Comparative Electrochemical Oxidation of Bisphenol A Using BDD, PbO2, and IrO2 Anodes: Identification of Active Free Radicals
作者:Hao Li, Yiqi Du, Xiaolan Shen, Xinmou Kuang, Jiayi Zhu, Hairong Wang · 发表于:International Journal of Electrochemical Science · 年份:2022 · DOI:10.20964/2022.11.01 · 被引用次数:6 · 研究领域:Electrochemical Analysis and Applications、Water Quality Monitoring and Analysis、Advanced oxidation water treatment
The comparative electrochemical oxidation efficiency of bisphenol A (BPA) was explored using boron doped diamond (BDD), PbO 2 , and IrO 2 anodes. Several parameters were optimized using the BDD anode. The optimal conditions were a current density of 60 mA·cm −2 , Na 2 SO 4 concentration of 4 g·L −1 , agitation rate of 600 rpm, and BPA concentration of 50 mg·L −1 . The BPA removal efficiencies for the BDD, PbO 2 , and IrO 2 anodes were 100%, 79.9%, and 19.5%, respectively; only the BDD anode showed complete BPA removal. Similarly, the COD removal efficiencies with the BDD, PbO 2 , and IrO 2 anodes were 81.8%, 37.0%, and 6.73%, respectively. Oxidation with the BDD anode was realized mainly by •OH, accounting for approximately 85.6%. In addition, SO 4 · – oxidation and direct oxidation accounted for approximately 7.7% and 6.7%, respectively. In the PbO 2 anode, •OH oxidation, SO4· – oxidation, and direct oxidation accounted for approximately 51.0%, 8.2%, and 40.8%, respectively. In the IrO 2 anode, oxidation was dependent mainly on direct oxidation, and no •OH and SO 4 · – were generated.