Selective oxidation of propylene glycol is studied over silica-supported FeMoO catalysts with different Mo/Fe molar ratio. The catalysts are synthesized by wetness impregnation method and characterized by XRD, UV–vis, Raman spectroscopy, TPR and DFT methods. The catalytic properties are tested under gas phase conditions at 350 °C. The selectivity towards methylglyoxal formation is shown to be determined by the Mo/Fe molar ratio. The 55% selectivity towards methylglyoxal is achieved at Mo/Fe molar ratio of 3:1 through OH activation and CH bond scission route. CC bond cleavage route results in predominant formaldehyde formation at the Mo/Fe molar ratio of 1:2
XPS and IR spectroscopies were used to investigate the surface intermediates of dimethyl ether (DME)...
In order to investigate the role of iron in multicomponent molybdate (MCM) catalysts, a series of MC...
In industry, one of the main catalysts typically employed for the selective oxidation of methanol to...
Selective oxidation of propylene glycol is studied over silica-supported FeMoO catalysts with differ...
Currently, catalytic processing of biorenewable raw materials into valuable products attracts more a...
FeOx-SiO2 catalysts prepared by a sol-gel method were studied for the selective oxidation of methane...
FePО4/SiO2 supported catalysts with a different content of iron phosphate are prepared. The properti...
The selective oxidation of ethane was investigated over SBA-15-supported molybdenum oxide catalysts....
The partial oxidation of dimethylether (DME) to formaldehyde over supported MoOx and VOx catalysts w...
Typescript (photocopy).The selective oxidation of methanol to formaldehyde over molybdenum-containin...
Molybdenum-based catalysts for the gas-phase oxidation of propylene with air were investigated. Vari...
The role of Mo in the selective oxidation reaction is considered in some detail, focusing on the sel...
FeOx-, MoOx and FeMoOx-SiO materials prepared by a sol-gel procedure have been evaluated as catalyst...
Dimethyl ether (DME) reacts to form formaldehyde with high selectivity at 500-600 K on MoOx-ZrO2 cat...
Nowadays, transition metal oxide catalysts are employed to a large extent in many chemical processes...
XPS and IR spectroscopies were used to investigate the surface intermediates of dimethyl ether (DME)...
In order to investigate the role of iron in multicomponent molybdate (MCM) catalysts, a series of MC...
In industry, one of the main catalysts typically employed for the selective oxidation of methanol to...
Selective oxidation of propylene glycol is studied over silica-supported FeMoO catalysts with differ...
Currently, catalytic processing of biorenewable raw materials into valuable products attracts more a...
FeOx-SiO2 catalysts prepared by a sol-gel method were studied for the selective oxidation of methane...
FePО4/SiO2 supported catalysts with a different content of iron phosphate are prepared. The properti...
The selective oxidation of ethane was investigated over SBA-15-supported molybdenum oxide catalysts....
The partial oxidation of dimethylether (DME) to formaldehyde over supported MoOx and VOx catalysts w...
Typescript (photocopy).The selective oxidation of methanol to formaldehyde over molybdenum-containin...
Molybdenum-based catalysts for the gas-phase oxidation of propylene with air were investigated. Vari...
The role of Mo in the selective oxidation reaction is considered in some detail, focusing on the sel...
FeOx-, MoOx and FeMoOx-SiO materials prepared by a sol-gel procedure have been evaluated as catalyst...
Dimethyl ether (DME) reacts to form formaldehyde with high selectivity at 500-600 K on MoOx-ZrO2 cat...
Nowadays, transition metal oxide catalysts are employed to a large extent in many chemical processes...
XPS and IR spectroscopies were used to investigate the surface intermediates of dimethyl ether (DME)...
In order to investigate the role of iron in multicomponent molybdate (MCM) catalysts, a series of MC...
In industry, one of the main catalysts typically employed for the selective oxidation of methanol to...