Oxidation of 4-Chlorophenol at Boron-Doped Diamond Electrode for Wastewater Treatment
β Scribed by Rodrigo, M. A.; Michaud, P. A.; Duo, I.; Panizza, M.; Cerisola, G.; Comninellis, Ch.
- Book ID
- 115516600
- Publisher
- The Electrochemical Society
- Year
- 2001
- Tongue
- English
- Weight
- 171 KB
- Volume
- 148
- Category
- Article
- ISSN
- 0013-4651
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β¦ Synopsis
The electrochemical behavior of synthetic boron-doped diamond thin-film electrode ΝBDDΝ has been studied in acid media containing 4-chlorophenol Ν4-CPΝ by cyclic voltammetry, chronoamperometry, and bulk electrolysis. The results have shown that in the potential region of supporting electrolyte stability occur reactions involving the oxidation of 4-CP to phenoxy radical and 1,4-benzoquinone. Polymeric materials, which result in electrode fouling, are also formed in this potential region. Electrolysis at high anodic potentials, in the region of electrolyte decomposition, complex oxidation reactions can take place involving electrogenerated hydroxyl radicals, leading to the complete incineration of 4-chlorophenol. Electrode fouling is inhibited under these conditions. The experimental results have been also compared with a theoretical model. This model is based on the assumption that the rate of the anodic oxidation of 4-CP is a fast reaction. Finally, high-pressure liquid chromatographic analyses revealed that the main intermediate products of 4-CP oxidation were 1,4-benzoquinone, maleic acid, formic acid, and oxalic acid.
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## Abstract **BACKGROUND:** The electrochemical oxidation of 1,4βdioxane at a boron doped diamond (BDD) surface on a niobium substrate anode was studied because (i) 1,4 dioxane is a resistant contaminant in wasteβwaters and groundβwaters which needs to be removed/oxidized and (ii) most of the curre