Issue
Korean Journal of Chemical Engineering,
Vol.27, No.1, 299-309, 2010
Sorption of C. I. Disperse Red 60 in polystyrene and PMMA films and polyester and Nylon 6 textiles in the presence of supercritical carbon dioxide
C. I. Disperse Red 60 (DR60) was absorbed into polymer films and textile fibers in the presence of supercritical carbon dioxide at pressures between 5 and 33MPa and at temperatures between 308.2 and 423.2 K. Polystyrene (PS) and poly(methyl methacrylate) (PMMA) films and polyester (polyethylene terephthalate: PET) and Nylon 6 textiles were used as absorbents. The amount of equilibrium sorption of dye increased both with pressure and temperature. The sorption behavior was successfully analyzed with the quasi dual-mode sorption model.
[References]
  1. McHugh MA, Krukonis VJ, Supercritical fluid extraction: Principles and practice, 2nd ed., Butterworth-Heinemann, Boston, 1994
  2. Kendall JL, Canelas DA, Young JL, DeSimone JM, Chem. Rev., 99(2), 543, 1999
  3. Park JY, Shim JJ, J. Supercrit. Fluids, 27(3), 297, 2003
  4. Shim JJ, Johnston KP, AIChE J., 35, 1097, 1989
  5. Berens AR, Huvard GS, Korsmeyer RW, Paper No. 48b, AIChE Meeting, Washington, D.C., 1988
  6. Saus W, Knittel D, Schollmeyer E, Textile Res. J., 63, 135, 1993
  7. Knittel D, Saus W, Schollmeyer E, J. Text. Inst., 84, 534, 1993
  8. Gebert B, Saus W, Knittel D, Buschmann HJ, Schollmeyer E, Textile Res. J., 64, 371, 1994
  9. Chang KH, Bae HK, Shim JJ, Korean J. Chem. Eng., 13(3), 310, 1996
  10. Bach E, Cleve E, Schollmeyer E, J. Text. Inst., 89, 657, 1998
  11. Bach E, Cleve E, Schollmeyer E, J. Text. Inst., 89, 647, 1998
  12. Shannon B, Hendrix W, Smith B, Montero G, J. Supercrit. Fluids, 19(1), 87, 2000
  13. Montero GA, Smith CB, Hendrix WA, Butcher DL, Ind. Eng. Chem. Res., 39(12), 4806, 2000
  14. Muthukumaran P, Gupta RB, Sung HD, Shim JJ, Bae HK, Korean J. Chem. Eng., 16(1), 111, 1999
  15. Ozcan AS, Clifford AA, Bartle KD, Lewis DM, J. Chem. Eng. Data, 42(3), 590, 1997
  16. Shim JJ, Sung HD, Proceedings of the 4th International Symposium on Supercritical Fluids, Sendai, Japan, 467, 1997
  17. Swidersky P, Tuma D, Schneider GM, J. Supercrit. Fluids, 9(1), 12, 1996
  18. Tuma D, Schneider GM, J. Supercrit. Fluids, 13(1), 37, 1998
  19. Tuma D, Schneider GM, Fluid Phase Equilibr., 158-160, 743, 1998
  20. Tuma D, Wagner B, Schneider GM, Fluid Phase Equilib., 182(1-2), 133, 2001
  21. Bach E, Cleve E, Schuttken J, Schollmeyer E, Rucker JW, Color. Technol., 117, 13, 2001
  22. Wagner B, Kautz CB, Schneider GM, Fluid Phase Equilib., 158-160, 707, 1999
  23. Baek JK, Thesis MS, Yeungnam University, Korea, 2001
  24. Baek JK, Kim S, Lee GS, Shim JJ, Korean J. Chem. Eng., 21(1), 230, 2004
  25. Huang Z, Guo YH, Sun GB, Chiew YC, Kawi S, Fluid Phase Equilib., 236(1-2), 136, 2005
  26. Gordillo MD, Pereyra C, Martinez de la Ossa EJ, Dyes Pigments, 67, 167, 2005
  27. HAARHAUS U, SWIDERSKY P, SCHNEIDER GM, J. Supercrit. Fluids, 8(2), 100, 1995
  28. West BL, Kazarian SG, Vincent MF, Brantley NH, Eckert CA, J. Appl. Polym. Sci., 69(5), 911, 1998
  29. Fleming DS, Stepanek F, Kazarian SG, Macromol. Chem. Phys., 206, 1077, 2005
  30. Santos WLF, Moura AP, Povh NP, Muniz EC, Rubira AF, Macromol. Symp., 229, 150, 2005
  31. Seckner AJ, McClellan AK, McHugh MA, AIChE J., 34, 9, 1988
  32. Shim JJ, Johnston KP, AIChE J., 37, 607, 1991
  33. Shim JJ, Johnston KP, J. Phys. Chem., 95, 353, 1991
  34. Chang SH, Park SC, Shim JJ, J. Supercrit. Fluids, 13(1), 113, 1998
  35. Fleming GK, Koros WJ, Macromolecules, 19, 2285, 1986
  36. Kazarian SG, Brantley NH, West BL, Vincent MF, Eckert CA, Applied Spectrosc., 51, 491, 1997
  37. Wissinger RG, Paulaitis ME, J. Polym. Sci. Part B: Polym. Phys., 25, 2497, 1987
  38. Brandrup J, Immergut EH, Grulke EA, Polymer handbook, 4th ed., John Wiley & Sons, New York, 1999
  39. Sfiligoj MS, Zipper P, Colloid Polym. Sci., 276, 144, 1998
  40. Sung HD, Shim JJ, J. Chem. Eng. Data, 44, 985, 1999