Title of article :
Self-Diffusion and Binary Maxwell–Stefan Diffusion Coefficients of Quadrupolar Real Fluids from Molecular Simulation
Author/Authors :
G. A. Fern?ndez، نويسنده , , J. Vrabec and H. Hasse ، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2005
Abstract :
Self- and binary Maxwell–Stefan (MS) diffusion coefficients were determined
by equilibrium molecular dynamics simulations with the Green–Kubo
method. This study covers self-diffusion coefficients at liquid states for eight
pure fluids, i.e., F2, N2, CO2 , CS2, C2H6, C2H4, C2H2, and SF6 as well as
MS diffusion coefficients for three binary mixtures N2+CO2, N2+C2H6, and
CO2+C2H6. The fluids were modeled by the two-ceInter Lennard–Jones plus
point-quadrupole pair potential, with parameters taken from previous work
of our group which were determined solely on the basis of vapor–liquid equilibrium
data. Self-diffusion coefficients are predicted with a statistical uncertainty
less than 1%, and they agree within 2–28% with the experimental data.
The correction of the simulation data due to the finite size of the system
increases the value of the self-diffusion coefficient typically by 10%. If this
correction is considered, better agreement with the experimental data can be
expected for most of the studied fluids. MS diffusion coefficients for three
binary mixtures were also predicted; their statistical uncertainty is about 10%.
These results were used to test three empirical equations to estimate MS
diffusion coefficients in binary mixtures, i.e., the equations of Caldwell and
Babb, of Darken, and of Vignes. The equations of Caldwell and Babb and
of Vignes show qualitatively different behavior of the MS diffusion coefficient
than that observed in the simulations. In agreement with previous work, the
best results are obtained in all cases with the equation of Darken
Keywords :
Green–Kubo method , binary diffusion , Maxwell–Stefan , moleculardynamics , Self-diffusion , Molecular simulation , Quadrupole , two-ceInterLennard–Jones potential.
Journal title :
International Journal of Thermophysics
Journal title :
International Journal of Thermophysics