On the calculation of supercritical fluid-solid equilibria by molecular simulation

被引:21
作者
Albo, S
Müller, EA
机构
[1] Univ Simon Bolivar, Dept Termodinam & Fenomenos Transferencia, Caracas 1080, Venezuela
[2] Univ Pablo Olavide, Dept Ciencias Ambientales, Seville 41013, Spain
关键词
D O I
10.1021/jp026894m
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Methods and intermolecular potentials apt for the molecular simulation of solubilities of solids, in supercritical fluids are briefly reviewed. As an illustrative example, the solubilities of naphthalene in supercritical carbon dioxide at 328.15 K are studied using an isotropic multipolar potential model. Upon using the Widom insertion method, a quantitative prediction of the experimental data is obtained. A further look at the calculations shows that the customary implementation of the method is tainted by the use of experimental information about the vapor pressure and density of the solid. If the actual properties (obtained via simulation) of the model solid are used, the equilibrium is, in this example, poorly described, Full-scale molecular dynamic simulations, which include both the solid and fluid phases, confirm the results. It is shown how an accurate description and modeling of the solute solid-phase properties is a prerequisite for the determination of the solubilities of solids in supercritical fluids.
引用
收藏
页码:1672 / 1678
页数:7
相关论文
共 53 条
[1]   Models for predicting solubilities of 2,4,6-trinitrotoluene (TNT) and 1,3,5-trinitro-1,3,5-s-triazine (RDX) in supercritical CO2:: isothermal-isobaric Monte Carlo simulations [J].
Agrawal, PA ;
Rice, BM ;
Sorescu, DC ;
Thompson, DL .
FLUID PHASE EQUILIBRIA, 2001, 187 :139-153
[2]   NPT-MC simulations of enhanced solubility of RDX in polar-modified supercritical CO2 [J].
Agrawal, PM ;
Rice, BM ;
Sorescu, DC ;
Thompson, DL .
FLUID PHASE EQUILIBRIA, 1999, 166 (01) :1-19
[3]   A model for predicting the solubility of 1,3,5-trinitro-1,3,5-s-triazine (RDX) in supercritical CO2:: isothermal-isobaric Monte Carlo simulations [J].
Agrawal, PM ;
Sorescu, DC ;
Rice, BM ;
Thompson, DL .
FLUID PHASE EQUILIBRIA, 1999, 155 (02) :177-191
[4]  
Allen M. P., 1987, Computer Simulation of Liquids
[5]   Representation of solid-supercritical fluid phase equilibria using cubic equations of state [J].
Ashour, I ;
Almehaideb, R ;
Fateen, SE ;
Aly, G .
FLUID PHASE EQUILIBRIA, 2000, 167 (01) :41-61
[6]  
Bender E., 1970, P 5 S THERM PROP ASM, P227
[7]   MOLECULAR QUADRUPOLE MOMENTS [J].
BUCKINGHAM, AD .
QUARTERLY REVIEWS, 1959, 13 (03) :183-214
[8]  
DAUBERT TE, 1992, PHYSICAL THERMODYNAM
[9]   MONTE-CARLO CALCULATION OF SOLUBILITIES OF HIGH-BOILING COMPONENT IN SUPERCRITICAL CARBON-DIOXIDE [J].
EYA, H ;
IWAI, Y ;
FUKUDA, T ;
ARAI, Y .
FLUID PHASE EQUILIBRIA, 1992, 77 :39-51
[10]   Location of phase equilibria by temperature-quench molecular dynamics simulations [J].
Gelb, LD ;
Müller, EA .
FLUID PHASE EQUILIBRIA, 2002, 203 (1-2) :1-14