Small-angle scattering study of colloidal particles in heavy crude oils

Petroleum Chemistry - Tập 51 - Trang 281-285 - 2011
F. V. Tuzikov1,2, Yu. V. Larichev1,2, L. S. Borisova2,3, I. V. Kozhevnikov1,2, O. N. Mart’yanov1,2
1Boreskov Institute of Catalysis, Siberian Branch, Russian Academy of Sciences, Novosibirsk, Russia
2Novosibirsk State University, Novosibirsk, Russia
3Trofimuk Institute of Petroleum Geology and Geophysics, Siberian Branch, Russian Academy of Sciences, Novosibirsk, Russia

Tóm tắt

The structural and dispersion characteristics of samples of heavy crude oils and fractions isolated from them have been studied. A method of in situ analysis of the aggregation of asphaltenes directly in crude oils on the basis of small-angle X-ray scattering is proposed. It has been shown that the maximum size of scattering particles in all crude oil samples is limited to the value on the order of 8.0 nm; the average diameter is ∼2.0 nm. It has been found that the fraction with sizes of 0.8–2.5 nm is mostly composed of resins. Asphaltenes in crude oils form larger aggregated particles with a size up to 8 nm. A comparative study of model dilute solutions of asphaltenes in toluene (0.23 wt %) has shown that the major part of asphaltenes in the liquid (∼94%) is in the form of individual molecules with a size of 0.4–1.2 nm, and only an insignificant remaining part (∼6%) occurs in the form of large aggregates.

Tài liệu tham khảo

J. Ancheyta, M. S. Rana, and E. Furimsky, Catal. Today 109, 3 (2005). Structure and Dynamics of Asphaltenes, ed. by O. C. Mullins and E. Y. Sheu (Plenum, New York, 1998). Asphaltenes, Heavy Oils and Petroleomics, ed. by O. C. Mullins (Springer, New York, 2007). D. I. Svergun and L. A. Feigin, X-ray and Neutron Small-Angle Scattering (Mir, Moscow, 1986) [in Russian]. R. Tanaka, E. Sato, J. E. Hunt, et al., Energy Fuels 18, 1118 (2004). D. Fenistein and L. Barre, Fuel 80, 283 (2001). Y. N. Xu, Y. Koga, and O. P. Strausz, Fuel 74, 960 (1995). A. P. Petrakov, Zh. Tekh. Fiz. 70(3), 31 (2000). D. Espinat, J. C. Ravey, V. Guille, et al. J. Phys. IV 3, 181 (1993). J. C. Ravey, G. Ducouret, and D. Espinat, Fuel 67, 1560 (1988). P. Herzog, D. Tchoubar, and D. Espinat, Fuel 67, 245 (1988). P. M. Spiecker, K. L. Gawrys, C. B. Trail, and P. K. Kilpatrick, Colloids Surf., A 220 9 (2003). Advanced Analysis Techniques in Organic Geochemistry, ed. by A. E. Kontorovich (SNIIGGiMS, Novosibirsk, 1973) [in Russian]. F. I. Samedova, A. M. Kasumova, S. Yu. Rashidova, and V. M. Alieva, Neftekhimiya 47, 432 (2007) [Pet. Chem. 47, 399 (2007). F. V. Tuzikov, Doctoral Dissertation (Novosibirsk, 2005). F. V. Tuzikov, N. A. Tuzikova, R. V. Galimov, et al., Poverkhnost’ Rentgen. Sinkhrotron. Neitron. Issled., No. 10, 84 (2004). L. E. Panin, V. G. Kunitsyn, and F. V. Tuzikov, J. Phys. Chem. B 110, 13560 (2006). S. I. Andersen and S. D. Christensen, Energy Fuels 14, 38 (2000). H. Groenzin and O. C. Mullins, Energy Fuels 14, 677 (2000). N. V. Lisitza, D. E. Freed, P. N. Sen, and Y.-Q. Song, Energy Fuels 23, 1189 (2009).