New experimental
data for CO2 solubility in the aqueous
solutions of N-methyldiethanolamine (MDEA) and 1-butylpyridinium
tetrafluoroborate ([Bpy][BF4]) ionic liquid (IL) are reported.
The experiments were conducted in a static high pressure equilibrium
cell. Solubility measurement
of CO2 was performed in various solution compositions of
IL and MDEA in a wide temperature range of 298.15–343.15 K
and pressures up to 4 MPa. The experimental results revealed that,
by increasing the weight percent of IL, the absorption capacity of
aqueous mixtures diminishes. It was also observed that the main capacity
of CO2 loading in the absorbent solutions belonged to MDEA
through chemical absorption, whereas its concentration was more effective
than IL in gas solubility. The experimental results are correlated
using a semiempirical model with good accuracy.
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