双酚A
降级(电信)
过硫酸盐
化学
环境化学
环境科学
化学工程
催化作用
有机化学
计算机科学
工程类
电信
环氧树脂
作者
Lijuan Xie,Yihong Zhu,Yun Deng,Zhenxing Huang,Aijia Zou,Huifang Yan,Wenquan Ruan
摘要
Abstract Background LaCuMnOx (LCMO) perovskite was designed as an effective catalyst to activate peroxydisulfate (PDS) to remove bisphenol A (BPA) in hypersaline wastewater. Results In the LCMO/PDS system, BPA (10 mg/L) was removed completely and the mineralization degree reached 74.9% in the presence of 0.12 g/L catalyst and 1.2 mM PDS. The BPA removal efficiency was still almost 100% even after five cycles. Metal ion leakage also indicated the stability of the catalytic system. • OH, SO 4 •− , 1 O 2 , and O 2 •− all contributed to BPA removal, and O 2 •− accounted for the greatest contribution. The presence of oxygen vacancies (V o ·· ) on the surface of the catalyst was important for PDS activation and the formation of active species. In addition, the system could still maintain outstanding performance even when [Cl − ] and [SO 4 2− ] were 100 g/L. CO 3 2− and HCO 3 − inhibited BPA degradation greatly, even at very low concentrations. The inhibitory effect was related to changes in the pH of the solution caused by the addition of CO 3 2− and HCO 3 − . This effect could be eliminated by adjusting the pH. Conclusion The system showed excellent catalytic performance, stability, and inorganic anion tolerance, indicating its potential for application in hypersaline wastewater treatment. © 2024 Society of Chemical Industry (SCI).
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