Title of article :
Structure and acidity of Mo/H-MCM-22 catalysts studied by NMR spectroscopy
Author/Authors :
Shing-Jong Huang، نويسنده , , Qi Zhao، نويسنده , , Wen-Hua Chen، نويسنده , , Xiuwen Han، نويسنده , , Xinhe Bao*، نويسنده , , Pang-Shuen Lo، نويسنده , , Huang-Kuei Lee، نويسنده , , Shang-Bin Liu، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2004
Pages :
10
From page :
25
To page :
34
Abstract :
A comprehensive study on physical and chemical properties of Mo/MCM-22 bifunctional catalysts has been made by using combined analytic and spectroscopic techniques, such as adsorption, elemental analysis, and 129Xe and 31P NMR of adsorbed trialkylphosphine oxide probe molecules. Samples prepared by the impregnation method with Mo loadings ranging from 2–10 wt.% have been examined and the results are compared with that obtained from samples prepared by mechanical mixing using MoO3 or Mo2C as agents. Sample calcination treatment is essential in achieving a well-dispersed metal species in Mo/MCM-22. It was found that, upon initial incorporation, the Mo species tend to inactivate both Brønsted and Lewis sites locate predominantly in the supercages rather than the 10-membered ring channels of MCM-22. However, as the Mo loading exceeds 6 wt.%, the excessive Mo species tend to migrate toward extracrystalline surfaces of the catalyst. A consistent decrease in concentrations of acid sites with increasing Mo loading <6 wt.% was found, especially for those with higher acid strengths. Upon loading of Mo > 6 wt.%, further decreases in both Brønsted and Lewis acidities were observed. These results provide crucial supports for interpreting the peculiar behaviors previously observed during the conversion of methane to benzene over Mo/MCM-22 catalyst under non-oxidative conditions, in which an optimal performance was achieved with a Mo loading of 6 wt.%. The effects of Mo incorporation on porosity and acidity features of the catalyst are discussed.
Keywords :
Bifunctional catalyst , NMR , Mo/MCM-22 , Acidity. , porosity
Journal title :
CATALYSIS TODAY
Serial Year :
2004
Journal title :
CATALYSIS TODAY
Record number :
1232223
Link To Document :
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