Search results for "UNIFAC"

showing 10 items of 16 documents

Wine Aroma Concentration by Using a General Purpose simulator (ProSim)

1995

In this work is proposed the application of the ProSim process simulator for the analysis of wine aroma concentration by performing a two-level simulation: First, ProSim is used to attain a preliminary design of a distillation tower, and afterward the simulator is employed to analyze the behavior of the tower in a more precise way. The UNIFAC model was used for nonideal behavior description of the mixtures. In this application, the concentration of a 13-compound mixture was simulated. In fact, the numerical methods implemented in ProSim made it possible to attain the convergence quickly even with minor compounds. The results obtained showed that the use of ProSim results to be very advanta…

0106 biological sciencesComputer sciencebusiness.industryGeneral Chemical Engineering04 agricultural and veterinary sciences040401 food science01 natural sciencesIndustrial and Manufacturing Engineering0404 agricultural biotechnologyFractionating column010608 biotechnologyProcess engineeringbusinessUNIFACFood ScienceFood Science and Technology International
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Vapor–liquid equilibria in the ternary system isobutyl alcohol+isobutyl acetate+butyl propionate and the binary systems isobutyl alcohol+butyl propio…

2005

Abstract Consistent vapor–liquid equilibrium (VLE) data at 101.3 kPa have been determined for the ternary system isobutyl alcohol (IBA) + isobutyl acetate (IBAc) + butyl propionate (BUP) and two constituent binary systems: IBA + BUP and IBAc + BUP. The IBA + BUP system show lightly positive deviation from Raoult's law and IBAc + BUP system exhibits no deviation from ideal behaviour. The activity coefficients of the solutions were correlated with its composition by the Wilson, NRTL, UNIQUAC models. The ternary system is very well predicted from binary interaction parameters. BUP eliminates the IBA–IBAc binary azeotrope. The change of phase equilibria behaviour is significant therefore this s…

Activity coefficientUNIQUACTernary numeral systemIsobutyl acetateChemistryGeneral Chemical EngineeringGeneral Physics and AstronomyThermodynamicschemistry.chemical_compoundAzeotropeNon-random two-liquid modelOrganic chemistryBinary systemPhysical and Theoretical ChemistryUNIFACFluid Phase Equilibria
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Liquid–liquid equilibria of 4-methyl-2-pentanone+1-propanol or 2-propanol+water ternary systems: Measurements and correlation at different temperatur…

2014

Abstract In this work, experimental liquid–liquid equilibria data of the systems 4-methyl-2-pentanone + 1-propanol + water and 4-methyl-2-pentanone + 2-propanol + water are presented. The liquid–liquid equilibria of both systems have been measured at 283.2 and 323.2 K. The NRTL and UNIQUAC models were successfully applied to fit the data for both ternary systems. The binodal lines were compared to the values predicted by the UNIFAC-LLE and UNIFAC models. Moreover, the solvent capability of 4-methyl-2-pentanone was checked in order to separate the azeotropic mixtures formed by propanol's and water.

BinodalUNIQUACGeneral Chemical EngineeringGeneral Physics and AstronomyThermodynamicsSolventPropanolchemistry.chemical_compound1-PropanolchemistryNon-random two-liquid modelPhysical and Theoretical ChemistryTernary operationUNIFACFluid Phase Equilibria
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Measurements and correlation of liquid–liquid equilibria of 4-methyl-2-pentanone+ethanol+water and 4-methyl-2-pentanone+n-butanol+water ternary syste…

2012

Abstract In this work, experimental liquid–liquid equilibria data of the systems 4-methyl-2-pentanone + ethanol + water and 4-methyl-2-pentanone + n-butanol + water are presented. The liquid–liquid equilibria of both systems have been measured between 283.2 and 323.2 K. The NRTL and UNIQUAC models were applied to fit the data for both ternary systems. The interaction parameters obtained from both models successfully correlated the equilibrium compositions. The binodal lines were compared to the values predicted by the UNIFAC-LLE and UNIFAC models. Moreover, the solvent capability of 4-methyl-2-pentanone was checked in order to separate these azeotropic mixtures alcohol + water.

BinodalWork (thermodynamics)UNIQUACGeneral Chemical EngineeringGeneral Physics and AstronomyThermodynamicsSolventchemistry.chemical_compoundchemistryn-ButanolNon-random two-liquid modelPhysical and Theoretical ChemistryTernary operationUNIFACFluid Phase Equilibria
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Liquid–liquid equilibria of the systems isobutyl acetate+isobutyl alcohol+water and isobutyl acetate+isobutyl alcohol+glycerol at different temperatu…

2008

Abstract In this work, experimental liquid–liquid equilibria (LLE) data of the isobutyl acetate + isobutyl alcohol + water and isobutyl acetate + isobutyl alcohol + glycerol systems are presented. The LLE of both systems have been measured at 283.15 and 323.15 K. The NRTL and UNIQUAC models were applied to both ternary systems. The interaction parameters obtained from both models successfully correlated the equilibrium compositions. The experimental tie lines were compared to the values predicted by the UNIFAC method. Moreover, the solvent capabilities of water and glycerol were compared.

ChromatographyUNIQUACIsobutyl acetateGeneral Chemical EngineeringInorganic chemistryGeneral Physics and AstronomyAlcoholSolventchemistry.chemical_compoundchemistryGlycerolNon-random two-liquid modelPhysical and Theoretical ChemistryTernary operationUNIFACFluid Phase Equilibria
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Diseño entre-sujetos unifactorial univariado (A = 2)

2020

Este documento (video) desarrolla un ejercicio de un diseño entre-sujetos unifactorial univariado (A=2). La actividad docente se enmarca en la línea de trabajo relacionada con la materia de "Diseños de Investigación en Psicología" (Facultad de Psicología, Universidad de Valencia). Innovando durante la COVID-19 con video-explicaciones discentes. Rocío del Pilar Pérez. Diseño entre-sujetos unifactorial univariado (A=2). Curso 2020/2021.

Diseñometodologíaunifactorialinvestigaciónentre-sujetosUNESCO::PSICOLOGÍAunivariado
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Solvent Effects on Vapor–Liquid Equilibria of the Binary System 1-Hexene + n-Hexane

2012

In order to study the separation of 1-hexene and n-hexane, two solvents, 2-pentanol and ethyl-butyrate, are tested as possible entrainers for an extractive distillation. In this way, isobaric vapor–liquid equilibrium (VLE) data at 100 kPa have been measured for the two ternary systems formed by the initial mixture and one of the mentioned solvents: 1-hexene + n-hexane + ethyl butyrate and 1-hexene + n-hexane + 2-pentanol. VLE data for the four constituent binary systems have also been measured. These systems are 1-hexene + ethyl butyrate, n-hexane + ethyl butyrate, 1-hexene + 2-pentanol, and finally n-hexane + 2-pentanol. All binary systems show moderate positive deviations from the ideal b…

Hexanechemistry.chemical_compoundUNIQUACchemistryEthyl butyrateGeneral Chemical EngineeringAzeotropeNon-random two-liquid modelExtractive distillationThermodynamicsGeneral ChemistryBinary systemUNIFACJournal of Chemical & Engineering Data
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Isobaric vapor–liquid equilibrium for binary mixtures of 1-hexene+n-hexane and cyclohexane+cyclohexene at 30, 60 and 101.3kPa

2009

Abstract Consistent vapor–liquid equilibria (VLE) data were determined for the binary systems 1-hexene + n-hexane and cyclohexane + cyclohexene at 30, 60 and 101.3 kPa, with the purpose of studying the influence of the pressure in the separation of these binary mixtures. The two systems show a small positive deviation from ideality and do not present an azeotrope. VLE data for the binary systems have been correlated by the Wilson, UNIQUAC and NRTL equations with good results and have been predicted by the UNIFAC group contribution method.

UNIQUACChemistryGeneral Chemical EngineeringGeneral Physics and AstronomyThermodynamicsGroup contribution methodchemistry.chemical_compoundHexeneAzeotropeNon-random two-liquid modelIsobaric processVapor–liquid equilibriumOrganic chemistryPhysical and Theoretical ChemistryUNIFACFluid Phase Equilibria
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Isobaric (vapour+liquid+liquid) equilibrium data for (di-n-propyl ether+n-propyl alcohol+water) and (diisopropyl ether+isopropyl alcohol+water) syste…

2008

Abstract Isobaric (vapour + liquid + liquid) equilibria were measured for the (di-n-propyl ether + n-propyl alcohol + water) and (diisopropyl ether + isopropyl alcohol + water) system at 100 kPa. The apparatus used for the determination of (vapour + liquid + liquid) equilibrium data was an all-glass dynamic recirculating still with an ultrasonic homogenizer couple to the boiling flask. The experimental data demonstrated the existence of a heterogeneous ternary azeotrope for both ternary systems. The (vapour + liquid + liquid) equilibria data were found to be thermodynamically consistent for both systems. The experimental data were compared with the estimation using UNIQUAC and NRTL models a…

UNIQUACTernary numeral systemAnalytical chemistryIsopropyl alcoholAtomic and Molecular Physics and Opticschemistry.chemical_compoundchemistryAzeotropeNon-random two-liquid modelDiisopropyl etherOrganic chemistryIsobaric processGeneral Materials SciencePhysical and Theoretical ChemistryUNIFACThe Journal of Chemical Thermodynamics
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Isobaric vapor–liquid equilibria for binary and ternary mixtures with cyclohexane, cyclohexene, and morpholine at 100kPa

2010

Abstract Vapor–liquid equilibria (VLE) data at 100 kPa have been determinated for the ternary system cyclohexane + cyclohexene + morpholine and two constituent binary systems cyclohexane + morpholine and cyclohexene + morpholine. The thermodynamic consistency of experimental data has been verified. Both binary systems deviate moderately from ideality without the presence of an azeotrope. The VLE data have been well correlated using local composition models (Wilson, NRTL and UNIQUAC) and have been also predicted with the original UNIFAC.

UNIQUACTernary numeral systemCyclohexaneGeneral Chemical EngineeringGeneral Physics and AstronomyThermodynamicschemistry.chemical_compoundchemistryAzeotropeNon-random two-liquid modelIsobaric processPhysical and Theoretical ChemistryTernary operationUNIFACFluid Phase Equilibria
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