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Kinetics of Absorption of Carbon Dioxide in Aqueous Solution of Ethylaminoethanol Modified with N-methyl-2-pyrolidone.

Authors :
Bhosale, Rahul R.
Mahajani, Vijaykumar V.
Source :
Separation Science & Technology. Oct2013, Vol. 48 Issue 15, p2324-2337. 14p.
Publication Year :
2013

Abstract

In this paper, kinetics of absorption of CO2in an aqueous ethylaminoethanol (EAE) and formulated solvent (aqueous blend of EAE and N-methyl-2-pyrrolidone (NMP)) was studied in a stirred cell reactor by using a fall in pressure technique. The reaction pathways for CO2–aqueous EAE system were comprehensively described using both zwitterion and termolecular mechanisms. The physico-chemical properties such as density (ρ) and viscosity (μ) of aqueous EAE and formulated solvent and the solubility () and diffusivity of CO2() in these solvents were estimated experimentally. The reactive absorption of CO2in an aqueous EAE was observed to be first order with respect to both CO2and EAE concentrations. Addition of NMP in aqueous EAE enhances theby 40%, which ultimately results into higher CO2absorption rates in formulated solvent (∼20% higher) compared to that of the aqueous EAE. Effect of concentration of EAE (0.5 to 2 kmol/m3) and temperature (303 to 318 K) on CO2absorption kinetics was studied in detail and it was realized that the rate of absorption of CO2in aqueous EAE and formulated solvent was significantly affected by the change in these parameters. The findings obtained during the temperature dependency study further indicates that the activation energy of the absorption of CO2in aqueous EAE (80.2 kJ/mol) was relatively lower in comparison with the activation energy of the absorption of CO2in formulated solvent (88.95 kJ/mol). The overall reaction of CO2with the formulated solvent could be regarded as the reaction of CO2with aqueous EAE in parallel with the reaction between CO2and aqueous NMP. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01496395
Volume :
48
Issue :
15
Database :
Academic Search Index
Journal :
Separation Science & Technology
Publication Type :
Academic Journal
Accession number :
90215681
Full Text :
https://doi.org/10.1080/01496395.2013.805228