Temperature Dependence on Mutual Solubility Data of the Binary (Methanol + α-Pinene or β-Pinene) Systems and Ternary Liquid−Liquid Equilibria for the (Methanol + Ethanol + α-Pinene or β-Pinene) Systems
Mutual solubility data of the binary systems (methanol + α-pinene or β-pinene) at temperatures ranging from 288.15 K close to upper critical solution temperatures, and ternary liquid−liquid equilibria and tie-lines of the mixtures (methanol + ethanol + α-pinene or β-pinene) at temperatures 288.15 K,...
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Veröffentlicht in: | Journal of chemical and engineering data 2008-10, Vol.53 (10), p.2417-2421 |
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Hauptverfasser: | , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Mutual solubility data of the binary systems (methanol + α-pinene or β-pinene) at temperatures ranging from 288.15 K close to upper critical solution temperatures, and ternary liquid−liquid equilibria and tie-lines of the mixtures (methanol + ethanol + α-pinene or β-pinene) at temperatures 288.15 K, 298.15 K, and 308.15 K have been measured. The experimental binary and ternary liquid−liquid equilibrium data have been correlated by the original, extended, and modified UNIQUAC models. Good agreement between the experimental and correlated values was obtained using the extended and modified UNIQUAC models. The temperature dependence of the binary and ternary liquid−liquid phase equilibria (methanol + α-pinene or β-pinene) mixtures with ethanol was demonstrated experimentally and represented by the extended and modified UNIQUAC models. |
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ISSN: | 0021-9568 1520-5134 |
DOI: | 10.1021/je800407h |