The crystal and pore structures of a microspherical alumina-chromium catalyst calcined at 800-1100 C were studied using a set of currently available physicochemical techniques (X-ray diffraction, lowtemperature nitrogen adsorption, diffuse reflectance UV-vis spectroscopy, Raman spectroscopy, and EPR spectroscopy); the state of its active component and the catalytic properties in isobutane dehydrogenation were examined. As the calcination temperature was increased from 800 to 900-1000 C, the properties of the catalyst were improved as a result of the formation of Cr2O3 clusters in an optimum amount and a decrease in the surface acidity of the catalyst due to the dehydroxylation and phase transformations of the aluminum oxide support. Calcina...
For the purpose of improving the mechanical strength and reducing the abrasive activity of micro-sph...
The syntheses of MCM-41 (Mobil Composition of Matter No. 41) supported chromium oxide catalysts at d...
Three methods of introduction of modifiers based on Cu and Zn compounds into the CrOx/Al2O3 catalyst...
The crystal and pore structures of a microspherical alumina-chromium catalyst calcined at 800-1100 C...
The crystal and pore structures of a microspherical alumina-chromium catalyst calcined at 800-1100 C...
The crystal and pore structures of a microspherical alumina-chromium catalyst calcined at 800-1100 C...
A systematic physical and chemical analysis of different industrial microspherical supports based on...
A systematic physical and chemical analysis of different industrial microspherical supports based on...
A systematic physical and chemical analysis of different industrial microspherical supports based on...
he demand for C3-C5 olefins is constantly growing, that is why it is important to improve the perfor...
We analyze the effects of fluidized bed height, circulation ratio, and pressure drop in a reactor on...
We analyze the effects of fluidized bed height, circulation ratio, and pressure drop in a reactor on...
In this study, the performance of chromium oxide catalysts supported on Al2O3 was evaluated. The eff...
For the purpose of improving the mechanical strength and reducing the abrasive activity of micro-sph...
For the purpose of improving the mechanical strength and reducing the abrasive activity of micro-sph...
For the purpose of improving the mechanical strength and reducing the abrasive activity of micro-sph...
The syntheses of MCM-41 (Mobil Composition of Matter No. 41) supported chromium oxide catalysts at d...
Three methods of introduction of modifiers based on Cu and Zn compounds into the CrOx/Al2O3 catalyst...
The crystal and pore structures of a microspherical alumina-chromium catalyst calcined at 800-1100 C...
The crystal and pore structures of a microspherical alumina-chromium catalyst calcined at 800-1100 C...
The crystal and pore structures of a microspherical alumina-chromium catalyst calcined at 800-1100 C...
A systematic physical and chemical analysis of different industrial microspherical supports based on...
A systematic physical and chemical analysis of different industrial microspherical supports based on...
A systematic physical and chemical analysis of different industrial microspherical supports based on...
he demand for C3-C5 olefins is constantly growing, that is why it is important to improve the perfor...
We analyze the effects of fluidized bed height, circulation ratio, and pressure drop in a reactor on...
We analyze the effects of fluidized bed height, circulation ratio, and pressure drop in a reactor on...
In this study, the performance of chromium oxide catalysts supported on Al2O3 was evaluated. The eff...
For the purpose of improving the mechanical strength and reducing the abrasive activity of micro-sph...
For the purpose of improving the mechanical strength and reducing the abrasive activity of micro-sph...
For the purpose of improving the mechanical strength and reducing the abrasive activity of micro-sph...
The syntheses of MCM-41 (Mobil Composition of Matter No. 41) supported chromium oxide catalysts at d...
Three methods of introduction of modifiers based on Cu and Zn compounds into the CrOx/Al2O3 catalyst...