Electrochemical degradation of buprofezin insecticide in aqueous solutions by anodic oxidation at boron-doped diamond electrode

被引:0
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作者
Mohamed Errami
Rachid Salghi
Mohammed Zougagh
Abdelkader Zarrouk
El Houcine Bazzi
Abdelkhaleq Chakir
Hassan Zarrok
Belkheir Hammouti
Lahcen Bazzi
机构
[1] ENSA,Equipe de Génie de l’Environnement et de Biotechnologie
[2] Université Ibn Zohr,Regional Institute for Applied Science Research
[3] IRICA,LCAE
[4] Scientific and Technological Park of Albacete,URAC18, Faculté des Sciences
[5] Université Mohammed Premier,GSMA, UMR CNRS 6089, Faculté des Sciences
[6] Etablissement Autonome de Contrôle et de Coordination des Exportations d’Agadir,Laboratoire des Procèdes de Séparation
[7] Université de Reims,Laboratoire Matériaux & Environnement, Faculté des Sciences
[8] UMR 6089,undefined
[9] Faculté des Sciences,undefined
[10] Université Ibn Zohr,undefined
来源
关键词
Electrochemical oxidation; Pesticide; Buprofezin; Direct electrooxidation; Boron-doped diamond;
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学科分类号
摘要
Buprofezin (2-tert-butylimino-3-isopropyl-5-phenyl-1,3,5-thiadiazinan-4-one) is identified as a commonly used chemical with satisfactory biological activities against sucking insect pests, but its disposal causes serious environmental problems. This pesticide was treated by an electrolysis system using a boron-doped diamond (BDD) as anode and platinum as cathode. A number of experiments were run on a laboratory scale and the results are presented. The chemical oxygen demand (COD) measurement during the processing permitted the evaluation of the kinetic of organic matter decay and the instantaneous current efficiency. Different operating conditions and factors affecting the treatment process including current density, conductive electrolyte, pH, concentration of buprofezin, and time of electrolysis were studied and optimized. The best obtained conditions for COD removal on the BDD anode to degrade buprofezin solutions (COD0 = 1,200 mg L−1) include operating at 60 mA cm−2 and 25 ± 3 °C. The high efficiency of this technology can be explained in terms of the direct electrooxidation at the BDD surface and the oxidation carried out by hydroxyl radicals (OH•) and other electro-generated oxidants (Cl−, ClO−).
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页码:505 / 516
页数:11
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