Willyam R.P. Barros
University of São Paulo
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Featured researches published by Willyam R.P. Barros.
Chemosphere | 2014
Juliana R. Steter; Willyam R.P. Barros; Marcos R.V. Lanza; Artur J. Motheo
Amaranth dye is an organic compound largely used in the food and beverage industries with potential toxicity effects on humans. It can be found as a pollutant species in aquatic environments and has been classified as an endocrine disruptor. This study describes amaranth degradation upon ultrasonication associated with an electrochemical system that uses a boron-doped diamond anode BDD, defined as a sonoelectrochemical process. Ninety-minute electrolyses were performed using current densities in the 10-50 mA cm(-2) range, and the concentration decay, pH, energy and current efficiencies, as well as the discoloration rate were evaluated. The amaranth concentration decayed as a function of electrolysis time and the reactions obeyed pseudo first-order kinetics, with an apparent constant rate between 10(-1) and 10(-3)min(-1). The electrochemical and sonoelectrochemical processes at 35 mA cm(-2) yielded TOC removal values between 92.1% and 95.1% respectively, after 90 min. Current efficiency values obtained for both processes were 18.2% and 23.6%. Exhaustive 5h electrolysis was performed and the degradation products were identified by HPLC-MS. A mechanism for the degradation of amaranth was proposed based on an analysis of the aromatic and aliphatic intermediates.
Journal of the Brazilian Chemical Society | 2014
Willyam R.P. Barros; Michelle P. Borges; Rafael M. Reis; Robson S. Rocha; Rodnei Bertazzoli; Marcos R.V. Lanza
The increasing occurrence of antibiotics and their metabolites in surface and ground waters is causing a significant impact on the environment and needing of developing novel treatments for the complete removal of such contaminants. This paper presents the study of the electrogeneration of hydrogen peroxide (H2O2) in acidic medium and the degradation of the analgesic dipyrone in an electrochemical flow reactor using a gas diffusion electrode (GDE) modified with 5.0% cobalt (II) phthalocyanine (CoPc) and pressurized with O2. The highest yield of H2O2 (133 mg L-1) was achieved after 90 min of electrolysis at an applied potential of -2.1 V (vs. Pt//Ag/AgCl/KCls) and the best results for degradation of dipyrone were obtained under electro-Fenton conditions, where the total organic carbon (TOC) was reduced 62.8% after 90 min of reaction and 49.1 kW h of energy was consumed per kg of dipyrone degraded.
Electrochimica Acta | 2015
Willyam R.P. Barros; Qiliang Wei; Gaixia Zhang; Shuhui Sun; Marcos R.V. Lanza; Ana C. Tavares
Journal of Electroanalytical Chemistry | 2014
Willyam R.P. Barros; Poliana C. Franco; Juliana R. Steter; Robson S. Rocha; Marcos R.V. Lanza
Electrochimica Acta | 2013
Willyam R.P. Barros; Rafael M. Reis; Robson S. Rocha; Marcos R.V. Lanza
Electrochimica Acta | 2014
Willyam R.P. Barros; Juliana R. Steter; Marcos R.V. Lanza; Artur J. Motheo
Journal of Electroanalytical Chemistry | 2014
Fernando L. Silva; Rafael M. Reis; Willyam R.P. Barros; Robson S. Rocha; Marcos R.V. Lanza
Journal of The Electrochemical Society | 2014
Willyam R.P. Barros; Suellen A. Alves; Poliana C. Franco; Juliana R. Steter; Robson S. Rocha; Marcos R.V. Lanza
Journal of Electroanalytical Chemistry | 2016
Robson S. Rocha; Fernando L. Silva; Ricardo B. Valim; Willyam R.P. Barros; Juliana R. Steter; Rodnei Bertazzoli; Marcos R.V. Lanza
Journal of The Electrochemical Society | 2014
Willyam R.P. Barros; Michelle P. Borges; Juliana R. Steter; Juliane C. Forti; Robson S. Rocha; Marcos R.V. Lanza