화학공학소재연구정보센터
Macromolecular Research, Vol.17, No.11, 829-841, November, 2009
Group Contribution Method for Group Contribution Method for Estimation of Vapor Liquid Equilibria in Polymer Solutions
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This study introduces a specified group-contribution method for predicting the phase equilibria in polymer solutions. The method is based on a modified double lattice model developed previously. The proposed model includes a combinatorial energy contribution that is responsible for the revised Flory-Huggins entropy of mixing, the van der Waals energy contribution from dispersion, a polar force and specific energy contribution. Using the group-interaction parameters obtained from data reduction, the solvent activities for a large variety of mixtures of polymers and solvents over a wide range of temperatures can be predicted with good accuracy. This method is simple but provides improved predictions compared to those of the other group contribution methods.
  1. Fredenslund A, Jones RL, Prausnitz JM, AlChE J., 21, 1086 (1977)
  2. Oishi T, Prausnitz JM, Ind. Eng. Chem. Proc. DD, 17, 333 (1978)
  3. Voutsas EC, Tassios DP, Ind. Eng. Chem. Res., 35(4), 1438 (1996)
  4. Mollmann C, Gmehling J, J. Chem. Eng. Data, 42(1), 35 (1997)
  5. Zhang SJ, Hiaki T, Hongo M, Kojima K, Fluid Phase Equilib., 144(1-2), 97 (1998)
  6. Magnussen T, Rasmussen P, Fredenslund A, Ind. Eng. Chem. Proc. DD, 20, 331 (1981)
  7. Gupta PA, Danner RP, Ind. Eng. Chem. Res., 26, 2036 (1987)
  8. Hopper HH, Michel S, Prausnitz JM, Ind. Eng. Chem. Res., 27, 2182 (1988)
  9. Holderbaum T, Gmehling J, Fluid Phase Equilibr., 70, 251 (1991)
  10. Fischer K, Gmehling J, Fluid Phase Equilib., 121(1-2), 185 (1996)
  11. Gmehling J, Fluid Phase Equilib., 144(1-2), 37 (1998)
  12. Li JD, Polka HM, Gmehling J, Fluid Phase Equilib., 94, 89 (1994)
  13. Holten-Anderson J, Rasmussen P, Fredenslund A, Chem. Eng. Res. Des., 26, 1382 (1987)
  14. Chen F, Fredenslund A, Rasmussen P, Ind. Eng. Chem. Res., 29, 875 (1990)
  15. Elbro HS, Fredenslund A, Rasmussen P, Macromolecules, 23, 4707 (1990)
  16. Hu Y, Zhou H, Liu HL, Wu DT, Prausnitz JM, Fluid Phase Equilib., 134(1-2), 43 (1997)
  17. Freed KF, J. Phys. A: Math. Gen., 18, 871 (1985)
  18. Bawendi MG, Freed KF, Mohanty U, J. Chem. Phys., 87, 5534 (1987)
  19. Bawendi MG, Freed KF, J. Chem. Phys., 88, 2741 (1988)
  20. Hu Y, Lambert SM, Soane DS, Prausnitz JM, Macromolecules, 24, 4356 (1991)
  21. Oh JS, Bae YC, Polymer, 39(5), 1149 (1998)
  22. Madden WG, Pesci AI, Freed KF, Macromolecules, 23, 1181 (1990)
  23. van Krevelen DW, Properties of Polymers, 3rd ed., Elsevier, Amsterdam, 1990, pp 74-75.
  24. Panagiotopolous AZ, Quirke N, Stapleton M, Tildesley DJ, Mol. Phys., 63, 527 (1998)
  25. Barton AFM, CRC Handbook of Solubility Parameter and Other Cohesion Parameters, 2nd ed., CRC Press, 1991, p 4356.
  26. Wen H, Elbro HS, Alessi P, Polymer Solution Data Collection, Part I: Vapor-Liquid Equilibrium, DECHEMA, Frankfurt (1992)
  27. Abrams DS, Prausnitz JM, AlChE J., 21, 116 (1975)
  28. Chein F, Fredenslund A, Rasmussen P, Ind. Eng. Chem. Res., 29, 875 (1990)