首页 | 本学科首页   官方微博 | 高级检索  
     检索      


Mineralization of Catechol by Fenton and Photo‐Fenton Processes
Authors:Asma M'hemdi  Bechir Dbira  Ridha Abdelhedi  Enric Brillas  Salah Ammar
Institution:1. Faculté des Sciences de Gabès, Cité Erriadh, Département de chimie, Gabès, Tunisia;2. UR Electrochimie et Environnement, Ecole Nationale d'Ingénieurs de Sfax, Sfax, Tunisia;3. Institut Superieur des Etudes Technologiques, Gabès, Tunisia;4. Laboratori d'Electroquimica dels Materials i del Medi Ambient, Departament de Química Física, Facultat de Química, Universitat de Barcelona, Barcelona, Spain
Abstract:Catechol is one of the most abundant phenolic components of olive mill wastewaters. In this article, the mineralization of this compound in synthetic aqueous solutions by the Fenton and photo‐Fenton processes is studied. It has been found that for 1.44 mM catechol, the total organic carbon of solutions is reduced about 94.4% at best after 60 min of Fenton treatment at optimized conditions of pH 3.0, 0.2 mM Fe2+, 7.09 mM H2O2, and 25°C. A faster and overall mineralization is attained by applying photo‐Fenton with UVA irradiation. o‐Benzoquinone, 1,2,3‐trihydroxybenzene and 1,2,4‐trihydroxybenzene were identified by GC–MS as primary quinonic and polyhydroxylated derivatives. Small amounts of generated carboxylic acids like muconic, maleic, malonic, acetic, oxalic, and formic acids were detected by ion‐exclusion chromatography. The Fe(III) complexes of these acids persist in the medium under Fenton conditions, while their photolysis by UVA light and that of other by‐products account for by the faster degradation and total mineralization achieved in the photo‐Fenton process. A reaction sequence for catechol mineralization by Fenton and photo‐Fenton involving all intermediates detected is proposed.
Keywords:Hydroxyl radical  Olive mill waste  Oxidation products  Phenolic compound  Wastewater treatment
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号