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CO2 Separation with Ionic Liquids

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CO2 Separation with Ionic Liquids ( co2-separation-with-ionic-liquids )

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(6), 1844-1854. (34) Chemat, F.; Anjum, H.; Shariff, A. M.; Kumar, P.; Murugesan, T., Thermal and physical properties of (Choline chloride + urea + l-arginine) deep eutectic solvents. J Mol Liq 2016, 218, 301-308. (35) Leron, R. B.; Li, M.-H., High-pressure density measurements for choline chloride: Urea deep eutectic solvent and its aqueous mixtures at T=(298.15 to 323.15)K and up to 50MPa. J Chem Thermodyn 2012, 54, (0), 293-301. (36) Su, W. C.; Wong, D. S. H.; Li, M. H., Effect of Water on Solubility of Carbon Dioxide in (Aminomethanamide +2-Hydroxy-N,N,N-trimethylethanaminium Chloride). J Chem Eng Data 2009, 54, (6), 1951-1955. (37) Mohsenzadeh, A.; Al-Wahaibi, Y.; Jibril, A.; Al-Hajri, R.; Shuwa, S., The novel use of Deep Eutectic Solvents for enhancing heavy oil recovery. J Petrol Sci Eng 2015, 130, 6-15. (38) Leron, R. B.; Li, M.-H., Molar heat capacities of choline chloride-based deep eutectic solvents and their binary mixtures with water. Thermochim Acta 2012, 530, (0), 52-57. (39) Arnold, T.; Jackson, A. J.; Sanchez-Fernandez, A.; Magnone, D.; Terry, A. E.; Edler, K. J., Surfactant Behavior of Sodium Dodecylsulfate in Deep Eutectic Solvent Choline Chloride/Urea. Langmuir 2015, 31, (47), 12894-12902. (40) D'Agostino, C.; Harris, R. C.; Abbott, A. P.; Gladden, L. F.; Mantle, M. D., Molecular motion and ion diffusion in choline chloride based deep eutectic solvents studied by 1H pulsed field gradient NMR spectroscopy. Phys Chem Chem Phy 2011, 13, (48), 21383-21391. (41) Abbott, A. P.; Capper, G.; Gray, S., Design of Improved Deep Eutectic Solvents Using Hole Theory. Chem Phys Chem 2006, 7, (4), 803-806. (42) Shahbaz, K.; Mjalli, F. S.; Hashim, M. A.; AlNashef, I. M., Prediction of the surface tension of deep eutectic solvents. Fluid Phase Equilibr 2012, 319, 48-54. (43) Zhang, Y.; Que, H.; Chen, C.-C., Thermodynamic modeling for CO2 absorption in aqueous MEA solution with electrolyte NRTL model. Fluid Phase Equilibr 2011, 311, 67-75. (44) Brelvi, S. W.; O'Connell, J. P., Correspondling states correlations for liquid compressibility and partial molal volumes of gases at infinite dilution in liquids. AIChE J 1972, 18, (6), 1239-1243. (45) Mirza, N. R.; Nicholas, N. J.; Wu, Y.; Mumford, K. A.; Kentish, S. E.; Stevens, G. W., Experiments and Thermodynamic Modeling of the Solubility of Carbon Dioxide in Three Different Deep Eutectic Solvents (DESs). J Chem Eng Data 2015, 60, (11), 3246-3252. (46) Xie, Y.; Dong, H.; Zhang, S.; Lu, X.; Ji, X. In Thermophysical properties and gas solubilities in choline chloride/urea for CO2 separation, International Conference on Applied Energy (ICAE), Pretoria, South Africa., 2013; Pretoria, South Africa., 2013. (47) Wu, S.-H.; Caparanga, A. R.; Leron, R. B.; Li, M.-H., Vapor pressure of aqueous choline chloride-based deep eutectic solvents (ethaline, glyceline, maline and reline) at 30–70°C. Thermochim Acta 2012, 544, (0), 1-5. (48) Hsu, Y.-H.; Leron, R. B.; Li, M.-H., Solubility of carbon dioxide in aqueous mixtures of (reline + monoethanolamine) at T = (313.2 to 353.2) K. J Chem Thermodyn 2014, 72, 94-99. (49) Cozma, P.; Wukovits, W.; Mămăligă, I.; Friedl, A.; Gavrilescu, M., Modeling and simulation of high pressure water scrubbing technology applied for biogas upgrading. Clean Techn Environ Policy 2014, 1-19. (50) Cozma, P.; Ghinea, C.; Mămăligă, I.; Wukovits, W.; Friedl, A.; Gavrilescu, M., Environmental Impact 25

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