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  • Source: Fluid Phase Equilibria. Unidade: IQ

    Subjects: LÍQUIDOS IÔNICOS, CISALHAMENTO, ALTA TEMPERATURA

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    • ABNT

      BERNARDINO, Kalil e RIBEIRO, Mauro Carlos Costa. Pressure and shear rate effects on viscosity and structure of imidazolium-based ionic liquids. Fluid Phase Equilibria, v. 554, p. 1-11 art. 113345, 2022Tradução . . Disponível em: https://doi.org/10.1016/j.fluid.2021.113345. Acesso em: 05 jun. 2024.
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      Bernardino, K., & Ribeiro, M. C. C. (2022). Pressure and shear rate effects on viscosity and structure of imidazolium-based ionic liquids. Fluid Phase Equilibria, 554, 1-11 art. 113345. doi:10.1016/j.fluid.2021.113345
    • NLM

      Bernardino K, Ribeiro MCC. Pressure and shear rate effects on viscosity and structure of imidazolium-based ionic liquids [Internet]. Fluid Phase Equilibria. 2022 ; 554 1-11 art. 113345.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2021.113345
    • Vancouver

      Bernardino K, Ribeiro MCC. Pressure and shear rate effects on viscosity and structure of imidazolium-based ionic liquids [Internet]. Fluid Phase Equilibria. 2022 ; 554 1-11 art. 113345.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2021.113345
  • Source: Fluid Phase Equilibria. Unidade: EEL

    Assunto: HIDROCARBONETOS

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    • ABNT

      CASTILLO, Pedro Felipe Arce et al. Sequestration of light hydrocarbons in Ionic Liquids at high-pressures: Consistency and thermodynamic modeling. Fluid Phase Equilibria, v. 546, 2021Tradução . . Disponível em: https://doi.org/10.1016/j.fluid.2021.113119. Acesso em: 05 jun. 2024.
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      Castillo, P. F. A., Igarashi, E. M. de S., Vásquez, D. M., Robles, P., & Freire, N. V. (2021). Sequestration of light hydrocarbons in Ionic Liquids at high-pressures: Consistency and thermodynamic modeling. Fluid Phase Equilibria, 546. doi:10.1016/j.fluid.2021.113119
    • NLM

      Castillo PFA, Igarashi EM de S, Vásquez DM, Robles P, Freire NV. Sequestration of light hydrocarbons in Ionic Liquids at high-pressures: Consistency and thermodynamic modeling [Internet]. Fluid Phase Equilibria. 2021 ; 546[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2021.113119
    • Vancouver

      Castillo PFA, Igarashi EM de S, Vásquez DM, Robles P, Freire NV. Sequestration of light hydrocarbons in Ionic Liquids at high-pressures: Consistency and thermodynamic modeling [Internet]. Fluid Phase Equilibria. 2021 ; 546[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2021.113119
  • Source: Fluid Phase Equilibria. Unidade: EP

    Subjects: EQUILÍBRIO SÓLIDO-LÍQUIDO, BIODIESEL

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      ROBUSTILLO FUENTES, Maria Dolores e BESSA, Larissa Castelo Branco Almeida e PESSÔA FILHO, Pedro de Alcântara. Solid-liquid equilibrium of binary and ternary systems formed by ethyl laurate, ethyl palmitate and decylbenzene. Fluid Phase Equilibria, v. 530, p. 1-13, 2021Tradução . . Disponível em: https://doi.org/10.1016/j.fluid.2020.112874. Acesso em: 05 jun. 2024.
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      Robustillo Fuentes, M. D., Bessa, L. C. B. A., & Pessôa Filho, P. de A. (2021). Solid-liquid equilibrium of binary and ternary systems formed by ethyl laurate, ethyl palmitate and decylbenzene. Fluid Phase Equilibria, 530, 1-13. doi:10.1016/j.fluid.2020.112874
    • NLM

      Robustillo Fuentes MD, Bessa LCBA, Pessôa Filho P de A. Solid-liquid equilibrium of binary and ternary systems formed by ethyl laurate, ethyl palmitate and decylbenzene [Internet]. Fluid Phase Equilibria. 2021 ; 530 1-13.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2020.112874
    • Vancouver

      Robustillo Fuentes MD, Bessa LCBA, Pessôa Filho P de A. Solid-liquid equilibrium of binary and ternary systems formed by ethyl laurate, ethyl palmitate and decylbenzene [Internet]. Fluid Phase Equilibria. 2021 ; 530 1-13.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2020.112874
  • Source: Fluid Phase Equilibria. Unidade: FZEA

    Subjects: EQUILÍBRIO LÍQUIDO-LÍQUIDO, ÓLEOS ESSENCIAIS, SOLVENTE

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    • ABNT

      GONÇALVES, Daniel et al. Liquid-liquid equilibrium of rosemary model essential oil (α-pinene + eucalyptol + camphor) and solvent (ethanol + water) at room conditions. Fluid Phase Equilibria, v. 521, p. 1–12, 2020Tradução . . Disponível em: https://doi.org/10.1016/j.fluid.2020.112730. Acesso em: 05 jun. 2024.
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      Gonçalves, D., Panzarin, C., Gonçalves, C. B., & Rodrigues, C. E. da C. (2020). Liquid-liquid equilibrium of rosemary model essential oil (α-pinene + eucalyptol + camphor) and solvent (ethanol + water) at room conditions. Fluid Phase Equilibria, 521, 1–12. doi:10.1016/j.fluid.2020.112730
    • NLM

      Gonçalves D, Panzarin C, Gonçalves CB, Rodrigues CE da C. Liquid-liquid equilibrium of rosemary model essential oil (α-pinene + eucalyptol + camphor) and solvent (ethanol + water) at room conditions [Internet]. Fluid Phase Equilibria. 2020 ; 521 1–12.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2020.112730
    • Vancouver

      Gonçalves D, Panzarin C, Gonçalves CB, Rodrigues CE da C. Liquid-liquid equilibrium of rosemary model essential oil (α-pinene + eucalyptol + camphor) and solvent (ethanol + water) at room conditions [Internet]. Fluid Phase Equilibria. 2020 ; 521 1–12.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2020.112730
  • Source: Fluid Phase Equilibria. Unidade: EP

    Subjects: METANO, DIÓXIDO DE CARBONO, CALORÍMETROS, EQUILÍBRIO QUÍMICO

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      MENEZES, Davi Eber Sanchez de e PESSÔA FILHO, Pedro de Alcântara e ROBUSTILLO FUENTES, Maria Dolores. Phase equilibrium for methane, ethane and carbon dioxide hydrates at pressures up to 100 MPa through high-pressure microcalorimetry: experimental data, analysis and modeling. Fluid Phase Equilibria, v. 518, p. 1-16, 2020Tradução . . Disponível em: https://doi.org/10.1016/j.fluid.2020.112590. Acesso em: 05 jun. 2024.
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      Menezes, D. E. S. de, Pessôa Filho, P. de A., & Robustillo Fuentes, M. D. (2020). Phase equilibrium for methane, ethane and carbon dioxide hydrates at pressures up to 100 MPa through high-pressure microcalorimetry: experimental data, analysis and modeling. Fluid Phase Equilibria, 518, 1-16. doi:10.1016/j.fluid.2020.112590
    • NLM

      Menezes DES de, Pessôa Filho P de A, Robustillo Fuentes MD. Phase equilibrium for methane, ethane and carbon dioxide hydrates at pressures up to 100 MPa through high-pressure microcalorimetry: experimental data, analysis and modeling [Internet]. Fluid Phase Equilibria. 2020 ; 518 1-16.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2020.112590
    • Vancouver

      Menezes DES de, Pessôa Filho P de A, Robustillo Fuentes MD. Phase equilibrium for methane, ethane and carbon dioxide hydrates at pressures up to 100 MPa through high-pressure microcalorimetry: experimental data, analysis and modeling [Internet]. Fluid Phase Equilibria. 2020 ; 518 1-16.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2020.112590
  • Source: Fluid Phase Equilibria. Unidade: EP

    Subjects: PROTEÍNAS, CRISTALIZAÇÃO, SAIS

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      HIRATA, Gisele Atsuko Medeiros e PESSÔA FILHO, Pedro de Alcântara e MIRANDA, Everson Alves. Solid-liquid equilibrium for proteins in solutions with an unconventional salt (ammonium carbamate): phase behavior analysis. Fluid Phase Equilibria, v. 443, p. 1-8, 2017Tradução . . Disponível em: https://doi.org/10.1016/j.fluid.2017.03.031. Acesso em: 05 jun. 2024.
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      Hirata, G. A. M., Pessôa Filho, P. de A., & Miranda, E. A. (2017). Solid-liquid equilibrium for proteins in solutions with an unconventional salt (ammonium carbamate): phase behavior analysis. Fluid Phase Equilibria, 443, 1-8. doi:10.1016/j.fluid.2017.03.031
    • NLM

      Hirata GAM, Pessôa Filho P de A, Miranda EA. Solid-liquid equilibrium for proteins in solutions with an unconventional salt (ammonium carbamate): phase behavior analysis [Internet]. Fluid Phase Equilibria. 2017 ; 443 1-8.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2017.03.031
    • Vancouver

      Hirata GAM, Pessôa Filho P de A, Miranda EA. Solid-liquid equilibrium for proteins in solutions with an unconventional salt (ammonium carbamate): phase behavior analysis [Internet]. Fluid Phase Equilibria. 2017 ; 443 1-8.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2017.03.031
  • Source: Fluid Phase Equilibria. Unidade: IQ

    Subjects: SOLVATAÇÃO, LÍQUIDOS IÔNICOS

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      JESUS, Jéssica Carol de et al. Solvation by aqueous solutions of imidazole-based ionic liquids: 2- A comparison between alkyl and alkoxy side-chains. Fluid Phase Equilibria, v. 451, p. 48-56, 2017Tradução . . Disponível em: https://doi.org/10.1016/j.fluid.2017.08.004. Acesso em: 05 jun. 2024.
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      Jesus, J. C. de, Pires, P. A. R., Scharf, M., & El Seoud, O. A. (2017). Solvation by aqueous solutions of imidazole-based ionic liquids: 2- A comparison between alkyl and alkoxy side-chains. Fluid Phase Equilibria, 451, 48-56. doi:10.1016/j.fluid.2017.08.004
    • NLM

      Jesus JC de, Pires PAR, Scharf M, El Seoud OA. Solvation by aqueous solutions of imidazole-based ionic liquids: 2- A comparison between alkyl and alkoxy side-chains [Internet]. Fluid Phase Equilibria. 2017 ; 451 48-56.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2017.08.004
    • Vancouver

      Jesus JC de, Pires PAR, Scharf M, El Seoud OA. Solvation by aqueous solutions of imidazole-based ionic liquids: 2- A comparison between alkyl and alkoxy side-chains [Internet]. Fluid Phase Equilibria. 2017 ; 451 48-56.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2017.08.004
  • Source: Fluid Phase Equilibria. Unidade: EP

    Subjects: EQUILÍBRIO SÓLIDO-LÍQUIDO, PROTEÍNAS, PRECIPITAÇÃO, SOLUBILIDADE

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      PINHEIRO, Marina Julio et al. Solubility of lysozyme in aqueous solution containing ethanol or acetone: unexpected dependence on the initial protein concentration. Fluid Phase Equilibria, v. 429, p. 9-13, 2016Tradução . . Disponível em: https://doi.org/10.1016/j.fluid.2016.08.024. Acesso em: 05 jun. 2024.
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      Pinheiro, M. J., Freitas, S., Miranda, E. A., & Pessôa Filho, P. de A. (2016). Solubility of lysozyme in aqueous solution containing ethanol or acetone: unexpected dependence on the initial protein concentration. Fluid Phase Equilibria, 429, 9-13. doi:10.1016/j.fluid.2016.08.024
    • NLM

      Pinheiro MJ, Freitas S, Miranda EA, Pessôa Filho P de A. Solubility of lysozyme in aqueous solution containing ethanol or acetone: unexpected dependence on the initial protein concentration [Internet]. Fluid Phase Equilibria. 2016 ; 429 9-13.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2016.08.024
    • Vancouver

      Pinheiro MJ, Freitas S, Miranda EA, Pessôa Filho P de A. Solubility of lysozyme in aqueous solution containing ethanol or acetone: unexpected dependence on the initial protein concentration [Internet]. Fluid Phase Equilibria. 2016 ; 429 9-13.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2016.08.024
  • Source: Fluid Phase Equilibria. Unidade: EP

    Subjects: EQUILÍBRIO SÓLIDO-LÍQUIDO, BIODIESEL

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      ROBUSTILLO FUENTES, Maria Dolores e MEIRELLES, Antonio José de Almeida e PESSÔA FILHO, Pedro de Alcântara. Solid-liquid equilibrium of binary and ternary systems formed by ethyl laurate, ethyl palmitate and dodecylcylohexane: experimental data and thermodynamic modeling. Fluid Phase Equilibria, v. 409, p. 157-170, 2016Tradução . . Disponível em: https://doi.org/10.1016/j.fluid.2015.09.038. Acesso em: 05 jun. 2024.
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      Robustillo Fuentes, M. D., Meirelles, A. J. de A., & Pessôa Filho, P. de A. (2016). Solid-liquid equilibrium of binary and ternary systems formed by ethyl laurate, ethyl palmitate and dodecylcylohexane: experimental data and thermodynamic modeling. Fluid Phase Equilibria, 409, 157-170. doi:10.1016/j.fluid.2015.09.038
    • NLM

      Robustillo Fuentes MD, Meirelles AJ de A, Pessôa Filho P de A. Solid-liquid equilibrium of binary and ternary systems formed by ethyl laurate, ethyl palmitate and dodecylcylohexane: experimental data and thermodynamic modeling [Internet]. Fluid Phase Equilibria. 2016 ; 409 157-170.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2015.09.038
    • Vancouver

      Robustillo Fuentes MD, Meirelles AJ de A, Pessôa Filho P de A. Solid-liquid equilibrium of binary and ternary systems formed by ethyl laurate, ethyl palmitate and dodecylcylohexane: experimental data and thermodynamic modeling [Internet]. Fluid Phase Equilibria. 2016 ; 409 157-170.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2015.09.038
  • Source: Fluid Phase Equilibria. Unidades: EP, IPEN

    Subjects: EQUILÍBRIO SÓLIDO-LÍQUIDO, BIODIESEL

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      ROBUSTILLO FUENTES, Maria Dolores et al. Solid–liquid equilibrium of binary and ternary systems formed by ethyl laurate, ethyl palmitate and n-decane: experimental data and thermodynamic modeling. Fluid Phase Equilibria, v. 426, p. 83-94, 2016Tradução . . Disponível em: https://doi.org/10.1016/j.fluid.2016.01.044. Acesso em: 05 jun. 2024.
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      Robustillo Fuentes, M. D., Parra, D. F., Meirelles, A. J. de A., & Pessôa Filho, P. de A. (2016). Solid–liquid equilibrium of binary and ternary systems formed by ethyl laurate, ethyl palmitate and n-decane: experimental data and thermodynamic modeling. Fluid Phase Equilibria, 426, 83-94. doi:10.1016/j.fluid.2016.01.044
    • NLM

      Robustillo Fuentes MD, Parra DF, Meirelles AJ de A, Pessôa Filho P de A. Solid–liquid equilibrium of binary and ternary systems formed by ethyl laurate, ethyl palmitate and n-decane: experimental data and thermodynamic modeling [Internet]. Fluid Phase Equilibria. 2016 ; 426 83-94.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2016.01.044
    • Vancouver

      Robustillo Fuentes MD, Parra DF, Meirelles AJ de A, Pessôa Filho P de A. Solid–liquid equilibrium of binary and ternary systems formed by ethyl laurate, ethyl palmitate and n-decane: experimental data and thermodynamic modeling [Internet]. Fluid Phase Equilibria. 2016 ; 426 83-94.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2016.01.044
  • Source: Fluid Phase Equilibria. Unidade: FCF

    Subjects: ANTIBIÓTICOS, EXTRAÇÃO DE LÍQUIDOS

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      SILVA, Marcela de Siqueira Cardoso et al. Dextran sulfate/Triton X two-phase micellar systems as an alternative first purification step for clavulanic acid. Fluid Phase Equilibria, v. 399, p. 80-86, 2015Tradução . . Disponível em: https://doi.org/10.1016/j.fluid.2015.04.026. Acesso em: 05 jun. 2024.
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      Silva, M. de S. C., Ebinuma, V. de C. S., Lopes, A. M., & Rangel-Yagui, C. de O. (2015). Dextran sulfate/Triton X two-phase micellar systems as an alternative first purification step for clavulanic acid. Fluid Phase Equilibria, 399, 80-86. doi:10.1016/j.fluid.2015.04.026
    • NLM

      Silva M de SC, Ebinuma V de CS, Lopes AM, Rangel-Yagui C de O. Dextran sulfate/Triton X two-phase micellar systems as an alternative first purification step for clavulanic acid [Internet]. Fluid Phase Equilibria. 2015 ; 399 80-86.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2015.04.026
    • Vancouver

      Silva M de SC, Ebinuma V de CS, Lopes AM, Rangel-Yagui C de O. Dextran sulfate/Triton X two-phase micellar systems as an alternative first purification step for clavulanic acid [Internet]. Fluid Phase Equilibria. 2015 ; 399 80-86.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2015.04.026
  • Source: Fluid Phase Equilibria. Unidade: FZEA

    Subjects: ÓLEOS ESSENCIAIS, HIDROCARBONETOS, EQUILÍBRIO LÍQUIDO-LÍQUIDO

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      GONCALVES, Daniel et al. Fractionation of orange essential oil using liquid–liquid extraction: equilibrium data for model and real systems at 298.2 K. Fluid Phase Equilibria, v. 399, p. 87-97, 2015Tradução . . Disponível em: https://doi.org/10.1016/j.fluid.2015.04.022. Acesso em: 05 jun. 2024.
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      Goncalves, D., Teschke, M. E. E., Koshima, C. C., Gonçalves, C. B., Oliveira, A. L. de, & Rodrigues, C. E. da C. (2015). Fractionation of orange essential oil using liquid–liquid extraction: equilibrium data for model and real systems at 298.2 K. Fluid Phase Equilibria, 399, 87-97. doi:10.1016/j.fluid.2015.04.022
    • NLM

      Goncalves D, Teschke MEE, Koshima CC, Gonçalves CB, Oliveira AL de, Rodrigues CE da C. Fractionation of orange essential oil using liquid–liquid extraction: equilibrium data for model and real systems at 298.2 K. [Internet]. Fluid Phase Equilibria. 2015 ; 399 87-97.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2015.04.022
    • Vancouver

      Goncalves D, Teschke MEE, Koshima CC, Gonçalves CB, Oliveira AL de, Rodrigues CE da C. Fractionation of orange essential oil using liquid–liquid extraction: equilibrium data for model and real systems at 298.2 K. [Internet]. Fluid Phase Equilibria. 2015 ; 399 87-97.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2015.04.022
  • Source: Fluid Phase Equilibria. Unidade: EP

    Subjects: EQUILÍBRIO SÓLIDO-LÍQUIDO, BIODIESEL

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      ROBUSTILLO FUENTES, Maria Dolores et al. Solid–liquid equilibrium in ternary mixtures of ethyl laurate, ethyl palmitate and ethyl myristate. Fluid Phase Equilibria, v. 361, n. Ja 2014, p. 188-199, 2014Tradução . . Disponível em: https://doi.org/10.1016/j.fluid.2013.10.024. Acesso em: 05 jun. 2024.
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      Robustillo Fuentes, M. D., Barbosa, D. F., Meirelles, A. J. de A., & Pessôa Filho, P. de A. (2014). Solid–liquid equilibrium in ternary mixtures of ethyl laurate, ethyl palmitate and ethyl myristate. Fluid Phase Equilibria, 361( Ja 2014), 188-199. doi:10.1016/j.fluid.2013.10.024
    • NLM

      Robustillo Fuentes MD, Barbosa DF, Meirelles AJ de A, Pessôa Filho P de A. Solid–liquid equilibrium in ternary mixtures of ethyl laurate, ethyl palmitate and ethyl myristate [Internet]. Fluid Phase Equilibria. 2014 ; 361( Ja 2014): 188-199.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2013.10.024
    • Vancouver

      Robustillo Fuentes MD, Barbosa DF, Meirelles AJ de A, Pessôa Filho P de A. Solid–liquid equilibrium in ternary mixtures of ethyl laurate, ethyl palmitate and ethyl myristate [Internet]. Fluid Phase Equilibria. 2014 ; 361( Ja 2014): 188-199.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2013.10.024
  • Source: Fluid Phase Equilibria. Unidade: EP

    Subjects: EQUILÍBRIO SÓLIDO-LÍQUIDO, BIODIESEL

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      ROBUSTILLO FUENTES, Maria Dolores et al. Solid–liquid equilibrium of binary and ternary mixtures containing ethyl oleate, ethyl myristate and ethyl stearate. Fluid Phase Equilibria, v. 370, p. 85-94, 2014Tradução . . Disponível em: https://doi.org/10.1016/j.fluid.2014.03.001. Acesso em: 05 jun. 2024.
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      Robustillo Fuentes, M. D., Barbosa, D. F., Meirelles, A. J. de A., & Pessôa Filho, P. de A. (2014). Solid–liquid equilibrium of binary and ternary mixtures containing ethyl oleate, ethyl myristate and ethyl stearate. Fluid Phase Equilibria, 370, 85-94. doi:10.1016/j.fluid.2014.03.001
    • NLM

      Robustillo Fuentes MD, Barbosa DF, Meirelles AJ de A, Pessôa Filho P de A. Solid–liquid equilibrium of binary and ternary mixtures containing ethyl oleate, ethyl myristate and ethyl stearate [Internet]. Fluid Phase Equilibria. 2014 ; 370 85-94.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2014.03.001
    • Vancouver

      Robustillo Fuentes MD, Barbosa DF, Meirelles AJ de A, Pessôa Filho P de A. Solid–liquid equilibrium of binary and ternary mixtures containing ethyl oleate, ethyl myristate and ethyl stearate [Internet]. Fluid Phase Equilibria. 2014 ; 370 85-94.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2014.03.001
  • Source: Fluid Phase Equilibria. Unidade: FCF

    Subjects: SURFACTANTES, ELETRÓLITOS

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      SANTOS-EBINUMA, Valéria de Carvalho et al. Behavior of Triton X-114 cloud point in the presence of inorganic electrolytes. Fluid Phase Equilibria, v. 360, p. 435-438, 2013Tradução . . Disponível em: https://doi.org/10.1016/j.fluid.2013.09.053. Acesso em: 05 jun. 2024.
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      Santos-Ebinuma, V. de C., Lopes, A. M., Converti, A., Pessoa Junior, A., & Rangel-Yagui, C. de O. (2013). Behavior of Triton X-114 cloud point in the presence of inorganic electrolytes. Fluid Phase Equilibria, 360, 435-438. doi:10.1016/j.fluid.2013.09.053
    • NLM

      Santos-Ebinuma V de C, Lopes AM, Converti A, Pessoa Junior A, Rangel-Yagui C de O. Behavior of Triton X-114 cloud point in the presence of inorganic electrolytes [Internet]. Fluid Phase Equilibria. 2013 ; 360 435-438.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2013.09.053
    • Vancouver

      Santos-Ebinuma V de C, Lopes AM, Converti A, Pessoa Junior A, Rangel-Yagui C de O. Behavior of Triton X-114 cloud point in the presence of inorganic electrolytes [Internet]. Fluid Phase Equilibria. 2013 ; 360 435-438.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2013.09.053
  • Source: Fluid Phase Equilibria. Unidade: EP

    Subjects: EQUILÍBRIO SÓLIDO-LÍQUIDO, EQUILÍBRIO QUÍMICO

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      BARBOSA, Deise Fernanda e PESSÔA FILHO, Pedro de Alcântara. On the description of the liquidus line of systems presenting peritectic reactions. Fluid Phase Equilibria, v. 337, n. Ja 2013, p. 379-383, 2013Tradução . . Disponível em: https://doi.org/10.1016/j.fluid.2012.08.033. Acesso em: 05 jun. 2024.
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      Barbosa, D. F., & Pessôa Filho, P. de A. (2013). On the description of the liquidus line of systems presenting peritectic reactions. Fluid Phase Equilibria, 337( Ja 2013), 379-383. doi:10.1016/j.fluid.2012.08.033
    • NLM

      Barbosa DF, Pessôa Filho P de A. On the description of the liquidus line of systems presenting peritectic reactions [Internet]. Fluid Phase Equilibria. 2013 ; 337( Ja 2013): 379-383.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2012.08.033
    • Vancouver

      Barbosa DF, Pessôa Filho P de A. On the description of the liquidus line of systems presenting peritectic reactions [Internet]. Fluid Phase Equilibria. 2013 ; 337( Ja 2013): 379-383.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2012.08.033
  • Source: Fluid Phase Equilibria. Unidade: EP

    Subjects: EQUILÍBRIO SÓLIDO-LÍQUIDO, BIODIESEL

    Acesso à fonteDOIHow to cite
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    • ABNT

      ROBUSTILLO FUENTES, Maria Dolores et al. Solid–liquid equilibrium in ternary mixtures of ethyl oleate, ethyl laurate and ethyl palmitate. Fluid Phase Equilibria, v. 339, p. 58-66, 2013Tradução . . Disponível em: https://doi.org/10.1016/j.fluid.2012.11.030. Acesso em: 05 jun. 2024.
    • APA

      Robustillo Fuentes, M. D., Barbosa, D. F., Meirelles, A. J. de A., & Pessôa Filho, P. de A. (2013). Solid–liquid equilibrium in ternary mixtures of ethyl oleate, ethyl laurate and ethyl palmitate. Fluid Phase Equilibria, 339, 58-66. doi:10.1016/j.fluid.2012.11.030
    • NLM

      Robustillo Fuentes MD, Barbosa DF, Meirelles AJ de A, Pessôa Filho P de A. Solid–liquid equilibrium in ternary mixtures of ethyl oleate, ethyl laurate and ethyl palmitate [Internet]. Fluid Phase Equilibria. 2013 ; 339 58-66.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2012.11.030
    • Vancouver

      Robustillo Fuentes MD, Barbosa DF, Meirelles AJ de A, Pessôa Filho P de A. Solid–liquid equilibrium in ternary mixtures of ethyl oleate, ethyl laurate and ethyl palmitate [Internet]. Fluid Phase Equilibria. 2013 ; 339 58-66.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2012.11.030
  • Source: Fluid Phase Equilibria. Unidade: EP

    Subjects: EQUILÍBRIO SÓLIDO-LÍQUIDO, BIODIESEL

    Acesso à fonteDOIHow to cite
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    • ABNT

      ROBUSTILLO FUENTES, Maria Dolores et al. Solid–liquid equilibrium in ternary mixtures of ethyl laurate, ethyl palmitate and ethyl stearate. Fluid Phase Equilibria, v. No 2013, p. 272-281, 2013Tradução . . Disponível em: https://doi.org/10.1016/j.fluid.2013.08.024. Acesso em: 05 jun. 2024.
    • APA

      Robustillo Fuentes, M. D., Barbosa, D. F., Meirelles, A. J. de A., & Pessôa Filho, P. de A. (2013). Solid–liquid equilibrium in ternary mixtures of ethyl laurate, ethyl palmitate and ethyl stearate. Fluid Phase Equilibria, No 2013, 272-281. doi:10.1016/j.fluid.2013.08.024
    • NLM

      Robustillo Fuentes MD, Barbosa DF, Meirelles AJ de A, Pessôa Filho P de A. Solid–liquid equilibrium in ternary mixtures of ethyl laurate, ethyl palmitate and ethyl stearate [Internet]. Fluid Phase Equilibria. 2013 ; No 2013 272-281.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2013.08.024
    • Vancouver

      Robustillo Fuentes MD, Barbosa DF, Meirelles AJ de A, Pessôa Filho P de A. Solid–liquid equilibrium in ternary mixtures of ethyl laurate, ethyl palmitate and ethyl stearate [Internet]. Fluid Phase Equilibria. 2013 ; No 2013 272-281.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2013.08.024
  • Source: Fluid Phase Equilibria. Unidade: EP

    Subjects: EQUILÍBRIO SÓLIDO-LÍQUIDO, TERMODINÂMICA, AMINOÁCIDOS

    Acesso à fonteDOIHow to cite
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    • ABNT

      FRANCO, Luis Fernando Mercier e MATTEDI, Silvana e PESSÔA FILHO, Pedro de Alcântara. A new approach for the thermodynamic modeling of the solubility of amino acids and β-lactam compounds as a function of pH. Fluid Phase Equilibria, v. 354, p. 38-46, 2013Tradução . . Disponível em: https://doi.org/10.1016/j.fluid.2013.06.009. Acesso em: 05 jun. 2024.
    • APA

      Franco, L. F. M., Mattedi, S., & Pessôa Filho, P. de A. (2013). A new approach for the thermodynamic modeling of the solubility of amino acids and β-lactam compounds as a function of pH. Fluid Phase Equilibria, 354, 38-46. doi:10.1016/j.fluid.2013.06.009
    • NLM

      Franco LFM, Mattedi S, Pessôa Filho P de A. A new approach for the thermodynamic modeling of the solubility of amino acids and β-lactam compounds as a function of pH [Internet]. Fluid Phase Equilibria. 2013 ; 354 38-46.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2013.06.009
    • Vancouver

      Franco LFM, Mattedi S, Pessôa Filho P de A. A new approach for the thermodynamic modeling of the solubility of amino acids and β-lactam compounds as a function of pH [Internet]. Fluid Phase Equilibria. 2013 ; 354 38-46.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2013.06.009
  • Source: Fluid Phase Equilibria. Unidade: FCF

    Subjects: STREPTOMYCES, FERMENTAÇÃO

    Acesso à fonteDOIHow to cite
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    • ABNT

      SILVA, Germana Michelle de Medeiros e et al. Extraction of fibrinolytic proteases from Streptomyces sp. DPUA1576 using PEG-phosphate aqueous two-phase systems. Fluid Phase Equilibria, v. 339, n. 1, p. 52-57, 2013Tradução . . Disponível em: https://doi.org/10.1016/j.fluid.2012.11.033. Acesso em: 05 jun. 2024.
    • APA

      Silva, G. M. de M. e, Marques, D. de A. V., Porto, T. S., Lima Filho, J. L., Teixeira, J. A. C., Pessoa Junior, A., & Porto, A. L. F. (2013). Extraction of fibrinolytic proteases from Streptomyces sp. DPUA1576 using PEG-phosphate aqueous two-phase systems. Fluid Phase Equilibria, 339( 1), 52-57. doi:10.1016/j.fluid.2012.11.033
    • NLM

      Silva GM de M e, Marques D de AV, Porto TS, Lima Filho JL, Teixeira JAC, Pessoa Junior A, Porto ALF. Extraction of fibrinolytic proteases from Streptomyces sp. DPUA1576 using PEG-phosphate aqueous two-phase systems [Internet]. Fluid Phase Equilibria. 2013 ; 339( 1): 52-57.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2012.11.033
    • Vancouver

      Silva GM de M e, Marques D de AV, Porto TS, Lima Filho JL, Teixeira JAC, Pessoa Junior A, Porto ALF. Extraction of fibrinolytic proteases from Streptomyces sp. DPUA1576 using PEG-phosphate aqueous two-phase systems [Internet]. Fluid Phase Equilibria. 2013 ; 339( 1): 52-57.[citado 2024 jun. 05 ] Available from: https://doi.org/10.1016/j.fluid.2012.11.033

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