Cai Jianyu, Yu Zehui, Fan Xing, Li Jian
Key Laboratory of Beijing on Regional Air Pollution Control, Beijing University of Technology, Beijing 100124, China.
Molecules. 2022 Jun 16;27(12):3875. doi: 10.3390/molecules27123875.
In order to improve the CO catalytic oxidation performance of a Pt/TiO catalyst, a series of Pt/TiO catalysts were prepared via an impregnation method in this study, and various characterization methods were used to explore the effect of TiO calcination pretreatment on the CO catalytic oxidation performance of the catalysts. The results revealed that Pt/TiO (700 °C) prepared by TiO after calcination pretreatment at 700 °C exhibits a superior CO oxidation activity at low temperatures. After calcination pretreatment, the catalyst exhibited a suitable specific surface area and pore structure, which is beneficial to the diffusion of reactants and reaction products. At the same time, the proportion of adsorbed oxygen on the catalyst surface was increased, which promoted the oxidation of CO. After calcination pretreatment, the adsorption capacity of the catalyst for CO and CO decreased, which was beneficial for the simultaneous inhibition of the CO self-poisoning of Pt sites. In addition, the Pt species exhibited a higher degree of dispersion and a smaller particle size, thereby increasing the CO oxidation activity of the Pt/TiO (700 °C) catalyst.
为了提高Pt/TiO催化剂的CO催化氧化性能,本研究采用浸渍法制备了一系列Pt/TiO催化剂,并运用多种表征方法探究TiO煅烧预处理对催化剂CO催化氧化性能的影响。结果表明,经700℃煅烧预处理后的TiO制备的Pt/TiO(700℃)在低温下表现出优异的CO氧化活性。煅烧预处理后,催化剂具有适宜的比表面积和孔结构,有利于反应物和反应产物的扩散。同时,催化剂表面吸附氧的比例增加,促进了CO的氧化。煅烧预处理后,催化剂对CO和CO的吸附能力下降,有利于同时抑制Pt位点的CO自中毒。此外,Pt物种表现出更高的分散度和更小的粒径,从而提高了Pt/TiO(700℃)催化剂的CO氧化活性。