300 likes | 500 Views
Phase Equilibria Experimental at High Pressure. Principle Investigator: Yan-Ping Chen Research Worker: Kong - Wei Cheng Department of Chemical Engineering National Taiwan University. Research Topic. Vapor - Liquid Equilibria of Esters in Carbon dioxide at Elevated Pressure
E N D
Phase Equilibria Experimental at High Pressure Principle Investigator: Yan-Ping Chen Research Worker: Kong - Wei Cheng Department of Chemical Engineering National Taiwan University
Research Topic Vapor - Liquid Equilibria of Esters in Carbon dioxide at Elevated Pressure Solubilities in Supercritical Carbon dioxide Ternary Systems in Supercritical Carbon dioxide
Apparatus in Literature (1) Analytical Method (a) Static Type Apparatus (b) Flow Type Apparatus (2) Synthetic Method (a) Visual Synthetic Method (b) Non-Visual Synthetic Method
Correlation for Experimental Data (a) Krichevsky – Ilinskaya (KI) Equation (b) Equation of State with Mixing Rules
Equation of State Using in This Study (1) Peng – Robinson (PR) EOS (2) Soave-Redlich-Kwong (SRK) EOS
Mixing Rules Using in This Study (a) van der Waals one-fluid mixing rules (b) VDW2 mixing rule (c) Panagiotopoulos – Reid mixing rule (d) Huron – Vidal mixing rule
Correlated results of experimental VLE data of three binary mixtures using various and EOS mixing rules
VLE results of the binary mixture of CO2 (1) + diethyl oxalate (2)
Solubilities of various ester compounds in supercritical CO2 at 328.15 K
Apparatus for Solubility in Literature Semi-Flow type apparatus (a) weighting method (b) on-line analysis (c) washing and analysis Recycle type apparatus (a) on line analysis (b) washing and analysis
Schematic diagram of the experimental apparatus for solubility in supercritical fluids in this study
Comparison of the solubility data of phenanthrene in supercritical carbon dioxide at 308.15 K
Equilibrium Criterion (a)Use the mass transfer method to ensure the equilibrium (b)Find the optimal operation condition (c)Find the min time to reach the phase equilibrium
Fluid - solid mass transfer Two type of mixing states will be considered for the fluid flowing in the equilibrium cell (a) Mixing - flow case (b) Plug - flow case
Plug flow case • For plug flow case
Thermodynamic and mass transport data for CO2 (1) + Benzoin (2) at different operating conditions
Equation of State Using in This Study (a) Peng –Robinsion (PR) EOS (b) Soave-Redlich-Kwong (SRK) EOS
Mixing Rules Using in This Study (a) van der Waals one-fluid mixing rules (b) VDW2 mixing rule (c) Huron-Vidal mixing rule
Correlated results of solubility data in supercritical carbon dioxide using various EOS mixing rules
Correlated results of the experimental solubility data in supercritical carbon dioxide by the Huron-Vidal mixing rules
Data Correlation Empirical model (a) Chrastil (1982) (b) Teja method (1999)
Correlated results of the experimental solubility data in supercritical carbon dioxide by the empirical model
Solubility data of various compounds in supercritical CO2 at 328.15 K