure B: kinetics,mechanism, and by-products
Authors:Hugo Olvera-Vargas  Nihal Oturan  C. T. Aravindakumar  M. M. Sunil Paul  Virender K. Sharma  Mehmet A. Oturan
Affiliation:1. Université Paris-Est, Laboratoire Géomatériaux et Environnement, EA 4508, UPEM, 5, Bd Descartes, 77454, Marne-la-Vallée, France
2. School of Environmental Sciences, Mahatma Gandhi University, Kottayam, 686 560, India
3. Department of Environmental and Occupational Health, School of Public Health, Texas A&M University, 1266 TAMU, College Station, 77843, Texas, USA
Abstract:In this work, the electrochemical degradation of the dye azure B in aqueous solutions was studied by electrochemical advanced oxidation processes (EAOPs), electro-Fenton, and anodic oxidation processes, using Pt/carbon-felt and boron-doped diamond (BDD)/carbon-felt cells with H2O2 electrogeneration. The higher oxidation power of the electro-Fenton (EF) process using BDD anode was demonstrated. The oxidative degradation of azure B by the electrochemically generated hydroxyl radicals (?OH) follows a pseudo-first-order kinetics. The apparent rate constants of the oxidation of azure B by ?OH were measured according to pseudo-first-order kinetic model. The absolute rate constant of azure B hydroxylation reaction was determined by competition kinetics method and found to be 1.19?×?109 M?1 s?1. It was found that the electrochemical degradation of the dye leads to the formation of aromatic by-products which are then oxidized to aliphatic carboxylic acids before their almost mineralization to CO2 and inorganic ions (sulfate, nitrate, and ammonium). The evolution of the TOC removal and time course of short-chain carboxylic acids during treatment were also investigated.
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