TY - JOUR
T1 - Highly active Pd-based catalysts with hierarchical pore structure for toluene oxidation
T2 - Catalyst property and reaction determining factor
AU - He, Chi
AU - Li, Jianrong
AU - Zhang, Xinyan
AU - Yin, Liqian
AU - Chen, Jinsheng
AU - Gao, Shaokai
PY - 2012/1/15
Y1 - 2012/1/15
N2 - A series of micro/mesoporous hybridized materials with coke-resistant ZSM-5 and three-dimensional large pore KIT-6 as their micro- and mesoporous components were synthesized and investigated for toluene deep oxidation. The characterization results show that most of Al atoms are tetrahedrally coordinated in the framework of the samples, and the ratio of ZSM-5 to KIT-6 can be systematically controlled by varying the Si/Al molar ratio in the synthesis mixture. The acid sites over the supports are favorable for Pd nanoparticle dispersion and metallic Pd oxidation due to their electrophilic characters. All Pd supported composite materials are found to be powerful catalysts for the total oxidation of toluene. Particularly, Pd/ZK-50 possesses the highest catalytic activity with 90% toluene decomposition at 197°C, this temperature is much lower than that of Pd/KIT-6 (T 90=234°C). CO 2 desorption capability has positive effects on catalytic activity, while the influence of toluene adsorption property is negligible. The superior activity of the composite catalysts can be ascribed to the cumulative of specific surface area, support acidity, Pd particles dispersion and CO 2 desorption capability.
AB - A series of micro/mesoporous hybridized materials with coke-resistant ZSM-5 and three-dimensional large pore KIT-6 as their micro- and mesoporous components were synthesized and investigated for toluene deep oxidation. The characterization results show that most of Al atoms are tetrahedrally coordinated in the framework of the samples, and the ratio of ZSM-5 to KIT-6 can be systematically controlled by varying the Si/Al molar ratio in the synthesis mixture. The acid sites over the supports are favorable for Pd nanoparticle dispersion and metallic Pd oxidation due to their electrophilic characters. All Pd supported composite materials are found to be powerful catalysts for the total oxidation of toluene. Particularly, Pd/ZK-50 possesses the highest catalytic activity with 90% toluene decomposition at 197°C, this temperature is much lower than that of Pd/KIT-6 (T 90=234°C). CO 2 desorption capability has positive effects on catalytic activity, while the influence of toluene adsorption property is negligible. The superior activity of the composite catalysts can be ascribed to the cumulative of specific surface area, support acidity, Pd particles dispersion and CO 2 desorption capability.
KW - Catalytic oxidation
KW - Enhanced stability
KW - Hierarchical pore structure
KW - Recrystallization
KW - Volatile organic compounds
KW - ZSM-5/KIT-6
UR - https://www.scopus.com/pages/publications/84455205558
U2 - 10.1016/j.cej.2011.10.099
DO - 10.1016/j.cej.2011.10.099
M3 - 文章
AN - SCOPUS:84455205558
SN - 1385-8947
VL - 180
SP - 46
EP - 56
JO - Chemical Engineering Journal
JF - Chemical Engineering Journal
ER -