Title of article
Application of molecular simulation to calculate miscibility of a model asphaltene molecule
Author/Authors
Vicente، نويسنده , , Luis and Soto، نويسنده , , César and Pacheco-Sلnchez، نويسنده , , Horacio and Hernلndez-Trujillo، نويسنده , , Jesْs and Martinez-Magadلn، نويسنده , , José Manuel، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2006
Pages
7
From page
100
To page
106
Abstract
The miscibility properties of a model asphaltene molecule with different solvents are studied by means of molecular simulation techniques. The pairwise interaction parameters ɛ i j and spatial coordination numbers Z i j , computed for the interaction between an average model asphaltene molecule (Groenzin–Mullins) with toluene by means of a Monte Carlo approach, allow to calculate mixing energies and Flory–Huggins parameters χ ( T ) . In particular, using regular solution theory, χ ( T ) allows to calculate Hildebrand solubility parameters. The same type of analysis for asphaltene-n-alkane mixtures was, also, performed and the properties computed are consistent with experimental facts. In addition, independent calculations of the solubility parameter of the asphaltene molecule using molecular dynamics (MD) are consistent with those of the first approach and are close to the range of reported experimental values.
Keywords
MODELING , asphaltene , Phase behavior , Separation
Journal title
Fluid Phase Equilibria
Serial Year
2006
Journal title
Fluid Phase Equilibria
Record number
1985632
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