[1] P. Maas, N. Nauels, L. Zhao, P. Markewitz, V. Scherer, M. Modigell, D. Stolten, J.-F. Hake, Energetic and economic evaluation of membrane-based carbon capture routes for power plant processes, Int J Greenh Gas Con. 44(2016) 124-139. [2] K.A. Mumford, Y. Wu, K.H. Smith, G.W. Stevens, Review of solvent based carbondioxide capture technologies, Front. Chem. Sci. Eng. 9(2015) 125-141. [3] S.X. Chen, X.M. Han, X.Y. Sun, X. Luo, Z.W. Liang. The comparative kinetics study of CO2 absorption into non-aqueous DEEA/MEA and DMEA/MEA blended systems solution by using stopped-flow technique. Chem. Eng. J. https://doi.org/10.1016/j.cej.2019.03.171 [4] Ke-Jun Wu, Qiao-Li Chen, Chao-Hong He, Speed of sound of ionic liquids:Database, estimation, and its application for thermal conductivity prediction, AIChE. J. 60(2014) 1120-1131. [5] K.R. Seddon, Ionic liquids for clean technology, J. Chem.Technol.Biot. 68(4) (2010) 351-356. [6] X.P. Zhang, X.C. Zhang, H.F. Dong, Z.J. Zhao, S.J. Zhang, Y. Huang, Carbon capture with ionic liquids:Overview and progress, Energy Environ. Sci. 5(2012) 6668-6681. [7] X. Liu, X. Zhang, G. Zhou, X. Yao, S. Zhang, All-atom and united-atom simulations of guanidinium-based ionic liquids, Sci. China. Chem. 55(2012) 1573-1579. [8] M.P. Gimeno, M.C. Mayoral, J.M. Andres, Influence of temperature on CO2 absorption rate and capacity in ionic liquids, Energy Fuel 27(2013) 3928-3935. [9] S.J. Zhang, X.P. Zhang, Y.S. Zhao, G.Y. Zhao, X.Q. Yao, H.W. Yao, A novel ionic liquidsbased scrubbing process for efficient CO2 capture, Sci. China.Chem. 53(2010) 1549-1553. [10] S.J. Zhang, X.L. Yuan, Y.H. Chen, X.P. Zhang, Solubilities of CO2 in 1-butyl-3-methylimidazolium hexafluorophosphate and 1,1,3,3-Tetramethylgu anidium lactate at elevated pressures, J. Chem. Eng. 50(2005) 1582-1585. [11] S. J. Hang, Y. H. Chen, R. X. F. Ren, Y. Q. Zhang, J. M. Zhang, X. P. Zhan. Solubility of CO2 in sulfonate ionic liquids at high pressure. J. Chem. Eng. 50(2005) 230-233. [12] J.F. Brennecke, B.E. Gurkan, Ionic liquids for CO2 capture and emission reduction, J. Phys. Chem. Lett. (24) (2010) 3459-3464. [13] Mahinder Ramdin, Theo W. de Loos, Thijs J.H. Vlugt, State-of-the-art of CO2 capture with ionic liquids, Ind. Eng. Chem. Res. 51(2012) 8149-8181. [14] Dan H. Blanchard, E.J. Beckman, J.F. Brennecke, Green processing using ionic liquids and CO2, Nature. 399(1999) 28-29. [15] S. Zeng, X. Zhang, L. Bai, X. Zhang, H. Wang, Ionic-liquid-based CO2 capture systems:Structure, interaction and process, Chem. Rev. 117(2017) 9625. [16] M.B. Shiflett, D.W. Drew, R.A. Cantini, A. Yokozeki, Carbon dioxide capture using ionic liquid 1-butyl-3-methylimidazolium acetate, Energ. Fuel. 24(2010) 5781-5789. [17] T. Ma, J. Wang, Z. Du, Z. Du, A.A. Abdeltawab, A.M. Al-Eniz, X. Chen, G. Yu, A process simulation study of CO2, capture by ionic liquids, Int. J. Greenh Gas Con. 58(2017) 223-231. [18] Y. Huang, X. Zhang, X. Zhang, H. Dong, S. Zhang, Thermodynamic modeling and assessment of ionic liquid-based CO2 capture processes, Ind. Eng. Chem. Res. 53(2014) 11805-11817. [19] O.M. Basha, M.J. Keller, D.R. Luebke, K.P. Resnik, B.I. Morsi, Development of a conceptual process for selective CO2 capture from fuel gas streams using[hmim] [Tf2N] ionic liquid as a physical solvent, Energ. Fuel. 27(2013) 3905-3917. [20] O.M. Basha, Y.J. Heintz, M.J. Keller, D.R. Luebke, K.P. Resnik, B.I. Morsi, Development of a conceptual process for selective capture of CO2 from fuel gas streams using two TEGO ionic liquids as physical solvents, Ind. Eng. Chem. Res. 53(2014) 3184-3195. [21] A. Yokozeki, M.B. Shiflett, Hydrogen purification using room-temperature ionic liquids, Appl. Energy 84(2007) 351-361. [22] M.B. Shiflett, A. Yokozeki, Solubility of CO2 in room temperature ionic liquid[hmim] [Tf2N], J. Phys. Chem. B 111(2007) 2070-2074. [23] A.M. Schilderman, S. Raeissi, C.J. Peters, Solubility of carbon dioxide in the ionic liquid 1-ethyl-3-methylimidazolium bis(trifluoromethylsulfonyl)imide, Fluid Phase Equilib. 260(2007) 19-22. [24] A.F. Ferreira, P.N. Simões, A.G.M. Ferreira, Quaternary phosphonium-based ionic liquids:thermal stability and heat capacity of the liquid phase, J.Chem.Thermodyn. 45(2012) 16-27. [25] F. Heym, W. Korth, B.J.M. Etzold, C. Kern, A. Jess, Determination of vapor pressure and thermal decomposition using thermogravimetrical analysis, Thermochim. Acta 622(2015) 9-17. [26] A.P. Fröba, M.H. Rausch, K. Krzeminski, D. Assenbaum, P. Wasserscheid, Thermal conductivity of ionic liquids:Measurement and prediction, Int. J. Thermophys. 31(2010) 2059-2077. [27] M. Tariq, A.P. Serro, J.L. Mata, B. Saramago, J. Esperança, J.N.C. Lopes, L.P.N. Rebelo, High-temperature surface tension and density measurements of 1-alkyl-3-methylimidazolium bistriflamide ionic liquids, Fluid Phase Equilib. 294(2019) 131-138. [28] V.M. Mecea, Is quartz crystal microbalance really a mass sensor, Sensor. Actuat. A-Phys. 128(2006) 270-277. [29] Z. Lei, H. Inomata, H. Ohyabu, Y. Sato, R.L. Smith, Solubility, swelling degree and crystallinity of carbon dioxide-polypropylene system, J. Supercrit. Fluids 40(2007) 452-461. [30] Z. Lei, J. Yuan, J. Zhu, Solubility of CO2 in propanone, 1-ethyl-3-methyl-imidazolium tetrafluoroborate, and their mixtures, J. Chem. Eng. Data 57(2010) 3458-3466. [31] E.K. Shin, B.C. Lee, High-pressure phase behavior of carbon dioxide with ionic liquids:1-Alkyl-3-methylimidazolium trifluoromethanesulfonate, J. Chem. Eng. Data 53(2008) 2728-2734. [32] J. Zhang, Q. Zhang, Qiao, A. Botao, Y. Deng, Solubilities of the gaseous and liquid solutes and their thermodynamics of solubilization in the novel room-temperature ionic liquids at infinite dilution by gas chromatography, J. Chem. Eng. Data 52(2007) 2277-2283. [33] Yan Fei Chen, Experiment Study and Quantum Chemistry Simulation on the Absorption of CO2 in Ionic Liquid. M.S. Thesis, ZheJIiang Univ Technol, China, 2014(in Chinese). [34] L.P. Rebelo, J.N. Canongia Lopes, J.M. Esperança, E. Filipe, On the critical temperature, normal boiling point, and vapor pressure of ionic liquids, J. Phys. Chem. B 109(2005) 6040-6043. [35] J.O. Valderrama, R.E. Rojas, Critical properties of ionic liquids revisited, Ind. Eng. Chem. Res. 48(2009) 6890-6900. [36] T. Makino, M. Kanakubo, Y. Masuda, T. Umecky, A. Suzuki, CO2 absorption properties, densities, viscosities, and electrical conductivities of ethyl-imidazolium and 1-ethyl-3-methylimidazolium ionic liquids, Fluid Phase Equilib. 362(2014) 300-306. |