Issue
Korean Journal of Chemical Engineering,
Vol.37, No.2, 341-349, 2020
Hydrate seeding effect on the metastability of CH4 hydrate
Cyclopentane (CP) hydrate seeds can lead to nucleation of CH4 hydrate with a lower supersaturation; the concept of nucleation potential was applied to estimate the metastable zone width (MSZW) of CH4 hydrate. To verify the crystal structure of CH4 hydrate formed from the CP hydrate seeds, the hydrate samples were analyzed by high resolution powder diffraction (HRPD). 1wt% of CP hydrates in the system reduced the MSZW of CH4 hydrate from 3.39 K to 1.32 K, and showed synergetic performance with sodium dodecyl sulfate (SDS). From the hydrate nucleation theory, SDS is able to decrease the effective surface energy for heterogeneous nucleation on the stainless steel wall, but the CP hydrate seeds provide new nucleation sites with even lower surface energy than that of the stainless steel wall. Hence, the nucleation rate depends on the amount of CP hydrate seeds, and the kinetic parameter can be estimated from the concentration of nucleation sites on the CP hydrate seeds. Also, the MSZW of CH4 hydrate was satisfactorily correlated with the amount of CP hydrate seeds by the cumulative nucleation potentials using estimated kinetic parameters.
[References]
  1. Ahn YH, Moon S, Koh DY, Hong S, Lee H, Lee JW, Park Y, Energy Storage Mater., 24, 655, 2020
  2. Walsh MR, Koh CA, Sloan ED, Sum AK, Wu DT, Science, 326, 1095, 2009
  3. Potdar S, Lee JW, Lee S, Korean J. Chem. Eng., 33(11), 3216, 2016
  4. Cha MJ, Shin KC, Lee H, Korean J. Chem. Eng., 34(9), 2514, 2017
  5. Min J, Ahn YH, Baek S, Shin K, Cha M, Lee JW, J. Phys. Chem. C, 123, 20705, 2019
  6. Baek S, Min J, Lee JW, Rsc Adv., 5, 58813, 2015
  7. Cha MJ, Lee H, Lee JW, J. Phys. Chem. C, 117, 23515, 2013
  8. Zhang JS, Lo C, Somasundaran P, Lee JW, J. Colloid Interface Sci., 341(2), 286, 2010
  9. Lee W, Baek S, Kim JD, Lee JW, Energy Fuels, 29(7), 4245, 2015
  10. Baek S, Min J, Ahn YH, Cha M, Lee JW, Energy Fuels, 33(1), 523, 2019
  11. Ahuja A, Iqbal A, Iqbal M, Lee JW, Morris JF, Energy Fuels, 32(5), 5877, 2018
  12. Zhang JS, Lee S, Lee JW, Ind. Eng. Chem. Res., 46(19), 6353, 2007
  13. Mohebbi V, Behbahani RM, Naderifar A, Korean J. Chem. Eng., 34(3), 706, 2017
  14. Kashchiev D, Firoozabadi A, J. Cryst. Growth, 243(3-4), 476, 2002
  15. Kashchiev D, Firoozabadi A, J. Cryst. Growth, 250(3-4), 499, 2003
  16. Kashchiev D, Firoozabadi A, J. Cryst. Growth, 241(1-2), 220, 2002
  17. Yang HY, Florence AJ, Crystengcomm, 19, 3966, 2017
  18. Yang HY, Crystengcomm, 17, 577, 2015
  19. Shiau LD, J. Cryst. Growth, 450, 50, 2016
  20. Sowa B, Maeda N, Energy Fuels, 29(9), 5692, 2015
  21. May EF, Lim VW, Metaxas PJ, Du JW, Stanwix PL, Rowland D, Johns ML, Haandrikman G, Crosby D, Aman ZM, Langmuir, 34(10), 3186, 2018
  22. Zhang JS, Lee JW, Energy Fuels, 23, 3045, 2009
  23. Baek S, Ahn YH, Zhang JS, Min J, Lee H, Lee JW, Appl. Energy, 202, 32, 2017
  24. Rodriguezcarvajal J, Physica B, 192, 55, 1993
  25. Zhang JS, Lo C, Couzis A, Somasundaran P, Wu J, Lee JW, J. Phys. Chem. C, 113, 17418, 2009
  26. Song JH, Couzis A, Lee JW, Langmuir, 26(12), 9187, 2010
  27. Sloan ED, Koh CA, Clathrate hydrates of natural gases, CRC Press (Taylor & Francis Group) (2008).
  28. Tohidi B, Danesh A, Todd AC, Burgass RW, Ostergaard KK, Fluid Phase Equilib., 138(1-2), 241, 1997
  29. Kim DY, Park J, Lee JW, Ripmeester JA, Lee H, J. Am. Ceram. Soc., 128, 15360, 2006
  30. Aman ZM, Olcott K, Pfeiffer K, Sloan ED, Sum AK, Koh CA, Langmuir, 29(8), 2676, 2013
  31. Lee H, Lee JW, Kim DY, Park J, Seo YT, Zeng H, Moudrakovski IL, Ratcliffe CI, Ripmeester JA, Nature, 434, 743, 2005
  32. Kashchiev D, Nucleation: Basic Theory with Applications, Butterworth-Heinmann (2000).
  33. Smith JM, van Ness HC, Abbott MM, Introduction to Chemical Engineering Thermodynamics, McGraw-Hill (2005).
  34. Skrotzki J, Connolly P, Schnaiter M, Saathoff H, Mohler O, Wagner R, Niemand M, Ebert V, Leisner T, Atmos. Chem. and Phys., 13, 4451 (2013).
  35. Witherspoon PA, Saraf DN, J. Phys. Chem., 69, 3752, 1965
  36. Lekvam K, Bishnoi PR, Fluid Phase Equilib., 131(1-2), 297, 1997
  37. Mohebbi V, Naderifar A, Behbahani RM, Moshfeghian M, Petrol. Sci. Technol., 32, 1418, 2014
  38. Hounslow MJ, Wynn EJW, Kubo M, Pitt K, Chem. Eng. Sci., 101, 731, 2013
  39. Vollhardt D, Adv. Colloid Interface Sci., 47, 1, 1993
  40. Vollhardt D, Ziller M, Retter U, Langmuir, 9, 3208, 1993