Moving bed heat exchangers (MBHE)s are used in industrial applications including waste heat recovery and the drying of solids. As a result, energy balance models have been developed to simulate the heat transfer between a moving bed and the gas phase. Within these energy balance models, phase change of components within the gas phase has not been considered as the liquefaction or desublimation of the gas phase does not occur in typical industrial applications. However, available energy balance models for cryogenic CO2 capture (CCC) have only focused on fixed packed beds. The development of a suitable energy balance model to predict the energy duties for MBHEs that include phase change would be beneficial for CCC applications. This work inve...
Copyright © 2020 ASME The urgent need to decrease greenhouse gases (GHG) has prompted countries such...
An innovative CO2 capture technology called the cryogenic CO2 capture (CCC) process has significant ...
Moving bed temperature swing adsorption (MBTSA) is a promising technology for CO2 capture from flue ...
Moving bed heat exchangers (MBHE)s are used in industrial applications including waste heat recovery...
This study examines a novel cryogenic post-combustion capture process, based on a moving bed of cold...
In this work, the feasibility of a novel method of cryogenic carbon capture based on carbon dioxide ...
Carbon capture and storage (CCS) is generally considered as one of the necessary methods to mitigate...
This work expands upon previous work on a moving bed cryogenic carbon capture (CCC). Cryogenic carbo...
A novel Advanced Cryogenic Carbon Capture (A3C) process is being developed using low cost but high i...
A novel process concept has been studied for post-combustion CO2 capture from flue gases based on pe...
In the context of post-combustion CO2 capture, adsorption-based processes are considered a promising...
Removal of carbon dioxide to upgrading biogas is possible by cryogenics and frost formation. In this...
A novel Advanced Cryogenic Carbon Capture (A3C) process is being developed due to its potential to a...
A mathematical model of a continuous moving-bed temperature-swing adsorption (MBTSA) process for pos...
Assessing the role of carbon capture in energy systems dominated by non-dispatchable renewable energ...
Copyright © 2020 ASME The urgent need to decrease greenhouse gases (GHG) has prompted countries such...
An innovative CO2 capture technology called the cryogenic CO2 capture (CCC) process has significant ...
Moving bed temperature swing adsorption (MBTSA) is a promising technology for CO2 capture from flue ...
Moving bed heat exchangers (MBHE)s are used in industrial applications including waste heat recovery...
This study examines a novel cryogenic post-combustion capture process, based on a moving bed of cold...
In this work, the feasibility of a novel method of cryogenic carbon capture based on carbon dioxide ...
Carbon capture and storage (CCS) is generally considered as one of the necessary methods to mitigate...
This work expands upon previous work on a moving bed cryogenic carbon capture (CCC). Cryogenic carbo...
A novel Advanced Cryogenic Carbon Capture (A3C) process is being developed using low cost but high i...
A novel process concept has been studied for post-combustion CO2 capture from flue gases based on pe...
In the context of post-combustion CO2 capture, adsorption-based processes are considered a promising...
Removal of carbon dioxide to upgrading biogas is possible by cryogenics and frost formation. In this...
A novel Advanced Cryogenic Carbon Capture (A3C) process is being developed due to its potential to a...
A mathematical model of a continuous moving-bed temperature-swing adsorption (MBTSA) process for pos...
Assessing the role of carbon capture in energy systems dominated by non-dispatchable renewable energ...
Copyright © 2020 ASME The urgent need to decrease greenhouse gases (GHG) has prompted countries such...
An innovative CO2 capture technology called the cryogenic CO2 capture (CCC) process has significant ...
Moving bed temperature swing adsorption (MBTSA) is a promising technology for CO2 capture from flue ...