Thermodynamic behaviour of the binary systems dimethyl carbonate + n-octane or n-nonane
Isobaric molar heat capacities, densities and speeds of sound were determined for the dimethyl carbonate + n-octane and n-nonane systems at atmospheric pressure covering the whole composition interval and in the temperature range (288.15–308.15 K). From these data, derived properties and excess magn...
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Published in: | Thermochimica acta Vol. 433; no. 1; pp. 128 - 133 |
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Abstract | Isobaric molar heat capacities, densities and speeds of sound were determined for the dimethyl carbonate
+
n-octane and
n-nonane systems at atmospheric pressure covering the whole composition interval and in the temperature range (288.15–308.15
K). From these data, derived properties and excess magnitudes were obtained. A strongly temperature-dependent W-shaped curves against composition were observed for excess isobaric molar heat capacities in both system, showing the other excess magnitudes regular tendencies. From these results, a comparative analysis of the existing differences between the thermodynamic behaviour of the two systems was carried out. |
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AbstractList | Isobaric molar heat capacities, densities and speeds of sound were determined for the dimethyl carbonate
+
n-octane and
n-nonane systems at atmospheric pressure covering the whole composition interval and in the temperature range (288.15–308.15
K). From these data, derived properties and excess magnitudes were obtained. A strongly temperature-dependent W-shaped curves against composition were observed for excess isobaric molar heat capacities in both system, showing the other excess magnitudes regular tendencies. From these results, a comparative analysis of the existing differences between the thermodynamic behaviour of the two systems was carried out. Isobaric molar heat capacities, densities and speeds of sound were determined for the dimethyl carbonate+n--octane and n--nonane systems at atmospheric pressure covering the whole composition interval and in the temperature range (288*15--308*15K). From these data, derived properties and excess magnitudes were obtained. A strongly temperature--dependent W--shaped curves against composition were observed for excess isobaric molar heat capacities in both system, showing the other excess magnitudes regular tendencies. From these results, a comparative analysis of the existing differences between the thermodynamic behaviour of the two systems was carried out. |
Author | Carballo, E. Romaní, L. Troncoso, J. Tovar, C.A. Pardo, J.M. |
Author_xml | – sequence: 1 givenname: J.M. surname: Pardo fullname: Pardo, J.M. – sequence: 2 givenname: C.A. surname: Tovar fullname: Tovar, C.A. – sequence: 3 givenname: J. surname: Troncoso fullname: Troncoso, J. – sequence: 4 givenname: E. surname: Carballo fullname: Carballo, E. – sequence: 5 givenname: L. surname: Romaní fullname: Romaní, L. email: romani@uvigo.es |
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Keywords | Heat capacity Excess magnitudes Dialkyl carbonate n-Alkane Octane Nonane Organic carbonate Hydrocarbon Molar volume Binary system Excess parameter Thermal properties Alkane Thermodynamic properties |
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Snippet | Isobaric molar heat capacities, densities and speeds of sound were determined for the dimethyl carbonate
+
n-octane and
n-nonane systems at atmospheric... Isobaric molar heat capacities, densities and speeds of sound were determined for the dimethyl carbonate+n--octane and n--nonane systems at atmospheric... |
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SubjectTerms | Chemical thermodynamics Chemistry Dialkyl carbonate Exact sciences and technology Excess magnitudes General and physical chemistry Heat capacity Mixtures n-Alkane Thermodynamic properties |
Title | Thermodynamic behaviour of the binary systems dimethyl carbonate + n-octane or n-nonane |
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