2002Energy & FuelsRequires access

Extraction and Characterization of Asphaltenes from Different Crude Oils and Solvents

Jorge Ancheyta, Guillermo Centeno, Fernando Trejo, Gustavo Marroquín, J. A. García, Eduardo Antônio Guimarães Tenório, A. Torres

Open publisher page 180 citations

Abstract

Three crude oils were employed for precipitation of asphaltenes using two solvents, n -pentane and n -heptane. Crude oils were analyzed by API gravity, elemental composition and metals content. Asphaltenes were characterized by VPO molecular weight, liquid State 1 H and 13 C NMR, elemental composition, and metals content. Spectra were divided in three and two different regions for 1 H and 13 C NMR, respectively, to determine the most important structural parameters of asphaltenes. To avoid errors when determining asphaltene content and characterization, a solvent-to-oil (S/O) ratio of 60:1 was used. This optimal ratio was defined after conducting various experiments with different values of S/O in the range of 5:1 to 100:1. It was found that solvent type has a very important influence in composition of asphaltenes, which were also very different for the three crude oils studied. Aromaticity of asphaltenes was higher when n -heptane was employed.

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Three crude oils were employed for precipitation of asphaltenes using two solvents, n -pentane and n -heptane. Crude oils were analyzed by API gravity, elemental composition and metals content. Asphaltenes were characterized by VPO molecular weight, liquid State 1 H and 13 C NMR, elemental composition, and metals content. Spectra were divided in three and two different regions for 1 H and 13 C NMR, respectively, to determine the most important structural parameters of asphaltenes. To avoid errors when determining asphaltene content and characterization, a solvent-to-oil (S/O) ratio of 60:1 was used. This optimal ratio was defined after conducting various experiments with different values of S/O in the range of 5:1 to 100:1. It was found that solvent type has a very important influence in composition of asphaltenes, which were also very different for the three crude oils studied. Aromaticity of asphaltenes was higher when n -heptane was employed.

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Available abstract

Three crude oils were employed for precipitation of asphaltenes using two solvents, n -pentane and n -heptane. Crude oils were analyzed by API gravity, elemental composition and metals content. Asphaltenes were characterized by VPO molecular weight, liquid State 1 H and 13 C NMR, elemental composition, and metals content. Spectra were divided in three and two different regions for 1 H and 13 C NMR, respectively, to determine the most important structural parameters of asphaltenes. To avoid errors when determining asphaltene content and characterization, a solvent-to-oil (S/O) ratio of 60:1 was used. This optimal ratio was defined after conducting various experiments with different values of S/O in the range of 5:1 to 100:1. It was found that solvent type has a very important influence in composition of asphaltenes, which were also very different for the three crude oils studied. Aromaticity of asphaltenes was higher when n -heptane was employed.

Key concepts: Asphaltene, Heptane, Chemistry, Solvent, Elemental analysis, Pentane, Precipitation, Characterization (materials science)

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