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Density and Viscosity of Monoethanolamine + Water + Carbon Dioxide from (25 to 80) °C

Journal of Chemical & Engineering Data · 2009 · Vol. 54(11) · pp. 3096–3100
Trine Gusfre AmundsenLars Erik ØiDag A. Eimer

Abstract

Densities and dynamic viscosities in liquid solutions of monoethanolamine (MEA), water, and carbon dioxide (CO2) have been measured. The mass fraction of MEA in water was (20, 30, and 40) %, and CO2 loading was between (0 and 0.5) mol CO2 per mole MEA; the temperature was varied between (25 and 80) °C. These measurements were compared with literature data of solutions without CO2 and with data for CO2 loaded solutions primarily at 25 °C. The results show that the densities and viscosities increase significantly with increasing CO2 loading at all temperatures. The measured data for the ternary system were compared with available density and viscosity correlations from Weiland et al. J. Chem. Eng. Data 1998, 43, 378−382. Agreement between the measurements and the Weiland correlations was satisfactory. The deviation increases with increased MEA concentration, CO2 loading, and temperature.

Phase Equilibria and ThermodynamicsCarbon Dioxide Capture TechnologiesMembrane Separation and Gas TransportChemistryCarbon dioxideMole fractionViscosityTernary operationMass fractionThermodynamicsFraction (chemistry)Absolute deviationAnalytical Chemistry (journal)

Funding

  • Statoil
Citations
263
FWCI
4.34
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6
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References
Handbook of Chemistry and Physics.
Journal of Medicinal Chemistry · 1965 · 3,665 citations
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