參考文獻 |
參考文獻(Ⅰ)
Ashour, I., Almehaideb, R., Fateen, S. E., and Aly, G., Representation of solid-supercritical fluid phase equilibria using cubic equation of state, Fluid Phase Equilib., 167 (2000) 41-61
Bush, D. and Eckert, C. A., Prediction of solid-fluid equilibria in supercritical carbon dioxide using linear salvation energy relationships, Fluid Phase Equilibria, 150-151 (1998) 479-492
Beckman, E. J., Supercritical and near-critical CO2 in green chemical synthesis and processing, J. Supercritical Fluids, 28 (2004) 121-191
Ch, R., Garlapati, C. and Madras, G., Solubility of n-(4-ethoxyphenyl)ethanamide in
supercitical carbon dioxide., J. Chem. Eng. Data., 55 (2010) 1437-1440
Ch, R. and Madras, G., An association model for the solubilities of pharmaceuticals in supercritical carbon dioxide., Thermochimica. Acta., 507-508 (2010) 99-105
Chen, P. Y., Shen, C. T., Liau, B. C., Wu, T. M., Shieh C. I., et al. Demonstration of
continuous supercritical carbon dioxide anti-solvent purification and classific-
ation of nano/micro-sized precipitates of algal zeaxanthin from Nannochloropsis
oculata, J Taiwan Inst Chem. Eng, 42 (2011) 598-603
Chen, Y. M. and Chen Y. P., Measurements for the solid solubilities of antipyrine, 4-aminoantipyrine and 4-dimethylaminoantipyrine in supercritical carbon dioxide, Fluid. Phase. Equilib, 282 (2009) 82-87
Chen, Y. M., Lin, P. C., Tang, M. and Chen, Y. P., Solid solubility of antilipemic agents and micronization of gemfibrozil in supercritical carbon dioxide., J. Supercrit. Fluids., 52 (2010) 175-182
Chrastil, J., Solubility of solids and liquids in supercritical gases, J. Phys. Chem., 86 (1982) 3016-3021
De Zordi N., Kikic I., Moneghini M. and Solinas D., Solubility of pharmaceutical compounds in supercritical carbon dioxide, J Supercrit Fluids 66 (2012) 16-22
Ely, J. F., Haynes, W. M. and Bain, B. C., Isochoric (P, Vm, T) measurements on CO2 and on (0.982CO2 + 0.018N2) from 250 to 330K at pressure to 35MPa, J. Chem. Thermodyn., 21 (1989) 879-894
Fedors, R. F., A method for estimating both the solubility parameters and molar volume of liquids, Pol. Eng. Sci., 14 (1974) 147-154
Garnier, S., Neau, E., Alessi, P., Cortesi. A. and Kikic, I., Modelling solubility of
solids in supercritical fluids using fusion properties, Fluid Phase Equilib.,158-
160 (1999) 491-500
Goharshadi, E. K. and Hesabi, M., Estimation of solubility parameter using equations of state, J Mol Liq, 113 (2004) 125-132
Gharagheizi, F., Eslamimanesh, A., Mohammadi, A. H. and Richon, D., Artificial Neural Network Modeling of Solubilities of 21 Commonly Used Industrial Solid Compounds in Supercritical Carbon Dioxide., 50 (2011) 211-226
Gong, X.Y. and Cao, X. J., Measurement and correlation of solubility of artemisinin in supercritical carbon dioxide. Fluid. Phase. Equilib, 284 (2009) 26-30
Huron, M. J. and Vidal, J., New mixing rules in simple equations of state for represen-
ting vapor-liquid equilibria of strongly non-ideal mixtures, Fluid Phase Equilib.,
3 (1979) 255-271
Hosseini, M.H., Alizadeh, N. and Khanchi, A.R,. Solubility analysis of clozapine and lamotrigine in supercritical carbon dioxide using static system, J. Supercrit. Fluids, 52 (2010) 30-35
Iwai, Y., Koga, Y., Fukuda, T., and Arai, Y., Correlation of solubilities of high-boiling components in supercritical carbon dioxide using a solution model. J Chem Eng Jpn., 25 (1992) 757-760
Jung, J.and Perrut, M., Particle design using supercritical fluids: Literature and patent survey, J. Supercrit. Fluids, 20 (2001) 179-219
Jain, A., Yang, G., and Yalkowsky, S. H., Estimation of total entropy of melting of organic compounds, Ins. Eng. Chem. Res, 43 (2004) 4376-4379
Jacobsen, R. T. and Stewart, R. B., Thermodynamic properties of nitrogen including liquid and vapor phases from 63K to 2000K with pressures to 10,000 bar, J. Phys. Chem. Ref. Data, 2 (1973) 757-922
Kramer, A.and Thodos, G. Adaptation of the Flory-Huggins theory for modeling supercritical solubilities of solids, Ind. Eng. Chem. Res. 27 (1988) 1506-1510
Mendez-Santiago, J. and Teja, A. S., The solubility of solids in supercritical fluids, Fluid Phase Equilibria, 158-160 (1999) 501-510
Pasquali, I., Bettini, R. and Giordano,. F. Solid-state chemistry and particle engineering with supercritical fluids in pharmaceutics, Eur. J. Pharm. Sci., 27 (2006) 299-310
Park, K. A,. Kim, K. H. and Hong, I. K,. Comparison of solubility parameters for alkane family obtained using cubic equation of state, J. Ind. Eng. Chem., 17 (2011) 213-217
Park, C. I., Shin, M. S. and Kim, H., Solubility of climbazole and triclocarban in supercritical carbon dioxide: measurement and correlation, J Chem Thermody 41 (2009) 30-34
Peng, D. Y. and Robinson, D. B., A new two-constant equation of state, Ind. Eng. Chem. Fundam., 15 (1976) 59-64
Reverchon, E. and De Marco I., Supercritical fluid extraction and fractionation of natural matter, J. Supercritical Fluids, 38 (2006) 146-166
Su, C. S. and Chen, Y. P., Measurement and correlation for the solid solubility of non-steroidal anti-inflammatory drugs (NSAIDs) in supercritical carbon dioxide, J Supercrit Fluids, 43 (2008) 438-446
Su, C.S., Chen, Y. M. and Chen, Y.P,. Correlation of solid solubilities for phenolic compounds and steroids in supercritical carbon dioxide using the solution model, J Taiwan Inst Chem Eng, 42 (2011) 608-615
Sparks, D. L., Hernandez, R. and Estévez, L. A., 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
Shekunov, B. and York, P., Crystallization processes in pharmaceutical technology and drug delivery design, J. Crystal Growth, 211 (2000) 122-136
Yamini, Y., Kalantarian, P., Hojjati. M., Esrafily. A., Moradi, M., Vatanara, A. and Harrian, I., Solubilities of flutamide, dutasteride, and finasteride as antiandro-
genic agents in supercritical carbon dioxide: measurement and correlation, J. Chem. Eng. Data., 55 (2010) 1056-1059
York P., Strategies for particle design using supercritical fluid technologies, Pharm Sci Tech Today, 2 (1999) 430-440.
Yamini, Y. and Moradi, M., Measurement and correlation of antifungal drugs solubil-ity in pure supercritical CO2 using semiempirical models, J. Chem. Thermody., 43 (2011) 1091-1096
參考文獻(Ⅱ)
Abrams D. S., Prausnitz J. M., “Statistical Thermodynamic of Liquid Mixtures: A New Expression For the Excess Gibbs Energy of Partly or Completely Miscible Systems”, AIChE J., 21-1 (1975) 116-128
Anderson T. F., Abrams D. S., Grens E. A., “Evaluation of Parameters for Nonlinear Thermodynamic Models”, AIChE Journal, 24-1 (1978) 20-29
Esposito W.R., Floudas C.A., “Global Optimization in parameter Estimation of Nonlinear Algebraic Modles via the Error-in-Variables Approach”, Ind. Eng. Chem. Res, 37 (1998) 1841-1858
Kemeny S., Manczinger J., Skjold-Jørgensen S., Toth K., “Reduction of Thermo-dynamic Data by Means of the Multiresponse Maximum Likelihood Principle”, AIChE J, 28 (1982) 20-30
M. B. Gramajo de Doz, C. M. Bonatti, and H. N. Sólimo, “(liquid + liquid) equilibria of ternary and quaternary systems with two hydrocarbons, an alcohol, and water at 313.15 K systems containing cyclophexane, benzene, ethanol, and water,” The Journal of Chemical Thermodynamics, 35 (2003) 2055-2065
M. B. Gramajo de Doz, C. M. Bonatti, and H. N. Sólimo, “liquidliquid equilibrium of water + ethanol + reformate,” Fluid Phase Equilibria, 230 (2005) 45-50
H. Xu, H. F. Ju, W. Wang, and J. Huang, “Research on the liquidliquid equilibrium in system water- n-hexane-ethanol system,”Chemical Research and Application, 18 (2006), pp. 409-412
L. Tang, and F. Liu, “Some Basic Properties of Hexane/alcohol mixture,” Journal of Wuxi University of Light Industry, 15 (1996) 313-317.
Peschke N., Sandler S. I., “Liquid-liquid Equilibria of Fuel Oxygenate + Water + Hydrocarbon Mixtures”, J. Chem. Eng. Data, 40 (1995) 315-320
Sørensen J. M., Magnussen T., Rasmussen P., Fredenslund A., “Liquid-liquid equilibrium data: their retrieval, correlation and prediction. Part II: correlation”, Fluid Phase Equilibria, 3 (1979) 47-82
Vasquez V.R., Whiting W.B., “Regression of Binary Interaction Parameters for Thermodynamic Models Using an Inside-Variance Estimation method
(IVEM) ”, Fluid Phase Equilibria, 170 (2000) 235-153
Wilson, G. M., “Vapor-Liquid Equilibrium : XI. A New Expression for the Excess Free Energy of Mixing ”, J. Am. Chem., 86 (1964) 127-130 |