4.7 Article

Selective chemical separation of carbondioxide by ether functionalized imidazolium cation based ionic liquids

Journal

CHEMICAL ENGINEERING JOURNAL
Volume 181, Issue -, Pages 834-841

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.cej.2011.12.024

Keywords

ILs; CO2 absorption; Ether; Imidazole; TSILs

Funding

  1. Carbon Dioxide Reduction & Sequestration Research Center [CE3-101]
  2. Ministry of Science and Technology of the Korean government

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A series [C(2)Omim][X] of imidazolium cation-based ILs, with ether functional group on the alkyl side-chain were synthesized, characterized by various techniques such as H-1, C-13 NMR, MS-ESI, FIR and EA and investigated as potential absorbents for CO2 capture. More specifically, the influence of changing the anion with same cation is carried out. The absorption capacity of CO2 for ILs was investigated at 30 and 50 degrees C at ambient pressure (0-1.6 bar). Ether functionalized ILs show significantly high absorption capacity for CO2. The CO2 absorption capacity of ILs increased with a rise in pressure and decreased when temperature was raised. Results showed that absorption capacity reached about 0.9 mol CO2 per mol of IL at 30 degrees C. The most probable mechanism of interaction of CO2 with ILs was investigated using FTIR and C-13 NMR, and the result shows that the absorption of CO2 in ether functionalized ILs is a chemical process. The CO2 absorption results and detailed study indicate the predominance of 1:1 mechanism, where the CO2 reacts with one IL to form a carbamic acid. The CO2 absorption capacity of ILs for different anions follows the trend: BF4 < DCA similar to PF6 similar to TfO < Tf2N. Moreover, the as-synthesized ILs are selective, thermally stable, long life operational and can be recycled at a temperature of 70 degrees C or under vacuum and can be used repeatedly. (C) 2011 Elsevier B.V. All rights reserved.

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