[1] A.M. Karim, D.M. Kassim, M.S. Hameed, Phase equilibrium study for the separation of solid components using supercritical carbon dioxide, Thermodyn. J. 4(2010) 201-212. [2] C.C. Tsai, H.M. Lin, M.J. Lee, Solubility of niflumic acid and celecoxib in supercritical carbon dioxide, J. Supercrit. Fluids 95(2014) 17-23. [3] J. Zhu, C. Chang, H. Wu, J. Jin, Solubility of polyvinyl alcohol in supercritical carbon dioxide and subcritical 1,1,1,2-tetrafluoroethane, Fluid Phase Equilib. 404(2015) 61-69. [4] S. Ismadji, Y.H. Ju, F.E. Soetaredjo, A. Aning, Solubility of Azadirachtin in supercritical carbon dioxide at several temperatures, J. Chem. Eng. Data 56(2011) 4396-4399. [5] G. Brunner, Applications of supercritical fluids, Ann. Rev. Chem. Biomol. Eng. 1(2010) 321-342. [6] E. Reverchon, L. De Marco, Supercritical fluid extraction and fractionation of natural material, J. Supercrit. Fluids 38(2006) 146-166. [7] M.M.R. De Melo, A.J.D. Silvestre, C.M. Silva, Supercritical fluid extraction of vegetable matrices:Applications, trends and future perspectives of a convincing green technology, J. Supercrit. Fluids 92(2014) 115-176. [8] H.S. Yeoh, G.H. Chong, N.M. Azahan, A.R. Rahman, T. Shean, Y. Choong, Supercritical fluid extraction of vegetable matrices:Applications, trends and future perspectives of a convincing green technology, Eng. J. 17(3) (2003) 67-78. [9] M. Ardjmand, M. Mirzajanzadeh, F. Zabihi, Computation and modeling of solid drugs solubility in supercritical systems, Chin. J. Chem. Eng. 22(5) (2014) 549-558. [10] M. Mirzajanzadeh, F. Zabihi, M. Ardjmand, Measurement and correlation of ibuprofen solubility in supercritical carbon dioxide using Stryjek and Vera EOS, Iran. J. Chem. Eng. 7(4) (2010) 42-49. [11] A.J. Schultz, K. Shaul, S. Yang, D.A. Kofke, Modeling solubility in supercritical fluids via the virial equation of state, J. Supercrit. Fluids 55(2010) 479-484. [12] G.R. Pazuki, S. Mansouri, F. Feyzi, Modified cubic equation of state for prediction VLE phase behavior of fluids:Pure and mixture, Sep. Sci. Technol. 42(8) (2007) 1883-1899. [13] H. Misra, K.M. Bhupendra, D.C. Jain, Optimization of extraction conditions and HPTLC-UV method for determination of quinine in different extracts of cinchona species bark, Rec. Nat. Prod. 2(4) (2008) 107-115. [14] J.F. Jia, F. Zabihi, Y.H. Gao, Y. Zhao, Solubility of glycyrrhizin in supercritical carbon dioxide with and without cosolvent, J. Chem. Eng. Data 60(2015) 1744-1749. [15] A.C. Duarte, S. Santiago, H.C. Sousa, C.M. Duarte, Solubility of acetazolamide in supercritical carbon dioxide in the presence of ethanol as a cosolvent, J. Chem. Eng. Data 50(2005) 216-220. [16] M. Turk, M. Crone, T. Kraska, A comparion between models based on equations of state and density-based models for describing the solubility of solutes in CO2, J. Supercrit. Fluids 55(2010) 462-471. [17] B. Han, D.Y. Peng, A group-contribution correlation for predicting the acentric factors of organic compounds, Can. J. Chem. Eng. 71(1993) 332-334. [18] L. Constatinou, R. Gani, New group contribution method for estimating properties of pure compounds, AICHE J. 40(1994) 1697-1710. [19] K.G. Joback, R.C. Reid, Estimation of pure-component properties from groupcontributions, J. Chem. Commun. 57(1987) 233-243. [20] A.P. Kudchadker, G.H. Alani, B.J. Zwolinski, The critical constants of organic substances, Chem. Rev. 68(1986) 659-735. [21] D.L. Sparks, R.L. Hernandez, A. Estevez, Evaluation of density-based models for the solubility of solids in supercritical carbon dioxide and formulation of a new model, Chem. Eng. Sci. 63(2008) 4292-4301. [22] M.H. Barley, G. McFiggans, The critical assessment of vapour pressure estimation methods for use in modeling the formation of atmospheric organic aerosol, Atmos. Chem. Phys. 10(2010) 749-767. [23] S. Velasco, J.A. White, Some empirical rules concerning the vapor pressure curve revisited, J. Chem. Thermodyn. 68(2012) 193-198. [24] Z. Tang, J.S. Jin, Z.T. Zhang, H.T. Liu, New experimental data and modeling of the solubility of compounds in supercritical carbon dioxide, Ind. Eng. Chem. Res. 51(2012) 5515-5526. [25] M.R. Housaindokht, M.R. Bozorgmehr, Calculation of solubility of methimazole, phenazopyridine and propranolol in supercritical carbon dioxide, J. Supercrit. Fluids 43(2008) 390-397. [26] L. Nasri1, Z. Bensetiti, Solubility of solids in supercritical fluids:The Mendez-Santiago-Teja model revisited, Adv. Chem. Eng. Sci. 5(2015) 413-423. [27] A.M. Abudour, S.A. Mohammad, R.L. Robinson Jr., K.A.M. Gasem, Volume-translated Peng-Robinson equation of state for saturated and single-phase liquid densities, Fluid Phase Equilib. 335(2012) 74-87. |