Measurements of excess molar enthalpies at the temperature 298.15 K in a flow microcalorimeter are reported for the ternary mixtures {x Smooth representations of the results are described and used to construct constant-enthalpy contours on Roozeboom diagrams. It is shown that useful estimates of th
Excess enthalpies of { ethyl tert -butylether  +  hexane  +  heptane, or octane } at the temperature 298.15 K
β Scribed by Zhaohui Wang; Ding-Yu Peng; George C. Benson; Benjamin C.-Y. Lu
- Publisher
- Elsevier Science
- Year
- 2001
- Tongue
- English
- Weight
- 230 KB
- Volume
- 33
- Category
- Article
- ISSN
- 0021-9614
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β¦ Synopsis
Excess molar enthalpies, measured at the temperature 298.15 K in a flow microcalorimeter, are reported for the ternary mixtures
Smooth representations of the results are described and used to construct constant-enthalpy contours on Roozeboom diagrams. It is shown that useful estimates of the enthalpies of the ternary mixtures can be obtained from the Liebermann and Fried model, using only the physical properties of the components and their binary mixtures.
π SIMILAR VOLUMES
Measurements of excess molar enthalpies at the temperature 298.15 K in a flow microcalorimeter, are reported for the ternary mixtures where Ξ½ = 5 and 6. Smooth representations of the results are described and used to construct constant-enthalpy contours on Roozeboom diagrams. It is shown that usefu
Excess molar enthalpies at T = 298.15 K and atmospheric pressure of (ethyl propionate + n-hexane + 1-pentanol), and of(n-hexane + 1-pentanol) and (ethyl propionate + 1-pentanol) are reported. A Calvet microcalorimeter was used as measuring device. Variable degree polynomials were fitted to the exper
Measurements of excess molar enthalpies at the temperature 298.15 K in a flow microcalorimeter are reported for the ternary mixture {x A smooth representation of the results is described and used to construct constant-enthalpy contours on a Roozeboom diagram. It is shown that useful estimates of th
A flow microcalorimeter of the Picker design was used to measure excess molar enthalpies H E m at the temperature 298.15 K over the whole composition range of several binary liquid mixtures formed from an alkanoic acid and either n-heptane, or cyclohexane, or benzene. The alkanoic acids selected wer