ACS Publications. Most Trusted. Most Cited. Most Read
My Activity
CONTENT TYPES

Figure 1Loading Img

Density, Speed of Sound, and Refractive Index of the Binary Systems Cyclohexane (1) or Methylcyclohexane (1) or Cyclo-octane (1) with Benzene (2), Toluene (2), and Ethylbenzene (2) at Two Temperatures

View Author Information
Departamento de Ingeniería Química de la Universidad de Vigo, 36310 Vigo, Spain
* To whom correspondence should be addressed. E-mail: [email protected]. Tel.: +34 986 812 305. Fax: +34 986 812 382.
Cite this: J. Chem. Eng. Data 2010, 55, 2, 1003–1011
Publication Date (Web):October 15, 2009
https://doi.org/10.1021/je900468u
Copyright © 2009 American Chemical Society

    Article Views

    866

    Altmetric

    -

    Citations

    LEARN ABOUT THESE METRICS
    Read OnlinePDF (376 KB)

    Abstract

    Densities, speeds of sound, and refractive indices of binary systems containing cycloalkanes (cyclohexane and methylcyclohexane) with aromatic compounds (benzene, toluene, and ethylbenzene) at T = (283.15 and 298.15) K and cyclo-octane with aromatic compounds at T = 298.15 K under atmospheric pressure were determined over the whole composition range. From the experimental results, the derived and excess properties (excess molar volumes, isentropic compression, excess molar isentropic compressibility, and refractive index deviations) at T = (283.15 and 298.15) K were calculated and satisfactorily fitted to the Redlich−Kister equation.

    Cited By

    This article is cited by 67 publications.

    1. Arbër Zeqiraj, Ariel Hernández, Naim Syla, Rilindë Raçi, Fisnik Aliaj. Densities and Sound Speeds of Binary Mixtures of Cyclohexane + Benzene (or Toluene, or Ethylbenzene or o-, m-, p-Xylene) within the Temperature Range of 293.15–333.15 K and Ambient Pressure: Experimental, Correlation, and Modeling Study. Journal of Chemical & Engineering Data 2023, Article ASAP.
    2. Tahir Arbneshi, Ardit Qerimi, Arbër Zeqiraj, Naim Syla, Fisnik Rr. Aliaj. Densities and Sound Speeds of Ternary Mixtures Methyl tert-Butyl Ether + Toluene + n-Hexane (or Cyclohexane) and Their Binary Subsystems at a Temperature of 298.15 K and under Ambient Pressure. Journal of Chemical & Engineering Data 2022, 67 (9) , 2098-2107. https://doi.org/10.1021/acs.jced.2c00093
    3. Dianne Jeanne Luning Prak. Binary Mixtures of Benzene and Cyclohexane with n-Alkyl Functional Groups up to 12 Carbons Long: Densities, Viscosities, and Speeds of Sound within the Temperature Range (288.15–333.15) K. Journal of Chemical & Engineering Data 2022, 67 (6) , 1378-1396. https://doi.org/10.1021/acs.jced.2c00048
    4. Gerald R. Van Hecke, Oliver W. M. Baldwin, Brandon C. Wada. Density, Viscosity, Refractive Index, Isobaric Specific Heat Capacity, Ultrasonic Velocity, Molar Volume, Isentropic Compressibility, Isothermal Compressibility, and Heat Capacity Ratio for Binary Mixtures of the Organic Liquids Ethylbenzene, Ethylcyclohexane, Pentylbenzene, and Pentylcyclohexane at 298.15 K and 0.1 MPa. Journal of Chemical & Engineering Data 2022, 67 (5) , 1037-1053. https://doi.org/10.1021/acs.jced.1c00649
    5. Dianne J. Luning Prak, Judith A. Harrison, Brian H. Morrow. Thermophysical Properties of Two-Component Mixtures of n-Nonylbenzene or 1,3,5-Triisopropylbenzene with n-Hexadecane or n-Dodecane at 0.1 MPa: Experimentally Measured Densities, Viscosities, and Speeds of Sound and Molecular Packing Modeled Using Molecular Dynamics Simulations. Journal of Chemical & Engineering Data 2021, 66 (3) , 1442-1456. https://doi.org/10.1021/acs.jced.0c01043
    6. Francisco E. Berger Bioucas, Maximilian Piszko, Manuel Kerscher, Patrick Preuster, Michael H. Rausch, Thomas M. Koller, Peter Wasserscheid, Andreas P. Fröba. Thermal Conductivity of Hydrocarbon Liquid Organic Hydrogen Carrier Systems: Measurement and Prediction. Journal of Chemical & Engineering Data 2020, 65 (10) , 5003-5017. https://doi.org/10.1021/acs.jced.0c00613
    7. Dianne J. Luning Prak, Jim S. Cowart, Gretchen R. Simms. Physical Properties of Binary Mixtures of n-Dodecane and Various Ten-Carbon Aromatic Compounds (2-Methyl-1-phenylpropane, 2-Methyl-2-phenylpropane, 2-Phenylbutane, and 1,3-Diethylbenzene): Densities, Viscosities, Speeds of Sound, Bulk Moduli, Surface Tensions, and Flash Points at T = (293.15–333.15) K and 0.1 MPa. Journal of Chemical & Engineering Data 2020, 65 (8) , 3941-3954. https://doi.org/10.1021/acs.jced.0c00280
    8. Achsah Rajendran Startha Christabel, Anantharaj Ramalingam, Danish John Paul Mark Reji, Shruthi Nagaraj, Siddharth Ravichandran. Liquid Densities and Excess Quantities for the Green Esterification Process. Journal of Chemical & Engineering Data 2020, 65 (2) , 446-476. https://doi.org/10.1021/acs.jced.9b00453
    9. Dianne J. Luning Prak, Annabel L. Mungan, Jim S. Cowart, Paul C. Trulove. Densities, Viscosities, Speeds of Sound, Bulk Moduli, Surface Tensions, and Flash Points of Binary Mixtures of Ethylcyclohexane or Methylcyclohexane with n-Dodecane or n-Hexadecane at 0.1 MPa. Journal of Chemical & Engineering Data 2018, 63 (5) , 1642-1656. https://doi.org/10.1021/acs.jced.8b00008
    10. Dianne J. Luning Prak, Sonya Ye, Margaret McLaughlin, Jim S. Cowart, Paul C. Trulove. Density, Viscosity, Speed of Sound, Bulk Modulus, Surface Tension, and Flash Point of Selected Ternary Mixtures of n-Butylcyclohexane + a Linear Alkane (n-Hexadcane or n-Dodecane) + an Aromatic Compound (Toluene, n-Butylbenzene, or n-Hexylbenzene). Journal of Chemical & Engineering Data 2017, 62 (10) , 3452-3472. https://doi.org/10.1021/acs.jced.7b00466
    11. Dianne J. Luning Prak, Bridget G. Lee, Jim S. Cowart, and Paul C. Trulove . Density, Viscosity, Speed of Sound, Bulk Modulus, Surface Tension, and Flash Point of Binary Mixtures of Butylbenzene + Linear Alkanes (n-Decane, n-Dodecane, n-Tetradecane, n-Hexadecane, or n-Heptadecane) at 0.1 MPa. Journal of Chemical & Engineering Data 2017, 62 (1) , 169-187. https://doi.org/10.1021/acs.jced.6b00542
    12. Dianne J. Luning Prak . Density, Viscosity, Speed of Sound, Bulk Modulus, Surface Tension, and Flash Point of Binary Mixtures of Butylcyclohexane with Toluene or n-Hexadecane. Journal of Chemical & Engineering Data 2016, 61 (10) , 3595-3606. https://doi.org/10.1021/acs.jced.6b00516
    13. Chuanfeng Zhang, Guangqian Li, Lei Yue, Yongsheng Guo, and Wenjun Fang . Densities, Viscosities, Refractive Indices, and Surface Tensions of Binary Mixtures of 2,2,4-Trimethylpentane with Several Alkylated Cyclohexanes from (293.15 to 343.15) K. Journal of Chemical & Engineering Data 2015, 60 (9) , 2541-2548. https://doi.org/10.1021/acs.jced.5b00105
    14. Dianne J. Luning Prak, Jim S. Cowart, Andrew M. McDaniel, and Paul C. Trulove . Density, Viscosity, Speed of Sound, Bulk Modulus, Surface Tension, and Flash Point of Binary Mixtures of n-Hexadecane + Ethylbenzene or + Toluene at (293.15 to 373.15) K and 0.1 MPa. Journal of Chemical & Engineering Data 2014, 59 (11) , 3571-3585. https://doi.org/10.1021/je500498m
    15. Mariana Teodorescu . Isothermal Vapor + Liquid Equilibrium and Thermophysical Properties for 1-Butyl-3-methylimidazolium Bromide + 1-Butanol Binary System. Industrial & Engineering Chemistry Research 2014, 53 (34) , 13522-13528. https://doi.org/10.1021/ie502247d
    16. Irene Domínguez, Noelia Calvar, Elena Gómez, and Ángeles Domínguez . Liquid–Liquid Extraction of Aromatic Compounds from Cycloalkanes Using 1-Butyl-3-methylimidazolium Methylsulfate Ionic Liquid. Journal of Chemical & Engineering Data 2013, 58 (2) , 189-196. https://doi.org/10.1021/je300826t
    17. Irene Domínguez, Emilio J. González, Raquel González, and Ángeles Domínguez . Extraction of Benzene from Aliphatic Compounds Using Commercial Ionic Liquids as Solvents: Study of the Liquid–Liquid Equilibrium at T = 298.15 K. Journal of Chemical & Engineering Data 2011, 56 (8) , 3376-3383. https://doi.org/10.1021/je200334e
    18. Subhash C. Bhatia, Ruman Rani, and Rachna Bhatia . Densities, Speeds of Sound, and Isentropic Compressibilities of Binary Mixtures of {Alkan-1-ols + 1,2-Dimethylbenzene, or 1,3-Dimethylbenzene, or 1,4-Dimethylbenzene, or Ethylbenzene} at (293.15, 303.15, and 313.15) K. Journal of Chemical & Engineering Data 2011, 56 (4) , 1675-1681. https://doi.org/10.1021/je100734t
    19. Emilio J. González, Noelia Calvar, Begoña González, and Ángeles Domínguez . Liquid Extraction of Benzene from Its Mixtures Using 1-Ethyl-3-methylimidazolium Ethylsulfate as a Solvent. Journal of Chemical & Engineering Data 2010, 55 (11) , 4931-4936. https://doi.org/10.1021/je100508y
    20. Begoña González, Emilio J. González, Noelia Calvar, I. Domínguez and J. Canosa. Density, Speed of Sound, and Refractive Index for Binary Mixtures Containing Cycloalkanes with o-Xylene, m-Xylene, p-Xylene, and Mesitylene at T = (298.15 and 313.15) K. Journal of Chemical & Engineering Data 2010, 55 (6) , 2294-2305. https://doi.org/10.1021/je901020a
    21. Ali Bemoni, Hossein Iloukhani, Khatereh Khanlarzadeh. PC-SAFT model and experimental explicating interaction of binary and ternary systems of 2-ethoxyethanol, methylcyclohexane and N-methylcyclohexylamine. Journal of Molecular Liquids 2023, 391 , 123208. https://doi.org/10.1016/j.molliq.2023.123208
    22. Fisnik Aliaj, Altin Gjevori, Artan Llozana, Naim Syla, Granita Zenuni, Tahir Arbneshi, Arbër Zeqiraj. Thermophysical Properties of the 2-Methylpropan-1-ol + Cyclohexane + Benzene Ternary System and Its Binary Subsystems Within the Temperature Range (293.15–333.15) K and Under Ambient Pressure. International Journal of Thermophysics 2023, 44 (7) https://doi.org/10.1007/s10765-023-03222-1
    23. Tomokazu Kinoshita, Shunta Nakamura, Makoto Harada, Taku Hasobe, Gaku Fukuhara. Control of intramolecular singlet fission in a pentacene dimer by hydrostatic pressure. Chemical Science 2023, 14 (12) , 3293-3301. https://doi.org/10.1039/D3SC00312D
    24. Anantharaj Ramalingam, Tamal Banerjee, Vivek Mariappan Santhi, Dhirendra Kumar Mishra, Danish John Paul Mark Reji, Shruthi Nagaraj. Investigation of molecular interaction, performance of green solvent in esterification of ethanol and acetic acid at 298.15 K and at 1 atm. Asia-Pacific Journal of Chemical Engineering 2023, 18 (2) https://doi.org/10.1002/apj.2875
    25. Mahesh Chutturi, Swetha Gillela, Sumit Manohar Yadav, Eko Setio Wibowo, Kapil Sihag, Sanjay Mavinkere Rangppa, Prakash Bhuyar, Suchart Siengchin, Petar Antov, Lubos Kristak, Arijit Sinha. A comprehensive review of the synthesis strategies, properties, and applications of transparent wood as a renewable and sustainable resource. Science of The Total Environment 2023, 864 , 161067. https://doi.org/10.1016/j.scitotenv.2022.161067
    26. Florinela Sirbu, Dana Dragoescu, Alexandr Shchamialiou. Optical and viscometric properties for 1-chlorohexane + toluene/tetradecane binary mixtures at temperatures from 298.15 K to 318.15 K and atmospheric pressure. Journal of Molecular Liquids 2021, 339 , 116171. https://doi.org/10.1016/j.molliq.2021.116171
    27. Arash Pakravesh, Fatemeh Zarei, Hosseinali Zarei. PρT parameterization of SAFT equation of state: developing a new parameterization method for equations of state. Fluid Phase Equilibria 2021, 538 , 113024. https://doi.org/10.1016/j.fluid.2021.113024
    28. Anantharaj Ramalingam, Achsah Rajendran Startha Christabel, Anoop Kishore Vatti, Danish John Paul Mark Reji, Shruthi Nagaraj. Experimental and theoretical investigation of molecular interaction and molecular polarity of organic solvent with ionic liquids and deep eutectic solvents at T (298.15–343.15) K and 1 atm. Asia-Pacific Journal of Chemical Engineering 2021, 16 (1) https://doi.org/10.1002/apj.2545
    29. G. Reza Vakili-Nezhaad, Majid Al-Wadhahi, Shamsa Al-Haddabi, Ali Vakilinejad, William E. Acree. Surface tension of binary organic mixtures based on a new dimensionless number. The Journal of Chemical Thermodynamics 2021, 152 , 106292. https://doi.org/10.1016/j.jct.2020.106292
    30. Muhammad R. Usman, Zubair Shahid, Muhammad S. Akram, Rabya Aslam. Densities and Thermal Expansion Coefficients of Pure Methylcyclohexane, 1-Methylcyclohexene, 4-Methylcyclohexene, 1-Methyl-1,4-cyclohexadiene, and Toluene and Binary Mixtures of Methylcyclohexane and Toluene at 283.15 K to 358.15 K and 1 atm. International Journal of Thermophysics 2020, 41 (4) https://doi.org/10.1007/s10765-020-2622-1
    31. Alexander P. Shchamialiou, Vladimir S. Samuilov, Fares M. Mosbakh, Nadejda V. Holubeva, Aleh G. Paddubski, Dana Drăgoescu, Florinela Sîrbu. Densities, speed of sound, and derived thermodynamic properties of toluene, tetradecane, and 1-chlorohexane in the compressed liquid region. Fluid Phase Equilibria 2020, 507 , 112427. https://doi.org/10.1016/j.fluid.2019.112427
    32. Dana Dragoescu, Florinela Sirbu, Alexandr Shchamialiou. Thermodynamic properties for binary mixtures of 1-chlorohexane + some hydrocarbons at different temperatures and atmospheric pressure. Journal of Molecular Liquids 2019, 294 , 111510. https://doi.org/10.1016/j.molliq.2019.111510
    33. Fariborz Shaahmadi, Bahram Hashemi Shahraki, Asadollah Farhadi. Liquid–liquid extraction of toluene from its mixtures with aliphatic hydrocarbons using an ionic liquid as the solvent. Separation Science and Technology 2018, 53 (15) , 2409-2417. https://doi.org/10.1080/01496395.2018.1449859
    34. Luís J. Fernández, Juan Ortega, Jaime Wisniak. A rigorous method to evaluate the consistency of experimental data in phase equilibria. Application to VLE and VLLE. AIChE Journal 2017, 63 (11) , 5125-5148. https://doi.org/10.1002/aic.15876
    35. Andrzej Burakowski, Jacek Gliński. Dimerization Constants from Acoustic Measurements: Solutions of Benzene, Cyclohexylamine and Aniline in Cyclohexane. Journal of Solution Chemistry 2017, 46 (7) , 1501-1513. https://doi.org/10.1007/s10953-017-0656-1
    36. Christian Wohlfarth. Refractive index of binary liquid mixture of ethylbenzene and cyclooctane. 2017, 1135-1135. https://doi.org/10.1007/978-3-662-49236-9_1017
    37. Christian Wohlfarth. Refractive index of benzene. 2017, 229-230. https://doi.org/10.1007/978-3-662-49236-9_216
    38. Christian Wohlfarth. Refractive index of cyclohexane. 2017, 245-246. https://doi.org/10.1007/978-3-662-49236-9_231
    39. Christian Wohlfarth. Refractive index of toluene. 2017, 289-289. https://doi.org/10.1007/978-3-662-49236-9_273
    40. Christian Wohlfarth. Refractive index of methylcyclohexane. 2017, 303-303. https://doi.org/10.1007/978-3-662-49236-9_287
    41. Christian Wohlfarth. Refractive index of ethylbenzene. 2017, 325-325. https://doi.org/10.1007/978-3-662-49236-9_309
    42. Christian Wohlfarth. Refractive index of binary liquid mixture of benzene and cyclohexane. 2017, 1024-1024. https://doi.org/10.1007/978-3-662-49236-9_910
    43. Christian Wohlfarth. Refractive index of binary liquid mixture of benzene and methylcyclohexane. 2017, 1030-1030. https://doi.org/10.1007/978-3-662-49236-9_916
    44. Christian Wohlfarth. Refractive index of binary liquid mixture of benzene and cyclooctane. 2017, 1034-1034. https://doi.org/10.1007/978-3-662-49236-9_920
    45. Christian Wohlfarth. Refractive index of binary liquid mixture of cyclohexane and toluene. 2017, 1052-1053. https://doi.org/10.1007/978-3-662-49236-9_938
    46. Christian Wohlfarth. Refractive index of binary liquid mixture of cyclohexane and ethylbenzene. 2017, 1057-1057. https://doi.org/10.1007/978-3-662-49236-9_942
    47. Christian Wohlfarth. Refractive index of binary liquid mixture of toluene and methylcyclohexane. 2017, 1093-1093. https://doi.org/10.1007/978-3-662-49236-9_977
    48. Christian Wohlfarth. Refractive index of binary liquid mixture of toluene and cyclooctane. 2017, 1095-1095. https://doi.org/10.1007/978-3-662-49236-9_979
    49. Christian Wohlfarth. Refractive index of binary liquid mixture of methylcyclohexane and ethylbenzene. 2017, 1112-1112. https://doi.org/10.1007/978-3-662-49236-9_995
    50. Mariana Teodorescu. Isothermal (vapour+liquid) equilibrium and thermophysical properties for (1-butyl-3-methylimidazolium iodide+1-butanol) binary system. The Journal of Chemical Thermodynamics 2015, 87 , 58-64. https://doi.org/10.1016/j.jct.2015.03.023
    51. M. Zaoui-Djelloul-Daouadji, L. Bendiaf, I. Bahadur, A. Negadi, D. Ramjugernath, E.E. Ebenso, L. Negadi. Volumetric and acoustic properties of binary systems (furfural or furfuryl alcohol+toluene) and (furfuryl alcohol+ethanol) at different temperatures. Thermochimica Acta 2015, 611 , 47-55. https://doi.org/10.1016/j.tca.2015.04.032
    52. Irene Domínguez, Emilio J. González, José Palomar, Ángeles Domínguez. Phase behavior of ternary mixtures {aliphatic hydrocarbon+aromatic hydrocarbon+ionic liquid}: Experimental LLE data and their modeling by COSMO-RS. The Journal of Chemical Thermodynamics 2014, 77 , 222-229. https://doi.org/10.1016/j.jct.2013.11.020
    53. Irene Domínguez, Emilio J. González, Ángeles Domínguez. Liquid extraction of aromatic/cyclic aliphatic hydrocarbon mixtures using ionic liquids as solvent: Literature review and new experimental LLE data. Fuel Processing Technology 2014, 125 , 207-216. https://doi.org/10.1016/j.fuproc.2014.04.001
    54. Elena Gómez, Irene Domínguez, Noelia Calvar, Jose Palomar, Ángeles Domínguez. Experimental data, correlation and prediction of the extraction of benzene from cyclic hydrocarbons using [Epy][ESO4] ionic liquid. Fluid Phase Equilibria 2014, 361 , 83-92. https://doi.org/10.1016/j.fluid.2013.10.033
    55. Noelia Calvar, Irene Domínguez, Elena Gómez, Jose Palomar, Ángeles Domínguez. Evaluation of ionic liquids as solvent for aromatic extraction: Experimental, correlation and COSMO-RS predictions. The Journal of Chemical Thermodynamics 2013, 67 , 5-12. https://doi.org/10.1016/j.jct.2013.07.011
    56. 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
    57. Nandhibatla V. Sastry, Sunil R. Patel, Saurabh S. Soni. Excess molar volumes, excess isentropic compressibilities, excess viscosities, relative permittivity and molar polarization deviations for methyl acetate+, ethyl acetate+, butyl acetate+, isoamyl acetate+, methyl propionate+, ethyl propionate+, ethyl butyrate+, methyl methacrylate+, ethyl methacrylate+, and butyl methacrylate+cyclohexane at T=298.15 and 303.15K. Journal of Molecular Liquids 2013, 183 , 102-112. https://doi.org/10.1016/j.molliq.2013.04.015
    58. Yindi Zhang, Hong Dong, Yan Yue, Chuan Wu. Effect of temperature and composition on the density, refractive index, and excess quantities of binary mixtures of 2,4,6,8-tetramethyl-2,4,6,8-tetraethenylcyclotetrasiloxane with aromatic hydrocarbons. The Journal of Chemical Thermodynamics 2013, 57 , 114-130. https://doi.org/10.1016/j.jct.2012.08.010
    59. Sandra Corderí, Emilio J. González, Noelia Calvar, Ángeles Domínguez. Application of [HMim][NTf2], [HMim][TfO] and [BMim][TfO] ionic liquids on the extraction of toluene from alkanes: Effect of the anion and the alkyl chain length of the cation on the LLE. The Journal of Chemical Thermodynamics 2012, 53 , 60-66. https://doi.org/10.1016/j.jct.2012.04.015
    60. Naved I. Malek, Sushma P. Ijardar, Shantilal B. Oswal. Volumetric and acoustic properties of binary mixtures of cyclohexane + benzene and + benzaldehyde at (293.15–323.15) K. Thermochimica Acta 2012, 539 , 71-83. https://doi.org/10.1016/j.tca.2012.04.002
    61. Raquel G. Seoane, Elena Gómez, Emilio J. González, Ángeles Domínguez. (Liquid + liquid) equilibria for the ternary mixtures (alkane + toluene + ionic liquid) at T= 298.15 K: Influence of the anion on the phase equilibria. The Journal of Chemical Thermodynamics 2012, 47 , 402-407. https://doi.org/10.1016/j.jct.2011.11.027
    62. S. Corderí, N. Calvar, E. Gómez, A. Domínguez. Capacity of ionic liquids [EMim][NTf2] and [EMpy][NTf2] for extraction of toluene from mixtures with alkanes: Comparative study of the effect of the cation. Fluid Phase Equilibria 2012, 315 , 46-52. https://doi.org/10.1016/j.fluid.2011.11.016
    63. Isabel M.S. Lampreia, Ângela F.S. Santos, Maria-Luisa C.J. Moita, Andreia O. Figueiras, João Carlos R. Reis. Ultrasound speeds and molar isentropic compressions of aqueous 1-propoxypropan-2-ol mixtures from T=(283.15 to 303.15)K. Influence of solute structure. The Journal of Chemical Thermodynamics 2012, 45 (1) , 75-82. https://doi.org/10.1016/j.jct.2011.09.008
    64. Noelia Calvar, Irene Domínguez, Elena Gómez, Ángeles Domínguez. Separation of binary mixtures aromatic+aliphatic using ionic liquids: Influence of the structure of the ionic liquid, aromatic and aliphatic. Chemical Engineering Journal 2011, 175 , 213-221. https://doi.org/10.1016/j.cej.2011.09.097
    65. Emilio J. González, Noelia Calvar, Irene Dominguez, Ángeles Domínguez. (Liquid+liquid) equilibrium data for the ternary systems (cycloalkane+ethylbenzene+1-ethyl-3-methylimidazolim ethylsulfate) at T=298.15K and atmospheric pressure. The Journal of Chemical Thermodynamics 2011, 43 (5) , 725-730. https://doi.org/10.1016/j.jct.2010.12.014
    66. Emilio J. González, Noelia Calvar, Elena Gómez, Ángeles Domínguez. Application of [EMim][ESO4] ionic liquid as solvent in the extraction of toluene from cycloalkanes: Study of liquid–liquid equilibria at T=298.15K. Fluid Phase Equilibria 2011, 303 (2) , 174-179. https://doi.org/10.1016/j.fluid.2011.01.021
    67. Emilio J. González, Irene Domínguez, Begoña González, José Canosa. Liquid–liquid equilibria for ternary systems of {cyclohexane+aromatic compounds+1-ethyl-3-methylpyridinium ethylsulfate}. Fluid Phase Equilibria 2010, 296 (2) , 213-218. https://doi.org/10.1016/j.fluid.2010.05.009

    Pair your accounts.

    Export articles to Mendeley

    Get article recommendations from ACS based on references in your Mendeley library.

    Pair your accounts.

    Export articles to Mendeley

    Get article recommendations from ACS based on references in your Mendeley library.

    You’ve supercharged your research process with ACS and Mendeley!

    STEP 1:
    Click to create an ACS ID

    Please note: If you switch to a different device, you may be asked to login again with only your ACS ID.

    Please note: If you switch to a different device, you may be asked to login again with only your ACS ID.

    Please note: If you switch to a different device, you may be asked to login again with only your ACS ID.

    MENDELEY PAIRING EXPIRED
    Your Mendeley pairing has expired. Please reconnect