Authors:
KONTOGEORGIS GM
COUTSIKOS P
HARISMIADIS VI
FREDENSLUND A
TASSIOS DP
Citation: Gm. Kontogeorgis et al., A NOVEL METHOD FOR INVESTIGATING THE REPULSIVE AND ATTRACTIVE PARTS OF CUBIC EQUATIONS OF STATE AND THE COMBINING RULES USED WITH THE VDW-1F THEORY, Chemical Engineering Science, 53(3), 1998, pp. 541-552
Authors:
COUTSIKOS P
MAGOULAS K
TASSIOS D
CORTESI A
KIKIC I
Citation: P. Coutsikos et al., CORRELATION AND PREDICTION OF INFINITE-DILUTION PARTIAL MOLAR VOLUMESOF ORGANIC SOLUTES IN SC CO2 USING THE PENG-ROBINSON AND PHCT EQUATIONS OF STATE AND THE LCVM EOS G(E) MODEL/, The Journal of supercritical fluids, 11(1-2), 1997, pp. 21-35
Authors:
KONTOGEORGIS GM
YAKOUMIS IV
COUTSIKOS P
TASSIOS DP
Citation: Gm. Kontogeorgis et al., A GENERALIZED EXPRESSION FOR THE RATIO OF THE CRITICAL-TEMPERATURE TOTHE CRITICAL PRESSURE WITH THE VAN-DER-WAALS SURFACE-AREA, Fluid phase equilibria, 140(1-2), 1997, pp. 145-156
Citation: P. Coutsikos et al., SOLUBILITIES OF P-QUINONE AND 9,10-ANTHRAQUINONE IN SUPERCRITICAL CARBON-DIOXIDE, Journal of chemical and engineering data, 42(3), 1997, pp. 463-466
Authors:
YAKOUMIS IV
VLACHOS K
KONTOGEORGIS GM
COUTSIKOS P
KALOSPIROS NS
TASSIOS D
Citation: Iv. Yakoumis et al., APPLICATION OF THE LCVM MODEL TO SYSTEMS CONTAINING ORGANIC-COMPOUNDSAND SUPERCRITICAL CARBON-DIOXIDE, The Journal of supercritical fluids, 9(2), 1996, pp. 88-98
Citation: P. Coutsikos et al., SOLUBILITIES OF PHENOLS IN SUPERCRITICAL CARBON-DIOXIDE, Journal of chemical and engineering data, 40(4), 1995, pp. 953-958
Authors:
KONTOGEORGIS GM
COUTSIKOS P
TASSIOS D
FREDENSLUND A
Citation: Gm. Kontogeorgis et al., IMPROVED MODELS FOR THE PREDICTION OF ACTIVITY-COEFFICIENTS IN NEARLYATHERMAL MIXTURES .1. EMPIRICAL MODIFICATIONS OF FREE-VOLUME MODELS, Fluid phase equilibria, 92, 1994, pp. 35-66
Authors:
BOUKOUVALAS C
SPILIOTIS N
COUTSIKOS P
TZOUVARAS N
TASSIOS D
Citation: C. Boukouvalas et al., PREDICTION OF VAPOR-LIQUID-EQUILIBRIUM WITH THE LCVM MODEL - A LINEARCOMBINATION OF THE VIDAL AND MICHELSEN MIXING RULES COUPLED WITH THE ORIGINAL UNIFAC AND THE T-MPR EQUATION OF STATE, Fluid phase equilibria, 92, 1994, pp. 75-106