Thermodynamic properties of methanol in the critical and supercritical regions

被引:33
作者
Abdulagatov, IM
Polikhronidi, NG
Abdurashidova, A
Kiselev, SB [1 ]
Ely, JF
机构
[1] Colorado Sch Mines, Dept Chem Engn, Golden, CO 80401 USA
[2] Russian Acad Sci, Inst Geothermal Problems Dagestan Sci Ctr, Makhachkala 367003, Dagestan, Russia
[3] Russian Acad Sci, Dagestan Sci Ctr, Inst Phys, Makhachkala 367003, Dagestan, Russia
关键词
coexistence curve; critical region; crossover equation of state; methanol; isochoric heat capacity; thermodynamic properties;
D O I
10.1007/s10765-005-8091-8
中图分类号
O414.1 [热力学];
学科分类号
摘要
The isochoric heat capacity of pure methanol in the temperature range from 482 to 533 K, at near-critical densities between 274.87 and 331.59 kg(.)m(-3), has been measured by using a high-temperature and high-pressure nearly constant volume adiabatic calorimeter. The measurements were performed in the single- and two-phase regions including along the coexistence curve. Uncertainties of the isochoric heat capacity measurements are estimated to be within 2%. The single- and two-phase isochoric heat capacities, temperatures, and densities at saturation were extracted from experimental data for each measured isochore. The critical temperature (T-c = 512.78 +/- 0.02K) and the critical density (rho(c) = 277.49 +/- 2 kg(.)m(-3)) for pure methanol were derived from the isochoric heat-capacity measurements by using the well-established method of quasi-static thermograms. The results of the CVVT measurements together with recent new experimental PVT data for pure methanol were used to develop a thermodynamically self-consistent Helmholtz free-energy parametric crossover model, CREOS97-04. The accuracy of the crossover model was confirmed by a comprehensive comparison with available experimental data for pure methanol and values calculated with various multiparameter equations of state and correlations. In the critical and supercritical regions at 0.98T(c) <= T <= 1.5T(c) and in the density range 0.35 rho(c) <= rho <= 1.65 rho(c), CREOS97-04 represents all available experimental thermodynamic data for pure methanol to within their experimental uncertainties.
引用
收藏
页码:1327 / 1368
页数:42
相关论文
共 138 条
[21]   THERMODYNAMIC PERTURBATION-THEORY - STICKY CHAINS AND SQUARE-WELL CHAINS [J].
BANASZAK, M ;
CHIEW, YC ;
RADOSZ, M .
PHYSICAL REVIEW E, 1993, 48 (05) :3760-3765
[22]  
Bashirov M.M., 2003, ISOBARIC HEAT CAPACI
[23]  
BAZAEV AR, UNPUB INT J THERMOPH
[24]  
BELOUSOV VP, 1983, THERMODYNAMICS NONEL
[25]   Crossover Leung-Griffiths model and the phase behavior of dilute aqueous ionic solutions [J].
Belyakov, MY ;
Kiselev, SB ;
Rainwater, JC .
JOURNAL OF CHEMICAL PHYSICS, 1997, 107 (08) :3085-3097
[26]   CROSSOVER-BEHAVIOR OF THE SUSCEPTIBILITY AND THE SPECIFIC-HEAT NEAR A 2ND-ORDER PHASE-TRANSITION [J].
BELYAKOV, MY ;
KISELEV, SB .
PHYSICA A-STATISTICAL MECHANICS AND ITS APPLICATIONS, 1992, 190 (1-2) :75-94
[27]   THERMODYNAMIC PROPERTIES OF METHANOL FROM 288-K TO 503-K AND AT 8.3-MPA [J].
BOYETTE, S ;
CRISS, CM .
JOURNAL OF CHEMICAL AND ENGINEERING DATA, 1988, 33 (04) :426-429
[28]   FLUID MIXTURES AT HIGH-PRESSURES .4. ISOTHERMAL PHASE-EQUILIBRIA IN BINARY-MIXTURES CONSISTING OF (METHANOL + HYDROGEN OR NITROGEN OR METHANE OR CARBON-MONOXIDE OR CARBON-DIOXIDE) [J].
BRUNNER, E ;
HULTENSCHMIDT, W ;
SCHLICHTHARLE, G .
JOURNAL OF CHEMICAL THERMODYNAMICS, 1987, 19 (03) :273-291
[29]   THERMO-PHYSICAL PROPERTY MEASUREMENT ON CHEMICALLY REACTING SYSTEMS - A CASE-STUDY [J].
BRUNO, TJ ;
STRATY, GC .
JOURNAL OF RESEARCH OF THE NATIONAL BUREAU OF STANDARDS, 1986, 91 (03) :135-138
[30]  
Centnerszwer M, 1904, Z PHYS CHEM-STOCH VE, V49, P199