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Biodegradability Improvement of Sulfamethazine Solutions by Means of an electro-Fenton Process
Authors:Dorsaf Mansour  Florence Fourcade  Nizar Bellakhal  Mohamed Dachraoui  Didier Hauchard  Abdeltif Amrane
Affiliation:1. Universit?? Rennes 1, Ecole Nationale Sup??rieure de Chimie de Rennes, CNRS, UMR 6226, Avenue du G??n??ral Leclerc, CS 50837, 35708, Rennes Cedex 7, France
2. Laboratoire de Chimie Analytique et ??lectrochimie, D??partement de Chimie, Facult?? des Sciences de Tunis, Campus Universitaire, 2092, Tunis, Tunisie
4. Institut National des Sciences Appliqu??es et de Technologie, B.P. No. 676, 1080, Tunis Cedex, Tunisie
5. Universit?? Europ??enne de Bretagne, 35000, Rennes, France
3. Ecole Nationale Sup??rieure de Chimie de Rennes, CNRS, UMR 6226, Avenue du G??n??ral Leclerc, CS 50837, 35708, Rennes Cedex 7, France
Abstract:The main objective of this study was to examine the effect of an electro-Fenton pretreatment on the biodegradability of sulfamethazine-polluted solutions. The aim of the pretreatment was only to degrade this molecule in order to increase the biodegradability of the effluent and therefore allow a subsequent biological treatment. Preliminary tests showed the absence of biodegradability of the target compound. The degradation of sulfamethazine by electro-Fenton process was then examined using a carbon felt cathode and a platinum anode in an electrochemical reactor containing 1?L of solution. The influence of some experimental parameters such as initial concentration, temperature and current intensity on the degradation by electro-Fenton step has been investigated. In addition, the biodegradability of the solution after electrochemical pretreatment was examined and showed a Biological Oxygen Demand (BOD5) on Chemical Oxygen Demand (COD) ratio above the limit of biodegradability, namely 0.4, for several experimental conditions. The feasibility of coupling an electro-Fenton pretreatment with a biological degradation of by-products in order to mineralize polluted solutions of sulfamethazine was confirmed.
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