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Speeds of Ultrasound and Adiabatic Compressibilities of Binary Mixtures of 1,2-Ethanediol+1-Pentanol At 298.15k

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EN
Abstrakty
EN
The excess values of the molar adiabatic compressibility as well as adiabatic compressibility coefficient were estimated for binariy mixtires of 1,2-ethanediol+1-pentanol at 298.15K. Also deviations of the ultrasonic speed from the chosen additivity rules were determined. Both the excess quantities as well as the speed of ultrasound are expressed by the Redlich-Kister polynomials and discussed in terms of molecular interactions
Rocznik
Tom
Strony
261--270
Opis fizyczny
Bibliogr. 15 poz., rys.
Twórcy
autor
Bibliografia
  • I. I.Bakó,T.Grósz, G.Palinkas, M.C.Bellissent-Funel, Ełhylene glycol dimers in the liquid phase: A study by x-ray and neutron diffraction, J.Chem.Phys., 118(7) 3215-3221 (2003)
  • 2. J.A.Riddick, W.B.Bunger, T.K.Sakano, Organi Solvents, 4th ed., Wiley, NY 1986.
  • 3. E.Zorębski, M.Zorębski, S.Ernst, Ultrasonic World Congress Proceedings, Berlin 1995, A pulse-echo-overlap system for ultrasound velocity measurements in liquids. Testing and disseusion of the errors 547-550 (1995).
  • 4. E.Zorębski, M.Zorębski, J.Nurek, Densities, Speeds of Ultrasound, Ultrasonic Absorption and Viscosities of the 1 -Butanol+1,3-Butanediol System at 298.15 K, Z.Phys.Chemie 216. 1323-1335(2002).
  • 5. A.Oczkowska, Wolumetryczne i refraktometryczne badania binarnego układu 1,2- etanodiol-l-pentanol, M.Sc. Thesis, Silesian University, Katowice 2002.
  • 6. M.Zabransky, V.Ruzicka Jr., V.Majer, Heat Capacities of Organic Compounds in the Liquid State. L Ci to Cis 1-Alkanols, J.Phys.Chem.Ref.Data, 19(3), 719-762 (1990)z
  • 7. M.Gepert, Akustyczne i termodynamiczne właściwości wybranych binarnych mieszanin alkoholi oraz ich homomorfów: pentan- 1-ol+oktan-l-ol, pentan-1 -ol+n-nonan i n- heksan+n-nonanjThesis, Silesian University, Katowice 2001.
  • 8. J.Canosa, A.Rodriąuez, J.Tojo, Speeds of Sound and Dynamie Yiscosities of the Ternary Mixtures Methyl Acetate+Methanol+1-Butanol or 1-Pentanol and Their Corresponding Binary mixtures at 298.15 K, J.Chem.Eng.Data 45,471-477 (2000).
  • 9. E.Jimenez, M.I.Paz Andrade, Yolumenes de exceso de mezclas liquidas polaries, Anales Quim., 70, 103-106 (1974).
  • 10. E.Zorębski, XIV International Conference on Chemical Thermodynamics in Russia - Proceeding, Volume effects and adiabatic compressibilities in 1,2-ethanediol+l-alkanol mixtures at 298.15 K, St .Petersburg, 276,2002.
  • 11. J-Y.Huot, E.Battistel, R.Lumry, G.Villeneuve, J-F.Lavallee, A.Anusiem, C.Jolicoeur, A Comprehensive Thermodynamic Imestigation of Water-Ethylene Glycol Mixtures at 5, 25, and 45°C, J.Sol.Chem., 17(7), 601-636 (1988).
  • 12. E.Zorębski, A.Żak, Acoustic and Volumetric lnvestigations of 1,5-pentanediol+GlyceroI at 298.15 K; Comparison with Recalculated Data for: 1,3-Butanediol+Glycerol and 2-Methyl-2,4-Pentanediol+Glycerol, Z.Phys.Chemie 210.223-233 (1999).
  • 13. E.Zorębski, J.Nurek, Ultrasonic Speeds, Molar Excess Yolumes and Adiabatic Compressi- bilities of the 1 -Butanol+Glycerol System at 298.15 K, Z.Phys. Chemie 216, 895-904 (2002).
  • 14. E.Zorębski, Excess volumes and adiabatic compressibilities of binary mixtures of cyclohexanol+glycerol at 298.15 K, Mol.Quant.Acoust., 23,463-472 (2002).
  • 15. M.Gepert, S.Ernst, Acoustic properties of pure alcohols and binary mixtures containing alcohols, Mol.Quant.Acoust., 22,77-84 (2001).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ6-0008-0047
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