Improved Low-Temperature CO Oxidation Performance of Pd Supported on La-Stabilized Alumina

被引:74
|
作者
Gaudet, Jason R. [1 ,2 ]
de la Riva, Andrew [1 ,2 ]
Peterson, Eric J. [1 ,2 ]
Bolin, Trudy [3 ]
Datye, Abhaya K. [1 ,2 ]
机构
[1] Univ New Mexico, Dept Chem & Nucl Engn, Albuquerque, NM 87131 USA
[2] Univ New Mexico, Ctr Microengn Mat, Albuquerque, NM 87131 USA
[3] Argonne Natl Lab, Adv Photon Source, Argonne, IL 60439 USA
来源
ACS CATALYSIS | 2013年 / 3卷 / 05期
基金
美国国家科学基金会;
关键词
STEM; CO oxidation; DRIFTS; EXAFS; in situ; lanthana-stabilized alumina; palladium; Pd/alumina; XANES; METAL-PARTICLE-SIZE; RANGE; 1-150; TORR; CARBON-MONOXIDE; CATALYTIC-OXIDATION; HYDROGEN CHEMISORPTION; METHANE COMBUSTION; SINGLE-CRYSTALS; ADSORPTION; OXYGEN; EXAFS;
D O I
10.1021/cs400024u
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Simulated diesel oxidation catalysts (DOCs) consisting of 2.5% Pd were prepared on gamma-Al2O3 and lanthanastabilized gamma-Al2O3; it was found that the La-containing catalyst had higher CO conversion and lower onset temperature for CO oxidation (similar to 100 degrees C). Aberration-corrected STEM showed that the La-alumina support helped to stabilize Pd in smaller particles and clusters, increasing dispersion from 17 to 26%. The higher dispersion was responsible, in part, for the improved CO oxidation rate; at 140 degrees C, the turnover frequency (TOF) was improved from 0.0019 to 0.0095 s(-1) with the addition of La. This TOF increase appears to be tied to facile redox behavior of the Pd/La-alumina catalyst, which was evident in the results of in situ X-ray absorption spectroscopy (XAS) and FTIR spectroscopy. In these experiments, both catalysts were calcined at 500 degrees C to form PdO and then reduced to Pd metal at 140 degrees C in the presence of CO. When the CO-covered catalyst was exposed to CO oxidation reaction conditions at 140 degrees C, the 2.5% Pd/Al2O3 catalyst remained nearly fully reduced, and the surface converage of CO did not change, indicating irreversible CO adsorption and very low reactivity toward oxygen. On the other hand, the more active 2.5% Pd/La-Al2O3 catalyst was more reactive toward oxygen, with a portion of the Pd becoming oxidized when the gas phase was switched from pure CO to the reaction mixture. There was a drop in surface coverage of CO when switching from pure CO to the reaction mixture on the Pd/La-alumina. The results suggest that the role of the La-alumina support is 2-fold, increasing the dispersion of Pd by forming small, stable Pd particles and allowing a portion of the Pd to exhibit facile redox behavior at low temperatures, making the Pd less susceptible to poisoning by CO. This work provides insights into factors that could lead to improved low-temperature CO oxidation reactivity in Pd-based automotive exhaust catalysts.
引用
收藏
页码:846 / 855
页数:10
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