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Isothermal Vapor–Liquid Equilibria for Nitromethane and Nitroethane + 1,3-Dichloropropane Binary Systems at Temperatures between (343.15 and 363.15) K
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    Isothermal Vapor–Liquid Equilibria for Nitromethane and Nitroethane + 1,3-Dichloropropane Binary Systems at Temperatures between (343.15 and 363.15) K
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    “Ilie Murgulescu” Institute of Physical Chemistry, Romanian Academy, Splaiul Independentei 202, 060021 Bucharest, Romania
    E-mail: [email protected]. Tel.: +40213167912. Fax: +40213121147.
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    Journal of Chemical & Engineering Data

    Cite this: J. Chem. Eng. Data 2011, 56, 12, 4665–4671
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    https://doi.org/10.1021/je200651r
    Published September 21, 2011
    Copyright © 2011 American Chemical Society

    Abstract

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    Isothermal vapor–liquid equilibrium (VLE) data are reported at three temperatures, (343.15, 353.15, and 363.15) K, for the binary mixtures containing nitromethane or nitroethane with 1,3-dichloropropane. For the measurements an all-glass ebulliometer was used, which allows sampling from both phases in equilibrium. The experimental data were correlated using the nonrandom two-liquid (NRTL) and universal quasichemical activity coefficient (UNIQUAC) excess Gibbs energy models by means of maximum likelihood method, taking into account the vapor phase imperfection in terms of the second virial coefficients. Both systems are azeotropic and show positive deviations from ideal behavior. The experimental VLE data are analyzed in terms of the modified UNIFAC (Do) model.

    Copyright © 2011 American Chemical Society

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    This article is cited by 8 publications.

    1. Daniela Gheorghe, Dana Dragoescu, and Mariana Teodorescu . Volumetric Study for the Binary Nitromethane with Chloroalkane Mixtures at Temperatures in the Range (298.15 to 318.15) K. Journal of Chemical & Engineering Data 2013, 58 (5) , 1161-1167. https://doi.org/10.1021/je3013342
    2. Dana Dragoescu, Magdalena Bendová, Zdeněk Wagner, Daniela Gheorghe. Volumetric, acoustic and optical properties for binary mixtures of nitroethane with chloroalkane at temperatures between 298.15 K and 318.15 K. Comparison with theories. Journal of Molecular Liquids 2016, 223 , 790-804. https://doi.org/10.1016/j.molliq.2016.08.076
    3. Květoslav Růžička, Michal Fulem, Tomáš Mahnel, Ctirad Červinka. Recommended vapor pressures for aniline, nitromethane, 2-aminoethanol, and 1-methyl-2-pyrrolidone. Fluid Phase Equilibria 2015, 406 , 34-46. https://doi.org/10.1016/j.fluid.2015.06.045
    4. Dana Dragoescu, Daniela Gheorghe, Magdalena Bendová, Zdeněk Wagner. Speeds of sound, isentropic compressibilities and refractive indices for some binary mixtures of nitromethane with chloroalkane at temperatures from 298.15 to 318.15K. Comparison with theories. Fluid Phase Equilibria 2015, 385 , 105-119. https://doi.org/10.1016/j.fluid.2014.10.004
    5. Mariana Teodorescu, B. Marongiu, Sara Maxia, Alessandra Piras, Marianna Usula, Silvia Porcedda. Calorimetric study of the selected nitroalkane+chloroalkane binary systems. Journal of Thermal Analysis and Calorimetry 2014, 116 (1) , 119-127. https://doi.org/10.1007/s10973-013-3408-5
    6. Mariana Teodorescu, Catinca Secuianu. Refractive Indices Measurement and Correlation for Selected Binary Systems of Various Polarities at 25 °C. Journal of Solution Chemistry 2013, 42 (10) , 1912-1934. https://doi.org/10.1007/s10953-013-0085-8
    7. Dana Dragoescu, Mariana Teodorescu, Daniela Gheorghe. Isothermal vapor–liquid equilibria and excess Gibbs free energies in some binary nitroalkane+chloroalkane mixtures at temperatures from 298.15K to 318.15K. Fluid Phase Equilibria 2013, 338 , 16-22. https://doi.org/10.1016/j.fluid.2012.10.015
    8. Mariana Teodorescu, Dana Dragoescu, Daniela Gheorghe. Isothermal (vapour+liquid) equilibria for (nitromethane or nitroethane+1,4-dichlorobutane) binary systems at temperatures between (343.15 and 363.15)K. The Journal of Chemical Thermodynamics 2013, 56 , 32-37. https://doi.org/10.1016/j.jct.2012.06.033

    Journal of Chemical & Engineering Data

    Cite this: J. Chem. Eng. Data 2011, 56, 12, 4665–4671
    Click to copy citationCitation copied!
    https://doi.org/10.1021/je200651r
    Published September 21, 2011
    Copyright © 2011 American Chemical Society

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