Correlation of Critical Loci for Water-Hydrocarbon Binary Systems by EOS Based on the Multi-Fluid Nonrandom Lattice Theory

被引:0
|
作者
Hun Yong SHIN
Hwayong KIMb
Ki-Pung YOO
Chul-Soo LEEd
Yoshio IWAI
Yasuhiko ARAI
机构
[1] Department of Chemical Engineering
[2] 812-8581
[3] 139-743
[4] School of Chemical Engineering
[5] Seoul National University of Technology
[6] Korea University
[7] Kyushu University Seoul
[8] 121-742
[9] 136-701
[10] Korea
[11] Sogang University
[12] Fukuoka
[13] Kyushu University
[14] Japan
[15] 151-742
关键词
critical locus; water; hydrocarbon; lattice theory; multi-fluid theory*;
D O I
暂无
中图分类号
O642 [化学热力学、热化学、热力学平衡];
学科分类号
070304 ; 081704 ;
摘要
Quantitative representation of complicated behavior of fluid mixtures in the critical region by any of equation-of-state theories re-mains as a difficult thermodynamic topics to date. In the present work, a computational efforts were made for representing various types of critical loci of binary water with hydrocarbon systems showing Type II and Type III phase behavior by an elementary equation of state [called multi-fluid nonrandom lattice fluid EOS (MF-NLF EOS)] based on the lattice statistical mechanical theory. The model EOS requires two mo-lecular parameters which representing molecular size and interaction energy for a pure component and single adjustable interaction energy pa-rameter for binary mixtures. Critical temperature and pressure data were used to obtain molecular size parameter and vapor pressure data were used to obtain interaction energy parameter. The MF-NLF EOS model adapted in the present study correlated quantitatively well the critical loci of various binary water with hydrocarbon systems.
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页码:32 / 36
页数:5
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