Thermodynamic Study on the Azeotropic Mixture Composed of Ethanol and Toluene

The molar heat capacity of the azeotropic mixture composed of ethanol and toluene was measured by a high precision adiabatic calorimeter from 80 to 320 K. The glass transition and phase transitions of the azeotropic mixture were determined based on the heat capacity measurements. A glass transition...

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Veröffentlicht in:Chinese journal of chemistry 2005-07, Vol.23 (7), p.823-828
Hauptverfasser: Zhao-Dong, Nan, Zhi-Cheng, Tan, Jun, Xing
Format: Artikel
Sprache:eng
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Zusammenfassung:The molar heat capacity of the azeotropic mixture composed of ethanol and toluene was measured by a high precision adiabatic calorimeter from 80 to 320 K. The glass transition and phase transitions of the azeotropic mixture were determined based on the heat capacity measurements. A glass transition at 103.350 K was found. A solid‐solid phase transition at 127.282 K, two solid‐liquid phase transitions at 153.612 and 160.584 K were observed, which correspond to the transition of metastable crystal to stable crystal of ethanol and the melting of ethanol and toluene, respectively. The thermodynamic functions and the excess ones of the mixture relative to the standard temperature 298.15 K were derived based on the relationships of the thermodynamic functions and the function of the measured heat capacity with respect to temperature.
ISSN:1001-604X
1614-7065
DOI:10.1002/cjoc.200590823