Issue
Korean Journal of Chemical Engineering,
Vol.28, No.12, 2319-2323, 2011
Solubility of hinokitiol in supercritical fluids; measurement and correlation
Supercritical fluid technology has been an alternative for purification and separation of biological compounds in cosmetic, food, and pharmaceutical products. Solubility information of biological compounds in supercritical fluids is essential for choosing a supercritical fluid processes. The equilibrium solubility of hinokitiol was measured in supercritical carbon dioxide and ethane with a static method in the pressure range from 8 to 40MPa and at temperatures equal to 313.2, 323.2 and 333.2 K. The experimental data were correlated well by Peng-Robinson equation of state and quasi-chemical nonrandom lattice fluid model.
[References]
  1. Byeon SE, Lee YG, Kim JC, Han JG, Lee HY, Cho JY, Planta Med., 74, 828, 2008
  2. Komaki N, Watanabe T, Ogasawara A, Sato N, Mikami T, Matsumoto T, Biol. Pharm. Bull., 31, 735, 2008
  3. Manter KD, Kelsey RG, Karchesy JJ, J. Chem. Ecol., 33, 2133, 2007
  4. Murakami K, Ohara Y, Haneda M, Tsubouchi R, Yoshino M, Basic Clin. Pharmacol. Toxicol., 97, 392, 2005
  5. Liu S, Yamauchi H, Cancer Lett., 286, 240, 2009
  6. Kim DS, Park SH, Kwon SB, Li K, Youn SW, Park KC, Arch. Pharm. Res., 27, 334, 2004
  7. Baba T, Nakano H, Tamai K, Sawamura D, Hanada K, Hashimoto I, Arima Y, J. Invest. Dermatol., 110, 24, 1998
  8. Teja AS, Eckert CA, Ind. Eng. Chem. Res., 39, 4442, 2000
  9. Rincon J, Martinez F, Rodriguez L, Ancillo V, J. Supercrit. Fluids, 56(1), 72, 2011
  10. McHugh MA, Seckner AJ, Yogan TJ, Ind. Eng. Chem. Fundam., 23, 493, 1984
  11. Kurnik RT, Holla SJ, Reid RC, J. Chem. Eng. Data., 26, 47, 1981
  12. Schafer K, Baumann W, Fres. Z. Anal. Chem., 332, 122, 1988
  13. Weinstein RD, Hanlon WH, Donohue JP, Simeone M, Rozich A, Muske KR, J. Chem. Eng. Data., 52, 256, 2007
  14. Brennecke JF, Eckert CA, AIChE J., 35, 1409, 1989
  15. Skerget M, Novak-Pintaric Z, Knez Z, Kravanja Z, Fluid Phase Equilib., 203(1-2), 111, 2002
  16. Cheng JS, Tang M, Chen YP, Fluid Phase Equilib., 194, 483, 2002
  17. Nicolas C, Neau E, Meradji S, Raspo I, Fluid Phase Equilib., 232(1-2), 219, 2005
  18. Shin MS, Kim H, Fluid Phase Equilib., 246(1-2), 79, 2006
  19. Shin MS, Kim H, Fluid Phase Equilib., 256(1-2), 27, 2007
  20. Shin MS, Kim H, J. Chem. Thermodyn., 40(7), 1110, 2008
  21. Shin MS, Lee JH, Kim H, Fluid Phase Equilib., 272(1-2), 42, 2008
  22. Shin MS, Kim H, Fluid Phase Equilib., 270(1-2), 45, 2008
  23. Shin MS, Kim H, Clean Technol., 14(3), 153, 2008
  24. Park CI, Shin MS, Kim H, J. Chem. Thermodyn., 41(1), 30, 2009
  25. Peng DY, Robinson DB, Ind. Eng. Chem. Fundam., 15, 59, 1976
  26. Bae W, Kwon SY, Byun HS, Kim HY, J. Supercrit. Fluids, 30(2), 127, 2004
  27. Stein SE, Brown RL, J. Chem. Inf. Comput. Sci., 34, 581, 1994
  28. Lyman WJ, Reehl WF, Rosenblatt DH, Handbook of Chemical and Physical Property Estimation Methods: Environmental Behavior of Organic Compounds, American Chemical Society, Washington, D.C., 1990
  29. Fedors RF, Polym. Eng. Sci., 14, 147, 1974
  30. Kang J, Yoo KP, Kim H, Lee J, Yang D, Lee CS, Int. J. Thermophys., 22, 487, 2001