Energetic and entropic contributions to the work of adhesion in two-component, three-phase solid-liquid-vapour systems

被引:11
|
作者
Weber, Christian [1 ]
Stanjek, Helge [1 ]
机构
[1] Rhein Westfal TH Aachen, D-52072 Aachen, Germany
关键词
Excess energy of adhesion; Excess entropy of adhesion; Solid surface tension; Temperature dependence of contact angles; Geometric mean combining rules; EQUATION-OF-STATE; CONTACT ANGLES; TEMPERATURE DEPENDENCE; INTERFACIAL-TENSION; SURFACE-TENSION; PRESSURE-DEPENDENCE; WATER INTERFACES; THERMODYNAMICS; FORCES; COMPONENTS;
D O I
10.1016/j.colsurfa.2013.07.034
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
For one-component liquid-vapour (Iv) systems Lyklema (1999) [1] has shown that the excess entropy is a rather constant quantity whereas the excess energy varies over several orders of magnitude. In this work we use literature data from two-component, three-phase solid-liquid-vapour (sly) systems to show for the first time that in these systems the majority of excess entropies of adhesion fall in a narrow range between 0.1 and 0.2 mj/m(2) K and show no direct relation to excess energies of adhesion. From this it is concluded that excess energy and excess entropy of adhesion are, at least in two-component, three-phase sly systems, not coupled. This finding agrees with the corresponding states principle suggested for lv systems by Lyklema [1]. Definitive conclusions are hampered by the lack of a data set with a broader range of excess energies. Geometric mean approaches relating contact angles to interface tensions are critically examined within the framework of Lyklema's [1] analysis and the insights obtained from the temperature dependence of contact angles. It turns out that none of the approaches considered can take proper account for the temperature dependence of interface tensions, which is first of all due to the neglect of entropic contributions to surface/interface tensions. At 25 C entropic contributions make up 30-50% of the total Helmholtz free energy of adhesion. (C) 2013 Elsevier B.V. All rights reserved.
引用
收藏
页码:331 / 339
页数:9
相关论文
共 41 条
  • [21] Matrix Converter Interfaces Two Three-Phase AC Systems as a Component of Smart-Grid
    Pawel, Szczesniak
    2014 INTERNATIONAL SYMPOSIUM ON POWER ELECTRONICS, ELECTRICAL DRIVES, AUTOMATION AND MOTION (SPEEDAM), 2014, : 683 - 688
  • [22] Three-Phase Model of Two-Component Blends Consisting of a Polystyrene-Polybutadiene Star Block Copolymer and a Polystyrene Homopolymer
    Lach, Ralf
    Satapathy, Bhabani K.
    Weidisch, Roland
    Grellmann, Wolfgang
    Knoll, Konrad
    MACROMOLECULAR SYMPOSIA, 2017, 373 (01)
  • [23] Recent studies on agitated three-phase (gas-solid-liquid) systems in the turbulent regime
    Nienow, AW
    Bujalski, W
    CHEMICAL ENGINEERING RESEARCH & DESIGN, 2002, 80 (A8): : 832 - 838
  • [24] The effect of the physical properties of the liquid phase on the gas-liquid mass transfer coefficient in two- and three-phase agitated systems
    Kielbus-Rapala, Anna
    Karcz, Joanna
    Cudak, Magdalena
    CHEMICAL PAPERS, 2011, 65 (02): : 185 - 192
  • [25] The effect of the physical properties of the liquid phase on the gas-liquid mass transfer coefficient in two- and three-phase agitated systems
    Anna Kiełbus-Rąpała
    Joanna Karcz
    Magdalena Cudak
    Chemical Papers, 2011, 65 : 185 - 192
  • [26] Prediction of Liquid Holdup and Solid Holdup in Three-phase Fluidized Bed: Air/Newtonian and non-Newtonian Liquid Systems
    Sivakumar, V.
    Senthilkumar, K.
    Akilamudhan, P.
    CHEMICAL AND BIOCHEMICAL ENGINEERING QUARTERLY, 2008, 22 (04) : 401 - 410
  • [27] Application of a two phase flow model based on local relative velocity to gas-liquid-solid three-phase flows
    Tomiyama, A
    Minagawa, H
    Furutani, N
    Sakaguchi, T
    JSME INTERNATIONAL JOURNAL SERIES B-FLUIDS AND THERMAL ENGINEERING, 1995, 38 (04) : 555 - 562
  • [28] Kinetics of diffusional phase separation in growing films of two-component metallic systems with a limited mutual solid solubility of components
    Ievlev, VM
    Shvedov, EV
    Ampilogov, VP
    Merkulov, GV
    PHYSICS OF METALS AND METALLOGRAPHY, 2000, 90 (02): : 159 - 163
  • [29] AXIAL HOLDUP DISTRIBUTIONS OF GAS AND SOLID PARTICLES IN THREE-PHASE FLUIDIZED BED FOR GAS-LIQUID (SLURRY)-SOLID SYSTEMS.
    Kato, Yasuo
    Morooka, Shigeharu
    Kago, Tokihiro
    Saruwatari, Tetsuya
    Yang, Shou-Zhi
    1600, (18):
  • [30] Application of a two-phase flow model based on local relative velocity to gas-liquid-solid three-phase flow
    Tomiyama, Akio
    Minagawa, Hisato
    Furutani, Naoya
    Sakaguchi, Tadashi
    Nippon Kikai Gakkai Ronbunshu, B Hen/Transactions of the Japan Society of Mechanical Engineers, Part B, 1993, 59 (561): : 117 - 124