TY - JOUR
T1 - Correlation and prediction of interface tension for fluid mixtures
T2 - An approach based on cubic equations of state with the wong-sandler mixing rule
AU - Mejía, Andrés
AU - Segura, Hugo
AU - Wisniak, Jaime
AU - Polishuk, Ilya
N1 - Publisher Copyright:
© 2005, ASM International.
PY - 2005/8
Y1 - 2005/8
N2 - Concentration profiles, interface thickness, and interface tensions have been calculated for mixtures applying the gradient theory to the Peng-Robinson equation of state. The approach is based on an accurate local fit of vapor-liquid equilibrium (VLE) data, and, for this purpose, the flexibility of the original Wong-Sandler mixing rule has been taken into account. Correlation and prediction capabilities of experimental interfacial tension data are analyzed for the quadratic mixing rule and the present approach. The method, which is discussed in detail in this work, provides an improved scheme for calculating interfacial properties, both for polar and nonpolar mixtures. According to results, a better correlation and prediction of the interfacial tensions can be obtained from an adequate interpolation of the VLE, using simple cubic equations of state. Examples are presented for binary and ternary mixtures.
AB - Concentration profiles, interface thickness, and interface tensions have been calculated for mixtures applying the gradient theory to the Peng-Robinson equation of state. The approach is based on an accurate local fit of vapor-liquid equilibrium (VLE) data, and, for this purpose, the flexibility of the original Wong-Sandler mixing rule has been taken into account. Correlation and prediction capabilities of experimental interfacial tension data are analyzed for the quadratic mixing rule and the present approach. The method, which is discussed in detail in this work, provides an improved scheme for calculating interfacial properties, both for polar and nonpolar mixtures. According to results, a better correlation and prediction of the interfacial tensions can be obtained from an adequate interpolation of the VLE, using simple cubic equations of state. Examples are presented for binary and ternary mixtures.
KW - Gradient Theory
KW - Interfacial Tension
KW - Phase Equilibrium
KW - Ternary Mixture
KW - Vapor Pressure Data
UR - http://www.scopus.com/inward/record.url?scp=85130779246&partnerID=8YFLogxK
U2 - 10.1361/15477030523715
DO - 10.1361/15477030523715
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AN - SCOPUS:20444484615
SN - 1547-7037
VL - 26
SP - 215
EP - 224
JO - Journal of Phase Equilibria and Diffusion
JF - Journal of Phase Equilibria and Diffusion
IS - 3
ER -