Preparation of Highly Dispersed Chromium Oxide Catalysts Supported on Mesoporous Silica for the Oxidative Dehydrogenation of Propane Using CO2: Insight into …

J Baek, HJ Yun, D Yun, Y Choi, J Yi - ACS Catalysis, 2012 - ACS Publications
J Baek, HJ Yun, D Yun, Y Choi, J Yi
ACS Catalysis, 2012ACS Publications
Highly dispersed chromium oxide catalysts supported on mesoporous silica (Cr-MSU-x)
were prepared via a (N0M n+) I0 pathway with the goal of achieving the high performance
oxidative dehydrogenation of propane (ODHP) reaction. The resulting materials exhibited a
mesopore structure resembling 3D wormhole-like holes, as characterized by N2 adsorption–
desorption isotherms and HR-TEM. Catalytic experimental results revealed that the catalyst
with a 0.028 Cr/Si molar ratio showed the highest catalytic activity among the catalysts …
Highly dispersed chromium oxide catalysts supported on mesoporous silica (Cr-MSU-x) were prepared via a (N0Mn+)I0 pathway with the goal of achieving the high performance oxidative dehydrogenation of propane (ODHP) reaction. The resulting materials exhibited a mesopore structure resembling 3D wormhole-like holes, as characterized by N2 adsorption–desorption isotherms and HR-TEM. Catalytic experimental results revealed that the catalyst with a 0.028 Cr/Si molar ratio showed the highest catalytic activity among the catalysts studied. Two types of chromium species, isolated Cr(VI) and polymeric Cr(VI) species, were observed, as evidenced by H2-temperature-programmed reduction. They were designated as “hard Cr(VI)” and “soft Cr(VI)” sites, respectively. The initial composition of the soft Cr(VI) in the total Cr(VI) is a major determinant factor in the ODHP performance.
ACS Publications
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