Selective as well as waste forming active centers were defined for MoVNbTeO and MoVTaTeO catalysts in the ammoxidation of propane to acrylonitrile and all catalytic functionalities were assigned to specific elements at the respective active centers. Symbiosis between M1 and M2 phases of these catalysts was observed, with phase cooperation being more extensive in the Nb than Ta containing compositions. The difference in catalytic effectiveness arises most likely because contact and surface area exposure of the two respective, cooperating phase pairs are not equal. The M1 phase of the catalysts is reducible by propane and ammonia in the absence of dioxygen and is regenerable to its original, fully oxidized state by dioxygen (air). No structur...
This study focuses on the structure–activity relationships in the reaction of ethylene with ammonia ...
The reaction of ethylene with ammonia, without gaseous oxygen, to acetonitrile over gamma-Al2O3 supp...
Mo-V-Te-Nb mixed oxides with a molar ratio of 1:0.30:0.20:0.15 were prepared by citrate and dry-up m...
Essentially pure orthorhombic M1 and pseudo-hexagonal M2 phases were prepared using the precursor me...
Catalysts belonging to the Mo-V-Nb-Te-O system have been prepared with both a slurry method and hydr...
We investigated propane ammoxidation to acrylonitrile over hydrothermal Mo-V-Nb-TeO catalyst contain...
MoVNbTe catalyst has been prepared using slurry method for the ammoxidation of propane to acrylonitr...
The ammoxidation of propane is commonly regarded as being the future route for producing acrylonitri...
Propane ammoxidation to acrylonitrile over rutile-type vanadia catalysts is discussed regarding phas...
The ammoxidation of propane has been investigated at a multicomponent oxidic, MoVTeNb catalyst in th...
The reaction mechanism of propane ammoxidation was studied on an Al-Sb-V-W-oxide catalyst using a TA...
Mo-V-Nb-Te-oxide catalysts with nominal metal compositions equal to those of M1, M2, and a mixture o...
The influence of different reaction conditions on the catalytic activity of vanadium-aluminium oxyni...
International @ RAFFINAGE+CLO:PDE:SLO:JMIInternational audienceAcrylonitrile is an important interme...
One of the most effective propane to acrylonitrile ammoxidation catalyst is comprised of the two pha...
This study focuses on the structure–activity relationships in the reaction of ethylene with ammonia ...
The reaction of ethylene with ammonia, without gaseous oxygen, to acetonitrile over gamma-Al2O3 supp...
Mo-V-Te-Nb mixed oxides with a molar ratio of 1:0.30:0.20:0.15 were prepared by citrate and dry-up m...
Essentially pure orthorhombic M1 and pseudo-hexagonal M2 phases were prepared using the precursor me...
Catalysts belonging to the Mo-V-Nb-Te-O system have been prepared with both a slurry method and hydr...
We investigated propane ammoxidation to acrylonitrile over hydrothermal Mo-V-Nb-TeO catalyst contain...
MoVNbTe catalyst has been prepared using slurry method for the ammoxidation of propane to acrylonitr...
The ammoxidation of propane is commonly regarded as being the future route for producing acrylonitri...
Propane ammoxidation to acrylonitrile over rutile-type vanadia catalysts is discussed regarding phas...
The ammoxidation of propane has been investigated at a multicomponent oxidic, MoVTeNb catalyst in th...
The reaction mechanism of propane ammoxidation was studied on an Al-Sb-V-W-oxide catalyst using a TA...
Mo-V-Nb-Te-oxide catalysts with nominal metal compositions equal to those of M1, M2, and a mixture o...
The influence of different reaction conditions on the catalytic activity of vanadium-aluminium oxyni...
International @ RAFFINAGE+CLO:PDE:SLO:JMIInternational audienceAcrylonitrile is an important interme...
One of the most effective propane to acrylonitrile ammoxidation catalyst is comprised of the two pha...
This study focuses on the structure–activity relationships in the reaction of ethylene with ammonia ...
The reaction of ethylene with ammonia, without gaseous oxygen, to acetonitrile over gamma-Al2O3 supp...
Mo-V-Te-Nb mixed oxides with a molar ratio of 1:0.30:0.20:0.15 were prepared by citrate and dry-up m...