401 - 402 |
Special Issue 100th year Anniversary of van der Waals' Nobel Lecture Preface Peters CJ, Kroon MC, Raeissi S |
403 - 414 |
The equation of state for gases and liquids (Reprinted from Nobel Lecture, December, 1910) van der Waals JD |
415 - 420 |
The legacy of Johannes Diderik van der Waals, a hundred years after his Nobel Prize for physics Valderrama JO |
421 - 437 |
Equations of state: From the ideas of van der Waals to association theories Kontogeorgis GM, Economou IG |
438 - 447 |
From van der Waals to VTPR: The systematic improvement of the van der Waals equation of state Schmid B, Gmehling J |
448 - 454 |
A new concept for augmented van der Waals equations of state Nezbeda I, Melnyk R, Trokhymchuk A |
455 - 461 |
Critical behavior of pure confined fluids from an extension of the van der Waals equation of state Travalloni L, Castier M, Tavares FW, Sandler SI |
462 - 471 |
A comparison between models based on equations of state and density-based models for describing the solubility of solutes in CO2 Turk M, Crone M, Kraska T |
472 - 478 |
Near-critical and supercritical dilute solutions viewed from macroscopic and molecular-scale perspectives Fernandez-Prini R, Japas ML, Marceca E |
479 - 484 |
Modeling solubility in supercritical fluids via the virial equation of state Schultz AJ, Shaul KRS, Yang S, Kofke DA |
485 - 495 |
On the modeling of phase and chemical equilibria by equations of state for systems containing supercritical components and ionic species Smirnova N, Kuranov G |
496 - 502 |
The generalized van der Waals partition function as a basis for excess free energy models Sandler SI |
503 - 509 |
Predicting fluid phase equilibrium via histogram reweighting with Gibbs ensemble Monte Carlo simulations Boulougouris GC, Peristeras LD, Economou IG, Theodorou DN |
510 - 523 |
Adsorption of N-2, CH4, CO and CO2 gases in single walled carbon nanotubes: A combined experimental and Monte Carlo molecular simulation study Lithoxoos GP, Labropoulos A, Peristeras LD, Kanellopoulos N, Samios J, Economou IG |
524 - 536 |
A star-function based density functional study of the adsorption of Lennard-Jones fluid near its supercritical states Lee LL, Pellicane G, Chapman WG |
537 - 544 |
Measurement of phase equilibria of the systems CO2 + styrene and CO2 + vinyl acetate using different experimental methods Peper S, Haverkamp V, Dohrn R |
545 - 553 |
Determination of critical properties of pure and multi-component mixtures using a "dynamic-synthetic" apparatus Soo CB, Theveneau P, Coquelet C, Ramjugernath D, Richon D |
554 - 565 |
High pressure phase equilibrium measurements of long chain alcohols in supercritical ethane Schwarz CE, de Villiers AJ, McClune CB, Bonthuys GJK, Burger AJ, Knoetze JH |
566 - 572 |
Measurements and modeling of high-pressure excess molar enthalpies and isothermal vapor-liquid equilibria of the carbon dioxide plus N,N-dimethylformamide system Zahran F, Pando C, Cabanas A, Renuncio JAR |
573 - 578 |
Supercritical CO2 extraction of dittany oil: Experiments and modelling Perakis C, Louli V, Voutsas E, Magoulas K |
579 - 593 |
The vdW EoS hundred years later, yet younger than before. Application to the phase equilibria modeling of food-type systems for a green technology Fornari T, Luna P, Stateva RP |
594 - 602 |
An isomorphic Peng-Robinson equation for phase-equilibria properties of hydrocarbon mixtures in the critical region Abdulkadirova KS, Peters CJ, Sengers JV, Anisimov MA |
603 - 608 |
Solubility of non-psychoactive cannabinoids in supercritical carbon dioxide and comparison with psychoactive cannabinoids Perrotin-Brunel H, Kroon MC, van Roosmalen MJE, van Spronsen J, Peters CJ, Witkamp GJ |
609 - 615 |
Data analysis, modeling and thermodynamic consistency of CO2 + beta-carotene high pressure mixtures Valderrama JO, Robles PA, Reategui A |
616 - 622 |
Solubility estimation of drugs in ternary systems of interest for the antisolvent precipitation processes Kikic I, De Zordi N, Moneghini M, Solinas D |
623 - 634 |
Thermodynamic modeling of CO2 solubility in aqueous solutions of NaCl and Na2SO4 Yan YZ, Chen CC |
635 - 642 |
Supercritical phase behavior for biotransformation processing Brandenbusch C, Sadowski G |
643 - 647 |
Isochoric lines and determination of phase transitions in supercritical reactors Velez A, Pereda S, Brignole EA |
648 - 652 |
Determination of S-L phase transitions under gas pressure Knez Z, Skerget M, Mandzuka Z |
653 - 661 |
Phase equilibria of carbon dioxide+1-nonanol system at high pressures Secuianu C, Feroiu V, Geana D |
662 - 670 |
Phase equilibrium data and thermodynamic modeling of the system propane plus NMP plus methanol at high pressures (Reprint from J. of Supercritical Fluids vol 55, pg 23-31, 2010) Charin RM, Corazza ML, Ndiaye PM, Mazutti MA, Oliveira JV |
671 - 681 |
Equation of state modeling of the phase equilibria of asymmetric CO2 + n-alkane binary systems using mixing rules cubic with respect to mole fraction Cismondi M, Mollerup JM, Zabaloy MS |
682 - 689 |
Measurement and prediction of high-pressure vapor-liquid equilibria for binary mixtures of carbon dioxide plus n-octane, methanol, ethanol, and perfluorohexane Tochigi K, Namae T, Suga T, Matsuda H, Kurihara K, dos Ramos MC, McCabe C |
690 - 695 |
Measurement and thermodynamic modeling of partition coefficients in N,N-dimethylacetamide-water-carbon dioxide system Dincer NE, Erkey C |
696 - 700 |
Volumetric properties of carbon dioxide+2-butanol mixtures at 313.15 K Kodama D, Kato M, Hashimoto S, Kaneko T |
701 - 711 |
Equation of state modeling of high-pressure, high-temperature hydrocarbon density data Liu K, Wu Y, McHugh MA, Baled H, Enick RM, Morreale BD |
712 - 723 |
Interfacial tension and the behavior of microemulsions and macroemulsions of water and carbon dioxide with a branched hydrocarbon nonionic surfactant Chen X, Adkins SS, Nguyen QP, Sanders AW, Johnston KP |
724 - 734 |
Interfacial properties of mixtures containing supercritical gases Amezquita OGN, Enders S, Jaeger PT, Eggers R |
735 - 742 |
Density functional theory for calculating surface tensions with a simple renormalization formalism for the critical point Tang XH, Gross J |
743 - 754 |
Interfacial tension measurements and modelling of (carbon dioxide plus n-alkane) and (carbon dioxide plus water) binary mixtures at elevated pressures and temperatures Georgiadis A, Llovell F, Bismarck A, Blas FJ, Galindo A, Maitland GC, Trusler JPM, Jackson G |
755 - 768 |
Phase equilibria, surface tensions and heat capacities of hydrofluorocarbons and their mixtures including the critical region Vilaseca O, Llovell F, Yustos J, Marcos RM, Vega LF |
769 - 777 |
Molecular dynamics simulation of the formation of pharmaceutical particles by rapid expansion of a supercritical solution Romer F, Kraska T |
778 - 785 |
Formation of submicron poorly water-soluble drugs by rapid expansion of supercritical solution (RESS): Results for Naproxen Turk M, Bolten D |
786 - 796 |
Phase behaviour of hyperbranched polyesters and polyethers with modified terminal OH groups in supercritical solvents Gregorowicz J, Fras Z, Parzuchowski P, Rokicki G, Kusznerczuk M, Dziewulski S |
797 - 801 |
Extension of a compressible lattice model to CO2 plus cosolvent plus polymer systems (Reprint from J. of Supercritical Fluids vol 55, pg 363-372, 2010) Yuan YH, Teja AS |
802 - 816 |
Theoretical investigation of the phase behaviour of mixtures of a novel family of perfluoroalkyl-polyoxyethylene ether diblock surfactants in aqueous solutions of carbon dioxide dos Ramos MC, Blas FJ |
817 - 824 |
Fluid-phase equilibria in binary systems containing an ionic liquid. Application of the Percus-Yevick-van der Waals equation of state Xin Q, Poon GG, Prausnitz JM |
825 - 832 |
Scott-van Konynenburg phase diagram of carbon dioxide plus alkylimidazolium-based ionic liquids Raeissi S, Florusse L, Peters CJ |
833 - 845 |
Phase behavior of mixtures of ionic liquids and organic solvents Abildskov J, Ellegaard MD, O'Connell JP |
846 - 851 |
Gas solubilities in ionic liquids using a generic van der Waals equation of state Yokozeki A, Shiflett MB |
852 - 859 |
Thermodynamic analysis of absorption refrigeration cycles using ionic liquid plus supercritical CO2 pairs Martin A, Bermejo MD |