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         396 CHARACTERIZATION AND PROPERTIES OF PETROLEUM FRACTIONS
         [33] Buckley, J. S., “Microscopic Investigation of the Onset of
                                                                  Asphaltene Phase Equilibria Predictive Model,” SPE Paper
            Asphaltene Precipitation,” Fuel Science and Technology  14:25  [48] Nor-Azian, N. and Adewumi, M. A., “Development of
            International, Vol. 14, No. 1/2, 1996, pp. 55–74.     No. 26905, Paper presented at the Eastern Regional Conference
         [34] Fotland, P., Anfindsen, H., and Fadnes, F. H., “Detection of  and Exhibition, Pittsburgh, PA, November 2–4, 1993.
            Asphaltene Precipitation and Amounts Precipitated by  [49] Wu, J., Prausnitz, J. M., and Firoozabadi, A., “Molecular
            Measurement of Electrical Conductivity,” Fluid Phase  Thermodynamics of Asphaltene Precipitation in Reservoir
            Equilibria, Vol. 82, 1993, pp. 157–164.               Fluids,” American Institute of Chemical Engineers Journal,
         [35] Escobedo, J. and Mansoori, G. A., “Viscometric Determination  Vol. 46, No. 1, 2000, pp. 197–209.
            of the Onset of Asphaltene Flocculation: A Novel Method,”  [50] Burke, N. E., Hobbs, R. E., and Kashou, S. F., “Measurement
            Paper No. 28018, Society of Petroleum Engngineers, Production  and Modeling of Asphaltene Precipitation,” Journal of
            and Facilities, Vol. 10, May 1995, pp. 115–118.       Petroleum Technology, Vol. 42, November 1990,
         [36] Pan, H. and Firoozabadi, A., “Thermodynamic Micellization  pp. 1440–1447.
            Model for Asphaltene Precipitation Inhibition,” American  [51] Qin, X., “Asphaltene Precipitation and Implementation of
            Institute of Chemical Engineers Journal, Vol. 46, No. 2, 2000,  Group Contribution Equation of State Into UTCOMP,” M.Sc.
            pp. 416–426.                                          Thesis, Department of Petroleum Engineering, University of
         [37] Piro, G., Rabaioli, M. R., Canonico, L. B., and Mazzolini, E. I.,  Texas, Austin, TX, August 1998.
            “Evaluation of Asphaltene Removal Chemicals: A New Testing  [52] Hirschberg, A., Delong, L. N. J., Schipper, B. A., and Meijers,
            Method,” Paper No. 27386, Paper presented at the SPE  J. G., “Influence of Temperature and Pressure on Asphaltene
            International Symposium on Formation Damage Control,  Flocculation,” Society of Petroleum Engineers Journal, Vol. 24,
            Lafayette, LA, February 7–10, 1994.                   No. 3, 1984, pp. 283–293.
         [38] Rassamdana, H. B., Dabir, B., Nematy, M., Farhani, M., and  [53] Ghuraiba, M. M. A., “Characterization of Asphaltenes in Crude
            Sahimi, M., “Asphaltene Flocculation and Deposition: I. The  Oil,” M.Sc. Thesis, Chemical Engineering Department, Kuwait
            Onset of Precipitation,” American Institute of Chemical  University, Kuwait, 2000.
            Engineers Journal, Vol. 42, No. 1, 1996, pp. 10–22.  [54] Oil and Gas Journal Data Book, 2000 Edition, PennWell, Tulsa,
         [39] Wu, J., Prausnitz, J. M., and Firoozabadi, A.,      OK, 2000.
            “Molecular-Thermodynamic Framework for Asphaltene-Oil  [55] Munck, J., Skjold-Jorgensen, S., and Rsmussen, P.,
            Equilibria,” American Institute of Chemical Engineers Journal,  “Compositions of the Formation of Gas Hydrates,” Chemical
            Vol. 44, No., 5, 1998, pp. 1188–1199.                 Engineering Science, Vol. 43, No. 10, 1988, pp. 2661–2672.
         [40] Pan, H. and Firoozabadi, A., “Thermodynamic Micellization  [56] Riazi, M. R., Whitson, C. H., and da Silva, F., “Modeling of
            Model for Asphaltene Precipitation from Reservoir Crudes at  Diffusional Mass Transfer in Naturally Fractured Reservoirs,”
            High Pressures and Temperatures,” Society of Petroleum  Journal of Petroleum Science and Engineering, Vol. 10, 1994,
            Engineers (SPE) Production & Facilities, Vol. 15, No. 1,  pp. 239–253.                                  --`,```,`,``````,`,````,```,,-`-`,,`,,`,`,,`---
            February 2000, pp. 58–65.                         [57] Warren, J. E. and Root, P. J., “The Behavior of Naturally
         [41] Won, K. W., Thermodynamics for Solid Solution–Liquid–Vapor  Fractured Reservoirs,” Society of Petroleum Engineers Journal,
            Equilibria: Wax Formation from Heavy Hydrocarbon      Vol. 3, 1963, pp. 245–251.
            Mixtures,” Fluid Phase Equilibria, Vol. 30, 1986, pp. 265–279.  [58] Kesler, M. G. and Lee, B. I., “Improve Prediction of Enthalpy of
         [42] Pedersen, K., Skovborg, P., and Ronningsen, H. P., “Wax  Fractions,” Hydrocarbon Processing, March 1976, pp. 153–158.
            Presipitation from North Sea Crude Oils, 4: Thermodynamic  [59] Mossaad, E. and Eubank, P. T., “New Method for Conversion of
            Modeling,” Energy and Fuels, Vol. 5, No. 6, 1991, pp. 924–932.  Gas Sonic Velocities to Density Second Virial Coefficients,”
         [43] Lira-Galeana, C. A., Firoozabadi, A., and Prausnitz, J. M.,  American Institute of Chemical Engineers’ Journal, Vol. 47,
            “Thermodynamics of Wax Precipitation in Petroleum     No. 1, 2001, pp. 222–229.
            Mixtures,” American Institute of Chemical Engineers Journal,  [60] Iglesias-Silva, G. A., Bonilla-Petriciolet, A., Eubank, P. T.,
            Vol. 42, 1996, pp. 239–248.                           Holste, J. C., and Hall, K. R., “An Algebraic Method that
         [44] Chung, T.-H., “Thermodynamic Modeling for Organic Solid  Includes Gibbs Minimization for Performing Phase
            Precipitation,” Paper no. 24851, Paper presented at the 67th  Equilibrium Calculations for Any Number of Components
            Annual Technical Conference and Exhibition, Washington, DC,  and Phases,” Fluid Phase Equilibria, Vol. 210, No. 2, 2003,
            October 4–7, 1992.                                    pp. 229–245.
         [45] Hansen, J. H., Fredenslund, Aa., Pedersen, K. S., and  [61] Chung, T. H., Ajlan, M., Lee, L. L., and Starling, K. E.,
            Ronningsen, H. P., “A Thermodynamic Model for Predicting  “Generalized Multiparameter Correlation for Nonpolar and
            Wax Formation in Crude Oils,” American Institute of Chemical  Polar Fluid Transport Properties,” Industrial Engineering and
            Engineers Journal, Vol. 34, No. 12, 1988, pp. 1937–1942.  Chemical Research, Vol. 27, 1988, pp. 671–679.
         [46] Mei, H., Zhang, M., Li, L., Sun, L., and Li, S., “Research of  [62] Eubank, P. T., Wu, C. H., Alvarado, F. J., Forero, A., and Beladi,
            Experiment and Modeling on Wax Precipitation for Pubei  M. K., “Measurements and Prediction of Three-Phase Water/
            Oilfield,” Paper (No. 2002–006) presented at the International  Hydrocarbon Equilibria,” Fluid Phase Equilibria, Vol. 102,
            Petroleum Conference 2002, Canadian Petroleum Society,  No. 2, 1994, pp. 181–203.
            Calgary, Alberta, Canada, June 11–13, 2002.       [63] Hu, Y.-F., Li, S., Liu, N., Chu, Y.-P., Park, S. J., Mansoori, G. A.,
         [47] Thomas, F. B., Bennion, D. B., and Bennion, D. W.,  and Guo, T.-M., “Measurement and Corresponding States
            “Experimental and Theoretical Studies of Solids Precipitation  Modeling of Asphaltene Precipitation in Jilin Reservoir Oils,”
            from Reservoir Fluid,” Journal of Canadian Petroleum  Journal of Petroleum Science and Engineering, Vol. 41, 2004,
            Technology, Vol. 31, No. 1, 1992, pp. 22–31.          pp. 169–182.























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