Phase Equilibrium and Interfacial Tension of Binary and Ternary Polymer Solutions

  • Choi, Ji Su
  • Bae, Young Chan
Citations

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19
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20

초록

The liquid-liquid equilibrium (LLE) and interfacial tensions of binary and ternary polymer solutions of polystyrene in cyclohexane and methylcyclohexane are investigated. The chain length dependent modified double lattice model (MDL-CL) is applied to describe experimental phase diagrams measured by thermo-optical analysis. The proposed model is also combined with the modified density gradient theory to calculate interfacial tension between two coexisting liquid phases of the investigated systems. The calculated results of LLE and interfacial tensions using the MDL-CL model combined with the modified density gradient theory show good agreement with experimental data. The interfacial tension of the ternary system (polystyrene + cyclohexane + methylcyclohexane) is described with the parameters obtained from the binary subsystems (polystyrene + cyclohexane and polystyrene + methylcyclohexane). A comparison of experimental and theoretical phase behaviors and interfacial tensions demonstrates that the theoretical approach is able to describe the experimental result with a few adjustable parameters.

키워드

DENSITY-GRADIENT THEORYDIRECTIONAL ATTRACTIVE FORCESDOUBLE-LATTICE MODELSURFACE-TENSIONTHERMODYNAMIC THEORYMIXTURESFLUIDSSIMULATIONPREDICTIONBEHAVIOR
제목
Phase Equilibrium and Interfacial Tension of Binary and Ternary Polymer Solutions
저자
Choi, Ji SuBae, Young Chan
DOI
10.1021/acs.jced.6b00573
발행일
2016-12
유형
Article
저널명
Journal of Chemical and Engineering Data
61
12
페이지
4157 ~ 4163