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Stabilność fazowa ropy naftowej i jej produktów

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Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
EN
Phase stability of crude oil and petroleum products
Języki publikacji
PL
Abstrakty
PL
W pracy dokonano przeglądu literatury na temat budowy dyspersji asfaltenów w ropie naftowej, pozostałościach i ciężkich produktach naftowych. Przedstawiono metody badań stabilności fazowej układów, przemian termicznych asfaltenów i możliwości ich dyspergowania.
EN
Literature review of asphaltene dispersion structure in crude oil, distillation residua and petroleum products in this article were done. Methods of asphaltene stability assessment, thermal conversion and dispersion possibility were presented.
Słowa kluczowe
Czasopismo
Rocznik
Strony
474--482
Opis fizyczny
Bibliogr. 61 poz., tab.
Twórcy
autor
  • Politechnika Warszawska, Instytut Chemii, Płock
autor
  • Politechnika Warszawska, Instytut Chemii, Płock
Bibliografia
  • [1] Al-Sahhaf T.A., Fahim M.A., Elkilani A.S.: Retardation of asphaltene precipitation by addition of toluene, resins, deasphalted oil and surfactants. Fluid Phase Equilibria 194-197, 1045-1057, 2002.
  • [2] Andersen S.I., Speight J.G.: Thermodynamic models for asphaltene solubility and precipitation. Journal of Petroleum Science & Engineering 22, 53-66, 1999.
  • [3] Bartholdy J., Lauridsen R., Mejlholm M., Andersen S.I.: Effect of Hydrotreatment on Product Sludge Stability. Energy & Fuels 15, 1059-1062, 2001.
  • [4] Branco V.A.M., Mansoori G.A.: Asphaltene flocculation and collapse from petroleum fluids. Journal of Petroleum Science & Engi­neering 32,217-230, 2001.
  • [5] Browarzik D., Laux LL, Rahimian L: Asphaltene flocculation in crude oil systems. Fluid Phase Equilibria 154, 285-300, 1999.
  • [6] Buch L., Groenzin H. i in.: Molecular size of asphaltene fractions obtained from residuum hydrotreatment. Fuel 82, 1075-1084, 2003.
  • [7] Buckley J.S.: Predicting the Onset of Asphaltene Precipitation from Refractive Index Measurements. Energy & Fuels 13,328-332, 1999.
  • [8] Buron FL, Newman B., Bru R: Stability of heavy fuel and crude oil. Symposium on Crude Oil Upgrading from Reservoir to Refinery Presented Before the Division of Petroleum Chemistry, Inc. 221 st National Meeting, American Chemical Society San Diego, CA, April 1-5, 2001.
  • [9] Carrier FL, Plantier F. i in.: Acoustic method for measuring asphaltene flocculation in crude oils. Journal of Petroleum Science & Engineering 27, 111-117, 2000.
  • [10] Chang C.L., Fogler H.S.: Stabilization of Asphaltenes in Aliphatic Sohents Using Alkylbenzene - Derived Amphiphiles. 1. Effect of the Chemical Structure of Amphiphiles on Asphaltene Stabilization . Langmuir 10, 1749-1757, 1994.
  • [11] Ciarkę P.F., Pruden B.B.: Asphaltene precipitation: detection using heat transfer analysis and inhibition using chemical additives. Fuel 76, 607-614, 1997.
  • [12] Flory P.J.: Principles of Poły mer Chemistry. Cornell University Press, 20 Ed., 1983.
  • [13] Goncalves S., Castillo J. i in.: Absorbance and fluorescence spectroscopy on the aggregation behaviour of asphaltene - toluene solutions. Fuel 83, 1823-1828, 2004
  • [14] Hansen C.M.: The universality of the solubility parameter. Ind. Eng. Chem. Res. Dev. 8, 2-11, 1969.
  • [15] Heithaus J.J.: J. Inst. Pet. 48, 45-53, 1962.
  • [16] Hildebrand J.H., Woods S.E.: The Derivation of Eąuations for Regular Solutions. J. Chem. Phys. 1, 817-822, 1933.
  • [17] Hirschberg A., de Jong L.N.J. i in.: Influence of Temperaturę and Pressure on Asphaltene Flocculation. SPE 11202, 01-12, 1982.
  • [18] Hirschberg A., de Jong L.N.J. i in.: Influence of Temperaturę and Pressure on Asphaltene Flocculation. SPEJ, 283-293, June, 1984.
  • [19] Holder G.D., Enick R.M., Mohamed R.: Solidformation in hydrocarbon systems. Fluid Phase Eąuilibria 117, 126-137, 1996.
  • [20] Huang Q., Shen Y. i in.: Chemical conversion of vacuum residues under microwave irradiation. Symposium on Crude Oil Upgrading from Reservoir to Refinery Presented Before the Division of Petroleum Chemistry, Inc. 221 st National Meeting, American Chemical Society San Diego, CA, April 1-5, 2001.
  • [21] Ibrahim H.H., Idem R.O.: Interrelationships between Asphaltene Precipitation Inhibitor EJfectiveness, Asphaltenes Characteristics and Precipitation Behaviour during n-Heptane (Light Paraffin Hydrocarbon) - Induced Asphaltene Precipitation. Energy & Fuels 18, 1038-1048, 2004.
  • [22] Karlsson R., Isacsson U.: Bitumen Structural Stability Characterization Using Turbidimetric Titration. Energy & Fuels 17, 1407-1415, 2003.
  • [23] Laux FL, Rahimian L, Butz Th.: Theoretical and practical approach to the selection of asphaltene dispersing agents. Fuel Processing Technology 67, 79-89, 2000.
  • [24] Laux FL, Rahimian L, Butz T: Thermodynamics and mechanism of stabilization and precipitation of petroleum colloids. Fuel Processing Technology 53, 69-79, 1997.
  • [25] Leon O., Contreras E., Rogel E.: Amphiphile adsorption on asphaltene particles: adsorption isotherms and asphaltene stabilization. Colloids and Surfaces A: Physicochemical and Engineering Aspects 189, 123-130, 2001.
  • [26] Leontaritis K.J., Mansoori G.A.: Asphaltene Flocculation During Oil Production and Processing: A Thermodynamic Colloidal Model. SPE 16258.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-AGH6-0004-0003
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