The formation of NOx from fuel-bound nitrogen is important for the design of chemical-looping combustion (CLC) power plants. This work studied to what extent NO and NH3 reacts with the perovskite-like oxygen carrier ilmenite under conditions relevant to CLC. Based on mass balance calculations, N2 was the major outlet N-species in all experiments. More NO was measured at lower temperatures and at a higher oxidation level of the oxygen carrier. The presence of syngas hindered the reduction of NO by ilmenite. There were significant differences between the two ilmenites studied with respect to N-species selectivity. Norwegian (rock) ilmenite reduced NO efficiently and showed a stable reaction behavior compared to Australian (sand) ilmenite. Thi...
Oxy-fuel combustion technology can capture carbon dioxide (CO2) in the large-scale and greatly lower...
6 figures, 2 tables.-- Work presented at the 6th International Conference on Clean Coal Technologies...
Chemical-looping combustion (CLC) is a promising technology for future energy production with inhere...
Chemical looping combustion (CLC) is a novel combustion concept that transfers oxygen from air to fu...
Chemical looping combustion (CLC) is a novel combustion concept that transfers oxygen from air to fu...
The formation of NOx from fuel bound nitrogen is of importance to the design of chemical looping com...
The naturally occurring mineral ilmenite, FeTiO3, has been examined as oxygen carrier for chemical-l...
The oxidation of ammonia to NOx and N-2 was investigated under conditions that pertain to the fuel r...
Two oxygen carriers were tested with respect to chemical looping combustion (CLC) and chemical loopi...
The burning of all fossil fuels is accompanied by the production of large quantities of nitrogen oxi...
For a future scenery where will exist limitation for CO2 emissions, Chemical-Looping Combustion (CLC...
Journal ArticlePetroleum-, coal- and shale-derived liquid fuels were burned in a downfired tunnel fu...
For a future scenery where will exist limitation for CO2 emissions, Chemical Looping Combustion (CLC...
Formation and stability of surface NOx species related to the promotional effect of H2 over Ag–Al2O3...
Journal ArticleMore stringent regulations for NOx control in pulverized coal combustors have made th...
Oxy-fuel combustion technology can capture carbon dioxide (CO2) in the large-scale and greatly lower...
6 figures, 2 tables.-- Work presented at the 6th International Conference on Clean Coal Technologies...
Chemical-looping combustion (CLC) is a promising technology for future energy production with inhere...
Chemical looping combustion (CLC) is a novel combustion concept that transfers oxygen from air to fu...
Chemical looping combustion (CLC) is a novel combustion concept that transfers oxygen from air to fu...
The formation of NOx from fuel bound nitrogen is of importance to the design of chemical looping com...
The naturally occurring mineral ilmenite, FeTiO3, has been examined as oxygen carrier for chemical-l...
The oxidation of ammonia to NOx and N-2 was investigated under conditions that pertain to the fuel r...
Two oxygen carriers were tested with respect to chemical looping combustion (CLC) and chemical loopi...
The burning of all fossil fuels is accompanied by the production of large quantities of nitrogen oxi...
For a future scenery where will exist limitation for CO2 emissions, Chemical-Looping Combustion (CLC...
Journal ArticlePetroleum-, coal- and shale-derived liquid fuels were burned in a downfired tunnel fu...
For a future scenery where will exist limitation for CO2 emissions, Chemical Looping Combustion (CLC...
Formation and stability of surface NOx species related to the promotional effect of H2 over Ag–Al2O3...
Journal ArticleMore stringent regulations for NOx control in pulverized coal combustors have made th...
Oxy-fuel combustion technology can capture carbon dioxide (CO2) in the large-scale and greatly lower...
6 figures, 2 tables.-- Work presented at the 6th International Conference on Clean Coal Technologies...
Chemical-looping combustion (CLC) is a promising technology for future energy production with inhere...