The oxidative dehydrogenation of propane in the absence of O2 over the vanadia-based EL10V1 Eurocat catalyst is investigated in a Temporal Analysis of Products (TAP) reactor over a completely oxidized catalyst and at reduction degrees up to 0.47. Only CO2 and propene are detected as reaction products at temperatures from 723 to 823 K. The reduction of the catalyst with propane occurs through the formation of propene, the consecutive oxidation of propene to CO2 and the parallel total oxidation of propane. Four elementary reactions are considered as kinetically relevant: (1) the methyl C–H bond dissociation in propane during the formation of propene, (2) the methylene C–H bond breaking in propane to form surface isopropoxide, which finally tr...
This research presents a kinetic investigation of the selective oxidation of propane to acrylic acid...
The effect of cation identity on oxidative dehydrogenation (ODH) pathways was examined using two-dim...
Partial oxidation offers an attractive alternative route to form olefins from alkanes in simple and ...
In the field of selective oxidation, the utilization of the alkanes as raw materials instead of the ...
Producing propene by the oxidative dehydrogenation of propane (ODH) has become an attractive and fea...
The conversion of propane in the presence of oxygen on V-K/Al2O3 catalysts with different surface ar...
The kinetics of oxidative dehydrogenation of propane over a Ni-Co molybdate catalyst was investigate...
This study reports kinetic modeling of propane oxidative dehydrogenation (ODH) employing a new VO<su...
Producing propene by the oxidative dehydrogenation of propane (ODH) has become an attractive and fea...
Kinetic analysis and isotopic tracer studies were used to identify the elementary steps and their re...
Oxidative conversion of lower alkanes over lithium-promoted magnesia catalysts offers a viable alter...
The influence of the support material of low-loaded (<2 V nm−2) vanadia catalysts on selectivities, ...
The detailed mechanism for oxidative dehydrogenation of propane on the 1VO4(CH3)3 surface has been s...
Previous kinetic study reports on oxidative dehydrogenation (OXD) have suggested different mechanism...
Silica (SBA-15) supported vanadium oxide was used for a kinetic study of the oxidative dehydrogenati...
This research presents a kinetic investigation of the selective oxidation of propane to acrylic acid...
The effect of cation identity on oxidative dehydrogenation (ODH) pathways was examined using two-dim...
Partial oxidation offers an attractive alternative route to form olefins from alkanes in simple and ...
In the field of selective oxidation, the utilization of the alkanes as raw materials instead of the ...
Producing propene by the oxidative dehydrogenation of propane (ODH) has become an attractive and fea...
The conversion of propane in the presence of oxygen on V-K/Al2O3 catalysts with different surface ar...
The kinetics of oxidative dehydrogenation of propane over a Ni-Co molybdate catalyst was investigate...
This study reports kinetic modeling of propane oxidative dehydrogenation (ODH) employing a new VO<su...
Producing propene by the oxidative dehydrogenation of propane (ODH) has become an attractive and fea...
Kinetic analysis and isotopic tracer studies were used to identify the elementary steps and their re...
Oxidative conversion of lower alkanes over lithium-promoted magnesia catalysts offers a viable alter...
The influence of the support material of low-loaded (<2 V nm−2) vanadia catalysts on selectivities, ...
The detailed mechanism for oxidative dehydrogenation of propane on the 1VO4(CH3)3 surface has been s...
Previous kinetic study reports on oxidative dehydrogenation (OXD) have suggested different mechanism...
Silica (SBA-15) supported vanadium oxide was used for a kinetic study of the oxidative dehydrogenati...
This research presents a kinetic investigation of the selective oxidation of propane to acrylic acid...
The effect of cation identity on oxidative dehydrogenation (ODH) pathways was examined using two-dim...
Partial oxidation offers an attractive alternative route to form olefins from alkanes in simple and ...