The research on CO oxidation over Ce–Mn oxides: The preparation method effects and oxidation mechanism

被引:6
|
作者
Ye Z. [1 ,4 ]
Liu Y. [1 ]
Nikiforov A. [2 ]
Ji J. [1 ]
Zhao B. [3 ]
Wang J. [1 ]
机构
[1] College of Environment, Zhejiang University of Technology, 18 Chaowang RD, Hangzhou
[2] Ghent University, Faculty of Engineering, Department of Applied Physics, Research Unit Plasma Technology, Sint-Pietersnieuwstraat 41, Ghent
[3] Zhejiang Tuna Environmental Science & Technology Co., Ltd, Shaoxing
[4] State Environmental Protection Key Laboratory of Sources and Control of Air Pollution Complex, Beijing
基金
中国博士后科学基金; 中国国家自然科学基金;
关键词
Ce–Mn redox Cycle; CO oxidation; Hydrothermal-citrate complexation (CH); In-situ characterization;
D O I
10.1016/j.chemosphere.2023.139130
中图分类号
学科分类号
摘要
A series of CeO2-MnOx for highly efficient catalytical oxidation of carbon monoxide were prepared by citrate sol-gel (C), hydrothermal (H) and hydrothermal-citrate complexation (CH) methods. The outcome indicates that the catalyst generated using the CH technique (CH-1:8) demonstrated the greatest catalytic performance for CO oxidation with a T50 of 98 °C, and also good stability in 1400 min. Compared to the catalysts prepared by C and H method, CH-1:8 has the highest specific surface of 156.1 m2 g−1, and the better reducibility of CH-1:8 was also observed in CO-TPR. It is also observed the high ratio of adsorbed oxygen/lattice oxygen (1.5) in the XPS result. Moreover, characterizations by the TOF-SIMS method indicated that obtained catalyst CH–Ce/Mn = 1:8 had stronger interactions between Ce and Mn oxides, and the redox cycle of Mn3++Ce4+ ↔ Mn4++Ce3+ was a key process for CO adsorption and oxidation process. According to in-situ FTIR, the possible reaction pathway for CO was deduced in three ways. CO directly oxidize with O2 to CO2, CO adsorbed on Mn4+ and Ce3+ reacts with O to form intermediates (COO−) (T > 50 °C) and carbonates (T > 90 °C), which are further oxidized into CO2. © 2023 Elsevier Ltd
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