Javascript must be enabled to continue!
Physical and Chemical Characteristics of Cobalt Catalysts in the Process of Hydrogenating Acetylene
View through CrossRef
This paper describes the results of studies of the physicochemical characteristics of cobalt catalysts and methods for modifying them with alumina. The elemental composition, the peculiarities of formation of the structural and phase composition of cobalt catalysts are studied. The influence of the carbonization process of cobalt catalysts at a temperature of 550°С on the specific surface is determined. The increase in the specific surface in cobalt catalysts was studied to proceed uniformly, as the formation of large grains and accumulations of active components was not observed. According to the results of X-ray diffraction (XRD) analysis, the formation of aluminosilicate phases, cobalt oxide, and cobalt are detected. The surface of cobalt samples was investigated by scanning electron microscope (SEM). Electron microscopy revealed crystallites of cobalt particles with sizes of 300‒400 nm. It is shown that in the course of modification with alumina, in cobalt catalysts active centers are formed that enhance their catalytic properties during the reaction of hydrogenation of acetylene to ethylene. It is found that cobalt catalysts exhibit catalytic activity in the acetylene hydrogenation reaction. On cobalt catalysts at a temperature of 160°C at a conversion of 82%, the yield of ethy lene is 64.1%.
Institute of Combustion Problems
Title: Physical and Chemical Characteristics of Cobalt Catalysts in the Process of Hydrogenating Acetylene
Description:
This paper describes the results of studies of the physicochemical characteristics of cobalt catalysts and methods for modifying them with alumina.
The elemental composition, the peculiarities of formation of the structural and phase composition of cobalt catalysts are studied.
The influence of the carbonization process of cobalt catalysts at a temperature of 550°С on the specific surface is determined.
The increase in the specific surface in cobalt catalysts was studied to proceed uniformly, as the formation of large grains and accumulations of active components was not observed.
According to the results of X-ray diffraction (XRD) analysis, the formation of aluminosilicate phases, cobalt oxide, and cobalt are detected.
The surface of cobalt samples was investigated by scanning electron microscope (SEM).
Electron microscopy revealed crystallites of cobalt particles with sizes of 300‒400 nm.
It is shown that in the course of modification with alumina, in cobalt catalysts active centers are formed that enhance their catalytic properties during the reaction of hydrogenation of acetylene to ethylene.
It is found that cobalt catalysts exhibit catalytic activity in the acetylene hydrogenation reaction.
On cobalt catalysts at a temperature of 160°C at a conversion of 82%, the yield of ethy lene is 64.
1%.
Related Results
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Abstract
The Physical Activity Guidelines for Americans (Guidelines) advises older adults to be as active as possible. Yet, despite the well documented benefits of physical a...
Effects of long-term treatment with acetylene on nitrogen-fixing microorganisms
Effects of long-term treatment with acetylene on nitrogen-fixing microorganisms
Long periods of experimental incubation with acetylene led to a multifold enhancement of acetylene-reducing activity in Anabaena cylindrica, Anabaenopsis circularis, Rhodospirillum...
Distributions and perturbations of the marine dissolved cobalt cycle in a changing ocean
Distributions and perturbations of the marine dissolved cobalt cycle in a changing ocean
Cobalt is a necessary nutrient for many marine phytoplankton, but its hybrid-type nature results in small marine inventories that make it one of the scarcest bioactive trace metals...
Continuous Photocatalytic Acetylene Conversion to Ethylene in Liquid Under Ambient Conditions
Continuous Photocatalytic Acetylene Conversion to Ethylene in Liquid Under Ambient Conditions
Abstract
Ethylene is a basic building block for polymer synthesis, but its purification from petroleum‐based processes (e.g., thermo‐catalyti...
Cu and Mn oxides supported on urea-modified HZSM-5 catalysts for the catalytic oxidation of toluene
Cu and Mn oxides supported on urea-modified HZSM-5 catalysts for the catalytic oxidation of toluene
Abstract
Series of ZSM-5 molecular sieve-loaded cobalt-based catalysts (Co/S-0.1, CoCu/S-0.1, CoMn/S-0.1) were prepared using the impregnation me...
Supramolecular Chemistry of Cobalt-Corrins
Supramolecular Chemistry of Cobalt-Corrins
Cobalt corrins are chiral relatives of the cobalt porphyrins, in which the ligand is much less unsaturated and is also ‘contracted’ by one carbon. This type of ligand strongly affe...
A Model for Cobalt 60/58 Deposition on Primary Coolant Piping in a Boiling Water Reactor
A Model for Cobalt 60/58 Deposition on Primary Coolant Piping in a Boiling Water Reactor
Opportunity exists in current BWRs to minimize or reduce the radiation fields which are present in the reactor coolant circuitry when the reactor is shut down. The major contributo...
Modification of titania having different crystallite sizes and their applications as supports for cobalt catalysts
Modification of titania having different crystallite sizes and their applications as supports for cobalt catalysts
Ru-modified and Zr-modified titania supported cobalt catalysts with different crystallite sizes of TiO₂ (11-16 nm) were investigated in this study. The catalysts were prepared by i...

