Densities and derived thermodynamic properties of 1-heptanol and 2-heptanol at temperatures from 313 K to 363 K and pressures up to 22 MPa

Abel Zúñiga-Moreno, Luis A. Galicia-Luna, Felix F. Betancourt-Cárdenas

Research output: Contribution to journalArticlepeer-review

10 Scopus citations

Abstract

Experimental densities were determined in liquid phase for 1-heptanol and 2-heptanol at temperatures from 313 K to 363 K and pressures up to 22 MPa using a vibrating tube densimeter. Water and nitrogen were used as reference fluids for the calibration of the vibrating tube densimeter. The uncertainties of the experimental measurements in the whole range of reported data are estimated to be ±0.03 K for temperature, ±0.008 MPa for pressure, and ±0.20 kg · m-3 for density. The experimental data are correlated using a short empirical equation of six parameters and the 11-parameter Benedict-Webb-Rubin-Starling equation of state (BWRS EoS) using a least square optimization. Statistical values to evaluate the different correlations are reported. Published density data of 1-heptanol are compared with values calculated with the 6-parameter equation using the parameters obtained in this work. The experimental data determined here are also compared with an available correlation for 1-heptanol. Densities of 2-heptanol at high pressure were not found in the literature and the data reported here represent the first set of data reported in the literature. Isothermal compressibilities and isobaric thermal expansivity are calculated using the 6-parameter equation for both alcohols within uncertainties estimated to be ±0.025 Gpa-1 and ±4 × 10-7 K-1, respectively.

Original languageEnglish
Pages (from-to)96-106
Number of pages11
JournalThe Journal of Chemical Thermodynamics
Volume40
Issue number1
DOIs
StatePublished - Jan 2008
Externally publishedYes

Keywords

  • 1-Heptanol
  • 2-Heptanol
  • BWRS EoS
  • Correlation
  • Density
  • Isobaric thermal expansivity
  • Isothermal compressibility
  • Vibrating tube densimeter

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