Isothermal Vapor−Liquid Equilibrium of (1-Butanol + 1,8-Cineole) at 10 Temperatures between (278.15 and 323.15) K
Author:
Publisher
American Chemical Society (ACS)
Subject
General Chemical Engineering,General Chemistry
Link
https://pubs.acs.org/doi/pdf/10.1021/je200011e
Reference22 articles.
1. Setup and Validation of a PρT Measuring Device. Volumetric Behavior of the Mixture 1,8-Cineole + Ethanol
2. Thermophysical properties of the binary mixtures (1,8-cineole+1-alkanol) at T=(298.15 and 313.15)K and at atmospheric pressure
3. P, ρ, T Measurements and Isobaric Vapor−Liquid−Equilibria of the 1,3,3-Trimethyl-2-oxabicycle[2,2,2]octane + Propan-1-ol Mixture: Cubic and Statistical Associating Fluid Theory-Based Equation of State Analysis
4. A versatile phase equilibrium equation of state
5. PRSV: An improved peng-Robinson equation of state for pure compounds and mixtures
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2. Thermodynamic Behavior of (2-Propanol + 1,8-Cineole) Mixtures: Isothermal Vapor–Liquid Equilibria, Densities, Enthalpies of Mixing, and Modeling;International Journal of Molecular Sciences;2023-06-20
3. Prediction of mutual diffusion coefficients in binary liquid systems with one self-associating component from viscosity data and intra-diffusion coefficients at infinite dilution;Chemical Engineering Science;2016-06
4. Isobaric VLE of the mixture {1,8-cineole + ethanol}. EOS analysis and COSMO-RS modeling;The Journal of Chemical Thermodynamics;2016-06
5. Molar heat capacities of the mixture {1,8-cineole + ethanol} at several temperatures and atmospheric pressure;The Journal of Chemical Thermodynamics;2016-01
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