Title of article :
Thermodynamic Parameters Modeling of Viscous Flow Activation in Ethylene Glycol-Water Fluid Systems
Author/Authors :
Snoussi ، Lotfi Thermal Processes Laboratory (LPT) - Research and Technology Center of Energy (CRTEn) - University of Carthage , Babu ، Shaik Department of Physics - Koneru Lakshmaiah Education Foundation , Herráez ، Jose V. Department of Thermodynamics - Faculty of Pharmacy - University of Valencia , Akhtar ، Shamim Department of Chemistry - University of Chittagong , Al-Arfaj ، Ahlam Department of Chemistry - College of Science - Imam Abdulrahman Bin Faisal University , Ouerfelli ، Noureddine Department of Chemistry - College of Science - Imam Abdulrahman Bin Faisal University
Abstract :
Calculation of excess quantities of ethylene glycol + water binary fluid systems at seven absolute temperatures (293.15 to 353.15) K from experimentally determined values of density and shear viscosity were presented in previous work. The examination of related functions beside the quality of correlation from several equations on these experimental values has also been reported. Considering the quasi-equality between Arrhenius activation energy of viscosity Ea and the enthalpy of activation for viscous flow H*, over with their individual s contribution separately we can define partial molar activation energy Ea1 and Ea2 for ethylene glycol with water respectively. Correlation between Arrhenius parameters also shows desirable Arrhenius temperature. Comparison to the vaporization temperature in the fluid vapor equilibrium, and the limiting corresponding partial quantities permit us to predict value of the boiling points of the pure constituents. New empirical equations to estimate the boiling point are developed.
Keywords :
Binary fluid systems , Shear viscosity , Arrhenius activation energy , Ethylene glycol , boiling temperature
Journal title :
Iranian Journal of Chemistry and Chemical Engineering (IJCCE)
Journal title :
Iranian Journal of Chemistry and Chemical Engineering (IJCCE)