A new batch cell has been developed to measure simultaneously both isobaric thermal expansion and isobaric heat capacity from calorimetric measurements. The isobaric thermal expansion is directly proportional to the linear displacement of an inner flexible below and the heat capacity is calculated from the calorimetric signal. The apparatus used was a commercial Setaram C-80 calorimeter and together with this type of vessels can be operated up to 20 MPa and in the temperature range of 303.15–523.15 K, In this work, calibration was carried out using 1-hexanol and subsequently both thermophysical properties were determined for 3-pentanol, 3-ethyl-3-pentanol, and 1-octanol at atmospheric pressure, 5 and 10 MPa, and from 303.15 to 423.15 K in temperature. Finally experimental values were compared with the literature in order to validate this new methodology, which allows a very accurate determination of isobaric thermal expansion and isobaric heat capacity.
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December 2009
Research Article|
December 15 2009
New methodology for simultaneous volumetric and calorimetric measurements: Direct determination of and for liquids under pressure
L. M. Casás;
L. M. Casás
a)
1Departamento de Física Aplicada, Facultad de Ciencias Experimentales,
Universidad de Vigo
, Lagoas Marcosende s/n, 36310 Vigo, Spain
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F. Plantier;
F. Plantier
2Laboratoire de Thermodynamique et Energétique des Fluides Complexes–UMR 5150,
Université de Pau et des Pays de l’Adour
, BP 1155, 64013 Pau, France
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D. Bessières
D. Bessières
2Laboratoire de Thermodynamique et Energétique des Fluides Complexes–UMR 5150,
Université de Pau et des Pays de l’Adour
, BP 1155, 64013 Pau, France
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a)
Author to whom correspondence should be addressed. Tel.: +33 559407500. FAX: +33 559407695. Electronic mail: [email protected].
Rev. Sci. Instrum. 80, 124902 (2009)
Article history
Received:
July 14 2009
Accepted:
November 07 2009
Citation
L. M. Casás, F. Plantier, D. Bessières; New methodology for simultaneous volumetric and calorimetric measurements: Direct determination of and for liquids under pressure. Rev. Sci. Instrum. 1 December 2009; 80 (12): 124902. https://doi.org/10.1063/1.3270258
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