PROPIEDADES FÍSICAS Y QUÍMICAS DE ASFALTOS COLOMBIANOS TIPO BARRANCABERMEJA Y DE SUS RESPECTIVAS FRACCIONES DE ASFALTENOS
PDF

Cómo citar

Romero, C. M., & Gómez, A. (2024). PROPIEDADES FÍSICAS Y QUÍMICAS DE ASFALTOS COLOMBIANOS TIPO BARRANCABERMEJA Y DE SUS RESPECTIVAS FRACCIONES DE ASFALTENOS. Revista De La Academia Colombiana De Ciencias Exactas, Físicas Y Naturales, 26(98), 127–132. https://doi.org/10.18257/raccefyn.26(98).2002.2758

Descargas

Los datos de descargas todavía no están disponibles.

Métricas Alternativas


Dimensions

Resumen

En este trabajo se presenta la caracterización física y química de asfaltos CIB-7090 frescos, provenientes de la refinería Barrancabermeja y de asfaltos del mismo origen recuperados a partir de pavimento de cinco años de uso. Se analizan los asfaltenos extraídos de estos dos tipos de asfaltos. La comparación entre los resultados de los dos tipos de muestras contribuye a aclarar el proceso de envejecimiento de asfaltos.

https://doi.org/10.18257/raccefyn.26(98).2002.2758

Palabras clave

Asfaltos | asfaltenos | SARA
PDF

Citas

Acevedo, S.; Escobar, G.; Ranaudo, M. A. and Rizzo A. 1998. Molecular weight properties of asphaltenes calculated from GPC data for octylated asphaltenes. Fuel, 77, (8), 853-858.

Artok, L.; Su, Y.; Hirose, Y.; Hosokawa, M.; Murata S. and Nomura, M. 1999. Structure and Reactivity of Petroleum Derived Asphaltene. Energy & Fuel, 13, 287-296.

ASTM. 1983. Standard Test Method for Penetration of Bituminous Materials ASTM D-5-83.

ASTM. 1986. Standard Test Method for Ductility of Bituminous Materials ASTM D-113-186.

ASTM. 1992. Standard Test Method for Kinematic Viscosity of Asphalt (Bitumens) ASTM D-2170-92.

ASTM. 1985. Standard Test for Softening Point of Bitumen (Ring-and-Ball Apparatus) ASTM-36-85.

ASTM. 1991. Standard Test Methods for Separation of Asphalt into Four Fractions ASTM D-4124-91.

ASTM. 1983. Standard Test Method for Heptane Insolubles ASTM D 3279-83.

I.P. 1975. Recovery of Bituminous Binders By Dichloromethane extraction IP-105/75.

León, O.; Contreras E.; Roger E.; Dambakli G.; Espidel J.; Acevedo S. 2001. The Influence of the Adsorption of Amphiphiles and Resins in Controlling Asphaltene Flocculation, Energy & Fuels, 15 (5), 1028-1032.

Loeber, L.; Muller M. J. and Sutton O. 1998. Bitumen in colloid science: A chemical, structural and rheological approach. Fuel, 77, (13), 1443-1450.

Mannistu, K., Yarranton, H.W., and Masliyah, J.H. 1997. Solubility of Asphaltenes in Organic Solvents, Energy & Fuels, 11, 615-622.

Michon, L. C.; Diedier, M.; Planee, J. P. and Hanque B. 1997. Estimation of average structural parameters of bitumens by 13C nuclear magnetic resonance spectroscopy. Fuel, 76, (1), 9-15.

Miknis, F. P.; Adam, T. Pi.; Michon L. C. and Netzel D. A. 1998. NMR imaging studies of asphaltene precipitation in asphalts. Fuel, 77, (5), 399-405.

Mohamed, R. S.; Ramos A. C. and Loh W. 1999. Aggregation Behavior of Two Asphaltenic Fraction in Aromatic Solvent. Energy & Fuels, 13, 323-327.

Murgich, J.; and Abanero J. A. Molecular Recognition in Aggregates Formed by Asphaltenes and Resin Molecules from the Athabasca Oil Sand. Energy & Fuels, 1999, 13, 278.

Puzinauskas, V. P.; Corbett L. W. 1978. Differences between petroleum asphalt, coal-tar pitch and road tar, Asphalt Institute, Lexington.

Quddus, M. A. and Sawar S. N. and Khan F. 1995. The Chemical Composition of Catalytic Air Blown Asphalt. Fuel, 74 (5), 684-689.

Redelius, P. C. 2000. Solubility parameters and bitumen, Fuel, 79, (1), 27-35.

Romero, C. M.; Gómez A. 2001. Molecular weight Determination of Asphaltenes, personal communication.

Schabron, J. F.; Pauli A. T.; Rovani Jr. J. F. 2001. Molecular weight polarity map for residual pyrolysis Fuel, 80 (4), 529-537.

Sheu, E.; Y. and Mullins, O. C. 1995. Asphaltenes. Fundamentals and Applications, Plenum Press New York.

Sheu, E. Y.; De Tar M. M. and Storm D. A. 1991. Rheological Properties of vacuum residue fraction in organic solvents. Fuel, 70, 1151-1156.

Siddiqui, M. N., Ali M. F. 1999. Studies on the aging behaviour of the Arabian asphalts Fuel, 78 (9): 1005-1015.

Strausz, O. P. 1999. Molecular Recognition in Aggregates Formed by Asphaltene and Resin Molecules from the Athabasca Oil Sand, Energy & Fuels, 13 (2), 278-286.

Szewczyk, V., Behar, E. 1999. Compositional model for predicting asphaltenes flocculation Fluid Phase Equilibria, 158-160 (1-2), 459-469.

Victorov, A. I., Smirnova, N. A. 1999. Description of asphaltene polydispersity and precipitation by means of thermodynamic model of self-assembly Fluid Phase Equilibria, 158-160 (1-2), 471-480.

Xu, Y.; Yoshikata, K. and Strausz. O. P. 1995. Characterization of Athabasca asphaltenes by small X-ray scattering. Fuel, 74 (7), 960-964.

Creative Commons License

Esta obra está bajo una licencia internacional Creative Commons Atribución-NoComercial-SinDerivadas 4.0.