CFD Simulation of CO2 Absorption from Power plant flue gas in Hollow-Fiber Membrane Contactors
Publish place: 3rd Conference of Separation Science and Engineering
Publish Year: 1391
Type: Conference paper
Language: English
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Document National Code:
CSSE03_048
Index date: 11 June 2012
CFD Simulation of CO2 Absorption from Power plant flue gas in Hollow-Fiber Membrane Contactors abstract
This study deals with absorption of CO2 in hollow-fiber membrane contactors (HFMCs). Simulations were performed to study CO2 transport through HFMCs. The simulations were performed via CFD techniques based on finite element method (FEM). Simulation results were validated with the experimental data for CO2 absorption using amine aqueous solutions. The simulation results were in consistent with the experimental data. Six liquid absorbents including aqueous solutions of monoethanolamine (MEA), diethanolamine (DEA), N-methyldiethanolamine (MDEA2-amino-2-methyl 1-propanol (AMP), sodium hydroxide (NaOH) and potassium glycinate (PG) were compared for absorption of CO2 The simulation results showed that the removal of CO2 using aqueous solution of PG was the highest among the other absorbents.
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CFD Simulation of CO2 Absorption from Power plant flue gas in Hollow-Fiber Membrane Contactors authors
Seyed Meisam Sharifi
Separation Laboratory, School of Chemical Engineering Iran University
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