耐久性
陶瓷
催化作用
材料科学
化学工程
膜
复合材料
化学
工程类
有机化学
生物化学
作者
Yuyao Zhang,K. Yip,Yonghyeon Kim,Claire Chouinard,James Licato,Jae‐Hong Kim
标识
DOI:10.1021/acs.est.4c12814
摘要
Membrane-based advanced oxidation processes (AOPs) have shown great promise in degrading persistent organic pollutants in wastewater. However, their long-term application is often limited by the trade-off between catalytic efficiency and durability. In this study, we present a stable monolithic ceramic membrane integrating a CoTiO3/TiO2 interface that successfully overcomes this trade-off. The CoTiO3/TiO2 interface enhances peroxymonosulfate (PMS) activation while preventing Co2+ leaching, ensuring both high catalytic efficiency and structural integrity under reactive conditions. Finite element analysis suggests that the optimized distribution of the catalyst across our membrane regulates PMS utilization and minimizes the corrosive effects of radicals, extending the membrane's lifespan. The synthesized membrane demonstrated exceptional catalytic performance and stability, achieving fast bisphenol A removal (up to 99% within 25 s of reaction time) and maintaining structural integrity during 120 h of prolonged exposure to reactive PMS environments. This membrane design not only overcomes efficiency and durability but also offers a scalable solution for advanced water treatment applications.
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