Liquid-liquid coexistence curve under gravity

被引:2
|
作者
Alekhin, OD [1 ]
Krupsky, MP [1 ]
Stapchuk, YL [1 ]
Rudnikov, EG [1 ]
机构
[1] Kyiv Natl Taras Shevchenko Univ, UA-03022 Kiev, Ukraine
关键词
D O I
10.1016/S0167-7322(03)00051-5
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
Simultaneous studies of the height and temperature dependences of the refractive index, n(z, T), and the refractive index gradient, dn/dz(z, T), of an inhomogeneous binary methanolhexane solution under gravity near the critical consolute temperature have been carried out in the work by using complex refractometry technique. It has been found out, that the value of the refractive index, n(T), is the nonmonotonic temperature function in the lower phase of the methanol-hexane solution for the liquid-liquid coexistence curve. This result is explained by a volume expansion of solution with system temperature increasing and by a solution concentration change in both phases. The obtained data were used for calculating the coexistence curve equation for the investigated solution in the terms of different order parameters on the basis of the fluctuation theory of phase transitions and the Van der Waals model of fluctuation gas. (C) 2003 Elsevier Science B.V. All rights reserved
引用
收藏
页码:191 / 196
页数:6
相关论文
共 50 条
  • [31] Liquid-liquid equilibrium for the ternary system ethanol/toluene/n-decane: a correction to the existing coexistence curve and NRTL parameters
    Allie-Ebrahim, Tariq
    Zhu, Qingyu
    Moggridge, Geoff D.
    D'Agostino, Carmine
    PHYSICS AND CHEMISTRY OF LIQUIDS, 2017, 55 (05) : 669 - 673
  • [32] Separation Characteristics of Liquid-Liquid Dispersions: Gravity and Centrifugal Settlers
    Manavalan, Balamurugan
    Tamhane, Tushar V.
    Patra, Jaysree
    Joshi, Aniruddha J.
    Joshi, Jyeshtharaj B.
    Pandey, Niranjan K.
    Kumar, Shekhar
    Mudali, Kamachi U.
    Rajarnani, Natarajan
    Vitankar, Vivek S.
    Patil, Raosaheb N.
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2017, 56 (27) : 7814 - 7823
  • [33] LIQUID-VAPOR COEXISTENCE CURVE OF XENON
    CORNFELD, AB
    CARR, HY
    BULLETIN OF THE AMERICAN PHYSICAL SOCIETY, 1972, 17 (03): : 277 - &
  • [34] COEXISTENCE LIQUID-VAPOR CURVE FOR ETHANE
    BULAVIN, LA
    IVANITSKY, PG
    MAISTRENKO, AN
    MELNICHENKO, YB
    SHIMANSKY, YI
    UKRAINSKII FIZICHESKII ZHURNAL, 1982, 27 (07): : 1042 - 1045
  • [35] The liquid-liquid interface under planetary rotation
    König, CS
    Sutherland, IA
    Computational Methods in Multiphase Flow III, 2005, 50 : 317 - 326
  • [36] The coexistence region in the Van der Waals fluid and the liquid-liquid phase transitions
    Pham, Dinh Quoc Huy
    Chwastyk, Mateusz
    Cieplak, Marek
    FRONTIERS IN CHEMISTRY, 2023, 10
  • [37] Liquid-Liquid Coexistence in NaCl Aqueous Solutions: A Simulation Study of Concentration Effects
    Corradini, D.
    Gallo, P.
    JOURNAL OF PHYSICAL CHEMISTRY B, 2011, 115 (48): : 14161 - 14166
  • [38] THE RELEVANCE OF BINODAL CURVE DATA IN TERNARY LIQUID-LIQUID EQUILIBRIA - COMMENT
    RUIZ, F
    GOMIS, V
    CHEMICAL ENGINEERING SCIENCE, 1995, 50 (09) : 1509 - 1510
  • [39] Liquid-liquid coexistence surface for lysozyme: Role of salt type and salt concentration
    Wentzel, Nathaniel
    Gunton, James D.
    JOURNAL OF PHYSICAL CHEMISTRY B, 2007, 111 (06): : 1478 - 1481
  • [40] Comparison of Line Tension Measurement Methods for Lipid Monolayers at Liquid-Liquid Coexistence
    Stottrup, Benjamin L.
    TigreLazo, Juan
    Bagonza, Vision B.
    Kunz, Joan C.
    Zasadzinski, Joseph A.
    LANGMUIR, 2019, 35 (48) : 16053 - 16061