Electrochemical degradation of bromopyrogallol red in presence of cobalt ions

This paper summarizes the results of a degradation test of bromopyrogallol red (BPR) and textile dye wastewater (TDW) with a conventional three-electrode potentiostatic system in the presence of cobalt ions (electro Co 2+–H 2O 2 system). H 2O 2, produced by the two-electron reduction of O 2 at the c...

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Veröffentlicht in:Chemosphere (Oxford) 2003-12, Vol.53 (9), p.1131-1136
Hauptverfasser: Chen, Junshui, Liu, Meichuan, Zhang, Jidong, Xian, Yuezhong, Jin, Litong
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Sprache:eng
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Zusammenfassung:This paper summarizes the results of a degradation test of bromopyrogallol red (BPR) and textile dye wastewater (TDW) with a conventional three-electrode potentiostatic system in the presence of cobalt ions (electro Co 2+–H 2O 2 system). H 2O 2, produced by the two-electron reduction of O 2 at the cathode, would react with Co 2+ ions, leading to the generation of hydroxyl radicals ( OH), which caused the degradation of the organic pollutants. With BPR degradation process as the reference point, the optimal conditions (pH=4.0 and the concentration of Co 2+ is 0.1 mM) and the treating capacity of the system were both studied and compared with electro-Fenton’s reagent. Many benefits were shown by the electro Co 2+–H 2O 2 system, such as less metal ions consumption, more moderate conditions and faster reaction process. Treated with the system for 0.5 h, chemical oxygen demand and biological oxygen demand of TDW (pH=5.2), without pH adjustment, were reduced by 95.7% and 92.7%, respectively. These characteristics make the method another appropriate solution for wastewater treatment, especially for those contaminated by organic pollutants.
ISSN:0045-6535
1879-1298
DOI:10.1016/S0045-6535(03)00581-2