This research aims to enhance the efficiency of catalytic oxidation of benzene by utilizing Co3O4 catalysts with rich oxygen vacancy sites.
Examined catalytic performance of Co3O4 catalysts with varying oxygen vacancy concentrations.
Analyzed desorption characteristics and stability under water-resistant conditions.
Co3O4 catalysts showed significantly improved oxidation rates compared to traditional catalysts.
Enhanced durability and resistance to water exposure were observed, leading to better performance with volatile organic compounds.
Abstract
desorption. This study offers insights into the development of water-resistant catalysts, which are crucial for enhancing the efficiency of volatile organic compound oxidation processes.