The nitrogen and sulphur chemistry is more significant during compression of flue gases than they are under atmospheric conditions. This fact became apparent during the development of oxy-fuel power plant technology to capture carbon dioxide (CO2). In the oxy-fuel power plant, the CO2-rich flue gas stream is compressed to enable efficient transport and storage. During this process, NOx and SOx are removed as acids in the condensed water. However, the chemistry of these steps is not understood well enough to allow for control and design of the process.In the present work, the gas- and liquid-phase chemistry of NOx and SOx at elevated pressures were evaluated by comparing a state-of-the-art reaction mechanism to the results of experimental in...
AbstractThis study aims at reducing nitrogen and sulfur oxides contents in oxyfuel exhaust gases by ...
Research Doctorate - Doctor of Philosophy (PhD)Oxyfuel technology is a carbon capture and storage te...
Carbon capture and storage is vital to reach the climate goals to limit the increase in the global t...
The nitrogen and sulphur chemistry is more significant during compression of flue gases than they ar...
Oxy-fuel combustion enables fossil fuel combustion without greenhouse gas emissions, by the includin...
A rate-based model is developed to elucidate the chemistry behind the simultaneous absorption of NOx...
A rate-based model is developed to elucidate the chemistry behind the simultaneous absorption of NO<...
The control of NOx and SOx in chemical-looping combustion systems is discussed with the focus on the...
The gas- and liquid-phase chemistry of nitrogen and sulfur species under pressurized conditions is o...
This study investigates the operating and design parameters of product gas compression and integrate...
The gas- and liquid-phase chemistry of nitrogen and sulfur species under pressurized conditions is o...
Pressurized oxy-fuel combustion with carbon capture allows for fossil fuel use with low greenhouse g...
Oxyfuel combustion enables carbon dioxide capture for storage and can therefore significantly reduce...
Oxyfuel is a carbon capture and storage technology that reduces carbon dioxide emissions from coal f...
AbstractIn order to reduce simultaneously nitrogen and sulfur oxides contained in oxyfuel exhaust ga...
AbstractThis study aims at reducing nitrogen and sulfur oxides contents in oxyfuel exhaust gases by ...
Research Doctorate - Doctor of Philosophy (PhD)Oxyfuel technology is a carbon capture and storage te...
Carbon capture and storage is vital to reach the climate goals to limit the increase in the global t...
The nitrogen and sulphur chemistry is more significant during compression of flue gases than they ar...
Oxy-fuel combustion enables fossil fuel combustion without greenhouse gas emissions, by the includin...
A rate-based model is developed to elucidate the chemistry behind the simultaneous absorption of NOx...
A rate-based model is developed to elucidate the chemistry behind the simultaneous absorption of NO<...
The control of NOx and SOx in chemical-looping combustion systems is discussed with the focus on the...
The gas- and liquid-phase chemistry of nitrogen and sulfur species under pressurized conditions is o...
This study investigates the operating and design parameters of product gas compression and integrate...
The gas- and liquid-phase chemistry of nitrogen and sulfur species under pressurized conditions is o...
Pressurized oxy-fuel combustion with carbon capture allows for fossil fuel use with low greenhouse g...
Oxyfuel combustion enables carbon dioxide capture for storage and can therefore significantly reduce...
Oxyfuel is a carbon capture and storage technology that reduces carbon dioxide emissions from coal f...
AbstractIn order to reduce simultaneously nitrogen and sulfur oxides contained in oxyfuel exhaust ga...
AbstractThis study aims at reducing nitrogen and sulfur oxides contents in oxyfuel exhaust gases by ...
Research Doctorate - Doctor of Philosophy (PhD)Oxyfuel technology is a carbon capture and storage te...
Carbon capture and storage is vital to reach the climate goals to limit the increase in the global t...