Pressure effects on thermodynamics of phase behavior in polystyrene/methylcyclohexane solutions


Autoria(s): Li HF; Rang SC; An LJ; Yu DH
Data(s)

2007

Resumo

The calculations presented in this paper are based on the Sanchez-Lacombe (SL) lattice fluid theory. The interaction energy parameter, g*(12)/k, required in this approach was obtained by fitting the cloud points of polystyrene (PS) /methyleyclohexane (MCH) polymer solutions under pressure. The SL lattice fluid theory was used to calculate the spinodals, the binodals, and the Flory-Huggins (FH) interaction parameter of the solutions. The calculated results show that the SL lattice fluid theory can describe the dependences of thermodynamics of PS/MCH solutions on temperature and pressure very well. However, the calculated enthalpy and the excess volume changes indicate that the Clausius-Clapeyron equation cannot be suitable to describe pressure effect on PS/MCH solutions. Further analysis on the thermodynamics of this system under pressure shows that the role of entropy is more important than the excess volume in the present case.

Identificador

http://ir.ciac.jl.cn/handle/322003/13251

http://www.irgrid.ac.cn/handle/1471x/149050

Idioma(s)

英语

Fonte

Li HF;Rang SC;An LJ;Yu DH.Pressure effects on thermodynamics of phase behavior in polystyrene/methylcyclohexane solutions,CHEMICAL RESEARCH IN CHINESE UNIVERSITIES,2007 ,23(5):613-621

Palavras-Chave #CRITICAL SOLUTION TEMPERATURE #POLYMER-SOLUTIONS #SEPARATION BEHAVIOR #NEUTRON-SCATTERING #SOLUBILITY LIMITS #TRUE COSOLVENCY #DEPENDENCE #BLENDS #POLYSTYRENE #SYSTEM
Tipo

期刊论文