Eb. Rinker et al., KINETICS AND MODELING OF CARBON-DIOXIDE ABSORPTION INTO AQUEOUS-SOLUTIONS OF DIETHANOLAMINE, Industrial & engineering chemistry research, 35(4), 1996, pp. 1107-1114
The kinetics of the reaction between CO2 and aqueous diethanolamine (D
EA) were estimated over the temperature range of 293-343 K from absorp
tion data obtained in a laminar-liquid jet absorber. The absorption da
ta were obtained over a wide range of DEA concentrations and for CO2 p
artial pressures near atmospheric. A rigorous numerical mass-transfer
model based on penetration theory in which all chemical reactions are
considered to be reversible was developed and used to estimate kinetic
rate coefficients from the experimental absorption data. The kinetic
data were found to be consistent with the zwitterion mechanism. The sc
arce zwitterion rate coefficient estimates reported in the literature
are in fair agreement with the results of this work.