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Vapor–liquid equilibria of mixtures containing alkanes, carbon dioxide, and nitrogen

AIChE Journal · 2001 · Vol. 47(7) · pp. 1676–1682
Jeffrey J. PotoffJ. Ilja Siepmann

Abstract

Abstract New force fields for carbon dioxide and nitrogen are introduced that quantitatively reproduce the vapor–liquid equilibria (VLE) of the neat systems and their mixtures with alkanes. In addition to the usual VLE calculations for pure CO 2 and N 2 , calculations of the binary mixtures with propane were used in the force‐field development to achieve a good balance between dispersive and electrostatic (quadrupole–quadrupole) interactions. The transferability of the force fields was then assessed from calculations of the VLE for the binary mixtures with n‐hexane, the binary mixture of CO 2 /N 2 , and the ternary mixture of CO 2 /N 2 /propane. The VLE calculations were carried out using configurational‐bias Monte Carlo simulations in either the grand canonical ensemble with histogram–reweighting or in the Gibbs ensemble.

Phase Equilibria and ThermodynamicsCarbon Dioxide Capture TechnologiesCatalysis and Oxidation ReactionsChemistryTernary operationPropaneThermodynamicsBinary numberCanonical ensembleQuadrupoleMonte Carlo methodForce field (fiction)Hexane

Funding

  • National Science Foundation
Citations
2,004
FWCI
7.60
field-weighted impact
References
37
Percentile
98%
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References
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Physics Today · 1959 · 14,167 citations
Comparison of simple potential functions for simulating liquid water
The Journal of Chemical Physics · 1983 · 41,376 citations
Phase equilibria by simulation in the Gibbs ensemble
Molecular Physics · 1988 · 1,160 citations
Computer Simulation of Liquids
Journal of Molecular Liquids · 1988 · 15,842 citations
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