Search results for "Thermodynamics"

showing 10 items of 2774 documents

Binding of basic amphipathic peptides to neutral phospholipid membranes: a thermodynamic study applied to dansyl-labeled melittin and substance P ana…

1997

A thermodynamic approach is proposed to quantitatively analyze the binding isotherms of peptides to model membranes as a function of one adjustable parameter, the actual peptide charge in solution z(p)+. The main features of this approach are a theoretical expression for the partition coefficient calculated from the molar free energies of the peptide in the aqueous and lipid phases, an equation proposed by S. Stankowski [(1991) Biophysical Journal, Vol. 60, p. 341] to evaluate the activity coefficient of the peptide in the lipid phase, and the Debye-Huckel equation that quantifies the activity coefficient of the peptide in the aqueous phase. To assess the validity of this approach we have s…

Activity coefficientProtein ConformationLipid BilayersMolecular Sequence DataBiophysicsPhospholipidPeptideSubstance PBiochemistryMelittinBiomaterialschemistry.chemical_compoundElectrochemistryOrganic chemistryAmino Acid Sequencechemistry.chemical_classificationDansyl CompoundsAqueous solutionTransglutaminasesChemistryOrganic ChemistryGeneral MedicineMelittenPartition coefficientCrystallographyMembraneSpectrometry FluorescenceIonic strengthThermodynamicsBiopolymers
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A series expansion of the extended Debye-H�ckel equation and application to linear prediction of stability constants

1996

The Debye-Hückel semiempirical extended equation is frequently used to calculate activity coefficients of chemical species and equilibrium constants at ionic strengths different from those used in their experimental evaluation. A series expansion of the extended Debye-Hückel equation is proposed here and checked with experimental data taken from the literature. The expansion is linear in the ionic parameters and yields a geometrical series which converges rapidly and that enables the accurate calculation of interpolated and extrapolated activity coefficients and equilibrium constants by simple and multiple linear regression without previous knowledge of the ionic parameters.

Activity coefficientSeries (mathematics)ChemistryThermodynamicsLinear predictionAnalytical Chemistrysymbols.namesakeIonic strengthComputational chemistryDebye–Hückel equationLinear regressionPhysics::Atomic and Molecular ClusterssymbolsSeries expansionEquilibrium constantTalanta
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Phase equilibrium for the systems diisopropyl ether, isopropyl alcohol+2,2,4-trimethylpentane and +n-heptane at 101.3kPa

2010

Abstract Consistent vapour–liquid equilibrium data for the ternary systems diisopropyl ether + isopropyl alcohol + 2,2,4-trimethylpentane and diisopropyl ether + isopropyl alcohol + n-heptane are reported at 101.3 kPa. The vapour–liquid equilibrium data have been correlated by Wilson, NRTL and UNIQUAC equations. The ternary systems do not present ternary azeotropes.

Activity coefficientTernary numeral systemUNIQUACGeneral Chemical EngineeringGeneral Physics and AstronomyThermodynamicsIsopropyl alcoholchemistry.chemical_compoundchemistryNon-random two-liquid modelDiisopropyl etherOrganic chemistry224-TrimethylpentanePhysical and Theoretical ChemistryTernary operationFluid Phase Equilibria
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Phase equilibria in the ternary system isobutyl alcohol+isobutyl acetate+1-hexanol and the binary systems isobutyl alcohol+1-hexanol, isobutyl acetat…

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) + 1-hexanol and two constituent binary systems: IBA + 1-hexanol and IBAc + 1-hexanol. The IBA + 1-hexanol system exhibits no deviation from ideal behaviour and IBAc + 1-hexanol system show lightly positive deviation from Raoult's law. The activity coefficients of the solutions were correlated with its composition by the Wilson, NRTL, UNIQUAC models. The ternary system is well predicted from binary interaction parameters. 1-Hexanol eliminates the IBA–IBAc binary azeotrope. However, the change of phase equilibria behaviour is small t…

Activity coefficientTernary numeral systemUNIQUACIsobutyl acetateChemistryGeneral Chemical EngineeringGeneral Physics and AstronomyThermodynamicschemistry.chemical_compoundAzeotropeNon-random two-liquid modelPhysical chemistryBinary systemPhysical and Theoretical ChemistryHexanolFluid Phase Equilibria
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Isobaric vapor–liquid equilibria for the binary systems 1-propyl alcohol+dipropyl ether and 1-butyl alcohol+dibutyl ether at 20 and 101.3kPa

2006

Abstract Isobaric vapor–liquid equilibrium measurements for the binary systems 1-propyl alcohol + dipropyl ether and 1-butyl alcohol + dibutyl ether are reported at 20 and 101.3 kPa. Both systems, which deviate positively from ideal behavior present a minimum boiling point azeotrope at both pressures, showing the azeotropic compositions a strong dependency on pressure. The activity coefficients and boiling points of the solutions were correlated with its composition by the Wilson, UNIQUAC, NRTL, and Wisniak–Tamir equations.

Activity coefficientUNIQUACChemistryGeneral Chemical EngineeringGeneral Physics and AstronomyThermodynamicsEtherDibutyl etherchemistry.chemical_compoundBoiling pointAzeotropeNon-random two-liquid modelBinary systemPhysical and Theoretical ChemistryFluid Phase Equilibria
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Isobaric vapor–liquid equilibrium for binary mixtures of 2-methylpentane+ethanol and +2-methyl-2-propanol

1999

Abstract Vapor–liquid equilibrium (VLE) data for the binary systems, 2-methylpentane+ethanol and 2-methylpentane+2-methyl-2-propanol (TBA), are reported at 101.3 kPa, including pure component vapor pressures. The systems deviate remarkably from ideal behaviour presenting one positive azeotrope. The activity coefficients and boiling points of the solutions were correlated with its composition by Wilson, UNIQUAC, NRTL, and Wisniak–Tamir equations.

Activity coefficientUNIQUACChemistryGeneral Chemical EngineeringGeneral Physics and AstronomyThermodynamicsPropanolchemistry.chemical_compoundBoiling pointAzeotropeNon-random two-liquid modelVapor–liquid equilibriumIsobaric processPhysical and Theoretical ChemistryFluid Phase Equilibria
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Isobaric vapor-liquid equilibria and densities for the system methyl 1,1-dimethylethyl ether+2-propanol

2002

Vapor-liquid equilibrium data at 50, 75 and 94 kPa have been determined for the binary system methyl 1,1-dimethylethyl ether + 2-propanol, in the temperature range 308-344 K. The measurements were made in an equilibrium still with circulation of both the vapor and liquid phases. Excess volumes have been also determined from density measurements using a vibrating tube densimeter at 298.15 K. The system exhibits positive deviation from ideal behavior and does not present azeotropy within the range of pressures studied. The excess volume of the system is negative over the whole mole fraction range. The activity coefficients and boiling points of the solutions were well correlated with the mole…

Activity coefficientUNIQUACChemistryThermodynamicsCondensed Matter PhysicsMole fractionElectronic Optical and Magnetic MaterialsPropanolBoiling pointchemistry.chemical_compoundMolar volumeMaterials ChemistryNon-random two-liquid modelVapor–liquid equilibriumPhysical and Theoretical Chemistry
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Isobaric Vapor−Liquid Equilibria for Binary and Ternary Mixtures of Diisopropyl Ether, 2-Propyl Alcohol, and 3-Methyl-1-Butanol

2008

Consistent vapor−liquid equilibrium data for the binary and ternary systems diisopropyl ether (1) + 2-propyl alcohol (2) + 3-methyl-1-butanol (3) are reported at 101.3 kPa. The diisopropyl ether (1) + 3-methyl-1-butanol (3) system shows positive deviations from ideal behavior, and the 2-propyl alcohol (2) + 3-methyl-1-butanol (3) system exhibits slight deviations from ideal behavior. The activity coefficients and the boiling points were correlated with their compositions by the Wilson, NRTL, UNIQUAC, and Wisniak−Tamir equations. It is shown that these models allow a very good prediction of the phase equilibria of the ternary system using the pertinent parameters of the binary systems. 3-Met…

Activity coefficientUNIQUACTernary numeral systemGeneral Chemical EngineeringButanolThermodynamicsGeneral Chemistrychemistry.chemical_compoundchemistryAzeotropeNon-random two-liquid modelOrganic chemistryDiisopropyl etherExtractive distillationJournal of Chemical & Engineering Data
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Phase equilibria involved in extractive distillation of dipropyl ether+1-propyl alcohol using 2-ethoxyethanol as entrainer

2007

Abstract Consistent vapour–liquid equilibrium data at 101.3 kPa have been determined for the ternary system dipropyl ether + 1-propyl alcohol + 2-ethoxyethanol and two constituent binary systems: dipropyl ether + 2-ethoxyethanol and 1-propyl alcohol + 2-ethoxyethanol. The dipropyl ether + 2-ethoxyethanol system shows positive deviations from ideal behaviour and 1-propyl alcohol + 2-ethoxyethanol system exhibits no deviation from ideal behaviour. The activity coefficients and the boiling points were correlated with their compositions by the Wilson, NRTL and UNIQUAC equations. It is shown that the models allow a very good prediction of the phase equilibria of the ternary system using the pert…

Activity coefficientUNIQUACTernary numeral systemGeneral Chemical EngineeringGeneral Physics and AstronomyThermodynamics2-Ethoxyethanolchemistry.chemical_compoundchemistryPhase (matter)Non-random two-liquid modelOrganic chemistryExtractive distillationBinary systemPhysical and Theoretical ChemistryFluid Phase Equilibria
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Vapor–liquid equilibria in the ternary system dipropyl ether+1-propanol+1-pentanol and the binary systems dipropyl ether+1-pentanol, 1-propanol+1-pen…

2006

Abstract Consistent vapor–liquid equilibrium (VLE) data at 101.3 kPa have been determined for the ternary system dipropyl ether (DPE) + 1-propanol (PA) + 1-pentanol and two constituent binary systems: DPE + 1-pentanol and PA + 1-pentanol. The DPE + 1-pentanol system shows positive deviations from ideal behaviour and PA + 1-pentanol system exhibits no deviation from ideal behaviour. The activity coefficients and the boiling points were correlated with their compositions by the Wilson, NRTL, UNIQUAC and Wisniak–Tamir equations. It is shown that the models allow a very good prediction of the phase equilibria of the ternary system using the pertinent parameters of the binary systems. 1-Pentanol…

Activity coefficientUNIQUACTernary numeral systemGeneral Chemical EngineeringGeneral Physics and AstronomyThermodynamicsPropanolchemistry.chemical_compoundchemistryAzeotropeNon-random two-liquid modelExtractive distillationBinary systemPhysical and Theoretical ChemistryFluid Phase Equilibria
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