A series of alumina supported cobalt oxide based catalysts doped with noble metals such as ruthenium and platinum were prepared by wet impregnation method. The variables studied were difference ratio and calcination temperatures. Pt/Co(10:90)/Al2O3 catalyst calcined at 700°C was found to be the best catalyst which able to convert 70.10% of CO2 into methane with 47% of CH4 formation at maximum temperature studied of 400°C. X-ray diffraction analysis showed that this catalyst possessed the active site Co3O4 in face-centered cubic and PtO2 in the orthorhombic phase with Al2O3 existed in the cubic phase. According to the FESEM micrographs, both fresh and spent Pt/Co(10:90)/Al2O3 catalysts displayed small particle size with undefined shape. Nitr...
In this study, the catalytic methanation conversion system is introduced to convert CO2 to methane (...
Carbon dioxide emission to the atmosphere is worsened as all the industries emit greenhouse gases (G...
Converting the CO2 gas via catalytic methanation technology has significant potential application in...
AbstractCarbon dioxide (CO2) in sour natural gas can be removed using green technology via catalytic...
The presence of carbon dioxide and water molecules as impurities in crude natural gas decreases the ...
AbstractCarbon dioxide (CO2) in sour natural gas can be removed using green technology via catalytic...
Carbon dioxide (CO2) in sour natural gas can be removed using green technology via catalytic methana...
AbstractThe presence of carbon dioxide and water molecules as impurities in crude natural gas decrea...
AbstractThe presence of carbon dioxide and water molecules as impurities in crude natural gas decrea...
Malaysian crude natural gas categorized as a sour gas due to the contamination of CO2 other gases. T...
Summarization: The catalytic performance of Al2O3-supported noble metal catalysts for the methanatio...
Malaysia sour natural gas that containing high contents of carbon dioxide (CO2), hydrogen sulphide (...
Malaysia produces an acidic crude natural gas which contains 23% of CO2 and 95 % of CO2 conversion ...
CO methanation reaction over the Ni/Al2O3 catalysts for synthetic natural gas production was systema...
In this study, the catalytic methanation conversion system is introduced to convert CO2 to methane (...
In this study, the catalytic methanation conversion system is introduced to convert CO2 to methane (...
Carbon dioxide emission to the atmosphere is worsened as all the industries emit greenhouse gases (G...
Converting the CO2 gas via catalytic methanation technology has significant potential application in...
AbstractCarbon dioxide (CO2) in sour natural gas can be removed using green technology via catalytic...
The presence of carbon dioxide and water molecules as impurities in crude natural gas decreases the ...
AbstractCarbon dioxide (CO2) in sour natural gas can be removed using green technology via catalytic...
Carbon dioxide (CO2) in sour natural gas can be removed using green technology via catalytic methana...
AbstractThe presence of carbon dioxide and water molecules as impurities in crude natural gas decrea...
AbstractThe presence of carbon dioxide and water molecules as impurities in crude natural gas decrea...
Malaysian crude natural gas categorized as a sour gas due to the contamination of CO2 other gases. T...
Summarization: The catalytic performance of Al2O3-supported noble metal catalysts for the methanatio...
Malaysia sour natural gas that containing high contents of carbon dioxide (CO2), hydrogen sulphide (...
Malaysia produces an acidic crude natural gas which contains 23% of CO2 and 95 % of CO2 conversion ...
CO methanation reaction over the Ni/Al2O3 catalysts for synthetic natural gas production was systema...
In this study, the catalytic methanation conversion system is introduced to convert CO2 to methane (...
In this study, the catalytic methanation conversion system is introduced to convert CO2 to methane (...
Carbon dioxide emission to the atmosphere is worsened as all the industries emit greenhouse gases (G...
Converting the CO2 gas via catalytic methanation technology has significant potential application in...