AbstractAn Aspen RateSep absorber model was developed based on a new interfacial area correlation which was developed by experimental data for the MEA/CO2 system for Mellapak 2X packing. The model was verified with four tests from large scale pilot data (CESAR). Experiments were performed in a 1.1m diameter absorber equipped with four 4.25m bed of Mellapak 2X packing. Although the RateSep model slightly overestimates the absorber gas temperature profile, the model successfully showed the temperature profile shapes in the absorber. The reaction affects the temperature bulge and absorption rate in the absorber. The lower CO2 removal efficiency predicted by the RateSep model can be explained by the assumptions behind the kinetic model developm...
Process intensification (PI) has the potential to significantly reduce capital and operating costs i...
The performance of the CO2 absorber column using monoethanolamine (MEA) solution as chemical solvent...
A 5-components mathematical model was developed in Matlab (R2016a) for CO2 absorption from a gas mi...
AbstractHydrodynamics and mass transfer correlations for the design of structured packed columns hav...
Carbon dioxide capture by means of reactive absorption-stripping using MEA is a very extensively stu...
Power generation from fossil fuel-fired power plants is the largest single source of CO 2 emissions....
The desorption step of the carbon dioxide absorption/desorption process is an extremely energy inten...
This paper studied mass transfer in rotating packed bed (RPB) which has the potential to significant...
Rigorous packed-bed absorber modeling and simulation are significant for post-combustion CO2 capture...
In this article, pilot plant data for CO2 post-combustion capture are discussed and compared with mo...
The complexity of the phenomena involved in CO2 chemical absorption and solvent regeneration systems...
AbstractThe most promising process for Post Combustion Carbon Capture (PCC) is reactive absorption. ...
Process intensification (PI) technologies such as rotating packed beds (RPBs) could reduce the size ...
The chemical absorption process has been extensively studied as one of the main carbon capture and s...
AbstractThe monoethanolamine CO2 capture campaign of the CASTOR project was completed in January 200...
Process intensification (PI) has the potential to significantly reduce capital and operating costs i...
The performance of the CO2 absorber column using monoethanolamine (MEA) solution as chemical solvent...
A 5-components mathematical model was developed in Matlab (R2016a) for CO2 absorption from a gas mi...
AbstractHydrodynamics and mass transfer correlations for the design of structured packed columns hav...
Carbon dioxide capture by means of reactive absorption-stripping using MEA is a very extensively stu...
Power generation from fossil fuel-fired power plants is the largest single source of CO 2 emissions....
The desorption step of the carbon dioxide absorption/desorption process is an extremely energy inten...
This paper studied mass transfer in rotating packed bed (RPB) which has the potential to significant...
Rigorous packed-bed absorber modeling and simulation are significant for post-combustion CO2 capture...
In this article, pilot plant data for CO2 post-combustion capture are discussed and compared with mo...
The complexity of the phenomena involved in CO2 chemical absorption and solvent regeneration systems...
AbstractThe most promising process for Post Combustion Carbon Capture (PCC) is reactive absorption. ...
Process intensification (PI) technologies such as rotating packed beds (RPBs) could reduce the size ...
The chemical absorption process has been extensively studied as one of the main carbon capture and s...
AbstractThe monoethanolamine CO2 capture campaign of the CASTOR project was completed in January 200...
Process intensification (PI) has the potential to significantly reduce capital and operating costs i...
The performance of the CO2 absorber column using monoethanolamine (MEA) solution as chemical solvent...
A 5-components mathematical model was developed in Matlab (R2016a) for CO2 absorption from a gas mi...