甲苯
催化作用
苯甲醛
化学
钯
苯甲醇
苯甲酸
核化学
催化燃烧
立方氧化锆
动力学
无机化学
有机化学
量子力学
物理
陶瓷
作者
Decun Luo,Ziyu Tang,Xiyang Yu,Tao Zhang,Chun‐Ran Chang,Zhun Hu
标识
DOI:10.1016/j.apcatb.2023.123117
摘要
The effect of ZrO2 crystalline phases on Pd/ZrO2 for catalytic combustion of toluene was investigated. It was found that Pd/t-ZrO2 showed superior activity when the toluene concentration was lower than 2000 ppm, while Pd/m-ZrO2 performed better with toluene concentration higher than 3000 ppm. Kinetic studies showed that the reaction order of toluene on Pd/t-ZrO2 and Pd/m-ZrO2 is 0 and 2, respectively. The catalytic activity was controlled by combined effect of PdO activity and quantity, which was correlated with the interaction between palladium and zirconia. The t-ZrO2 increased PdO species activity, while m-ZrO2 could enhance the amount of PdO. DFT results showed that the p-band center of the O of PdO on t-ZrO2 was higher, suggesting that PdO was more active. In situ-DRIFTS revealed that the reaction pathway of catalytic oxidation of toluene on Pd/ZrO2 was as follows: toluene was oxidized stepwise to benzyl alcohol, benzaldehyde, benzoic acid, CO2 and H2O.
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