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Prediction of Transport Properties of R142b Using A New Intermolecular Potential
Corresponding Author(s) : Xiao-Po Wang
Asian Journal of Chemistry,
Vol. 25 No. 2 (2013): Vol 25 Issue 2
Abstract
An iterative inversion scheme was used to determine the pair interaction potential of refrigerant R142b from a new correlation of collision integrals. According to the Chapman-Enskog theory and the Wang Chang-Uhlenbeck-de Boer scheme, transport properties of pure R142b were predicted by the new potential from 273.15 to 973.15 K at low-density, including viscosity, thermal conductivity, self-diffusion coefficient and thermal diffusion factor. The accuracy of the calculated values is estimated to be 1.5 % for viscosity, 5.0 % for thermal conductivity and 7.5 % for self-diffusion coefficient.
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- G.C. Maitland, M. Rigby, E.B. Smith and W.A. Wakeham, Intermolecular Forces: Their Origins and Determination, Oxford: Clarendon Press (1984).
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- J. Bzowski, J. Kestin, E.A. Mason and F.J. Uribe, J. Phys. Chem. Ref. Data, 19, 1179 (1990).
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- B. Haghighi, M. Fathabadi and M.M. Papari, Fluid Phase Equilib., 203, 205 (2002).
- M.M. Papari, D. Mohammad-Aghaiee, B. Haghighi and A. Boushehri, Fluid Phase Equilib., 232, 122 (2005).
- T. Hosseinnejad, H. Behnejad and V.H. Shahmir, Fluid Phase Equilib., 258, 155 (2007).
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- E.K. Goharshadi and M. Abbaspour, Fluid Phase Equilib., 212, 53 (2003).
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References
J.O. Hirschfelder, C.F. Curtiss and R.B. Bird, Molecular Theory of Gases and Liquids, New York: John Wiley (1954).
G.C. Maitland, M. Rigby, E.B. Smith and W.A. Wakeham, Intermolecular Forces: Their Origins and Determination, Oxford: Clarendon Press (1984).
P. Clancy, D.W. Gough, G.P. Matthews, E.B. Smith and G.C. Maitland, Mol. Phys., 30, 1397 (1975).
J. Kestin, K. Knierim, E.A. Mason, B. Najafi, S.T. Ro and M. Waldman, J. Phys. Chem. Ref. Data, 13, 229 (1984).
A. Boushehri, J. Bzowski, J. Kestin and E.A. Mason, J. Phys. Chem. Ref. Data, 16, 445 (1987).
J. Bzowski, J. Kestin, E.A. Mason and F.J. Uribe, J. Phys. Chem. Ref. Data, 19, 1179 (1990).
A. Boushehri and A. Maghari, J. Phys. Soc. (Japan), 59, 4302 (1990).
H. Behnejad, A. Maghari and M. Najafi, J. Comp. Chem., 16, 441 (1995).
B. Haghighi, M. Fathabadi and M.M. Papari, Fluid Phase Equilib., 203, 205 (2002).
M.M. Papari, D. Mohammad-Aghaiee, B. Haghighi and A. Boushehri, Fluid Phase Equilib., 232, 122 (2005).
T. Hosseinnejad, H. Behnejad and V.H. Shahmir, Fluid Phase Equilib., 258, 155 (2007).
B. Haghighi, A. Maghari and M. Najafi, J. Phys. Soc. (Japan), 67, 3086 (1998).
E.K. Goharshadi and M. Abbaspour, Fluid Phase Equilib., 212, 53 (2003).
J. Moghadasi, D. Mohammad-Aghaie and M.M. Papari, Ind. Eng. Chem. Res., 45, 9211 (2006).
J. Moghadasi, M.M. Papari, D. Mohammad-Aghaie and A. Campo, Bull. Chem. Soc. (Japan), 81, 220 (2008).
B. Haghighi, F. Heidari and M.M. Papari, Indian J. Chem., 47A, 867 (2008).
B. Haghighi, F. Heidari and M.M. Papari, Indian J. Chem., 49A, 180 (2010).
X.P. Wang, B. Song, J.T. Wu and Z.G. Liu, Acta Phys. Sin., 59, 7158 (2010).
L.A. Viehland, A.R. Janzen and R.A. Aziz, J. Chem. Phys., 102, 5444 (1995).
M.L. Huber, A. Laesecke and R.A. Perkins, Ind. Eng. Chem. Res., 42, 3163 (2003).
B. Najafi, Y. Ghayeb and G.A. Parsafar, Int. J. Thermophys., 21, 1011 (2000).
H. Nabizadeh and F. Mayinger, High Temp.-High Press., 24, 221 (1992).
M. Takahashi, C. Yokoyama and S. Takahashi, J. Chem. Eng. Data, 32, 98 (1987).
R. Afshar and S.C. Saxena, Int. J. Thermophys., 1, 51 (1980).
B.R. Fellows, R.G. Richard and I.R. Shankland, Thermal Conductivity Data for Some Environmentally Acceptable Fluorocarbons, Proceedings of the Twenty-First International Thermal Conductivity Conference, Lexington, USA (1989).
U. Hammerschmidt, Int. J. Thermophys., 16, 1203 (1995).
A.T. Sousa, P.S. Fialho, C.A. Nieto de Castro, R. Tufeu and B. Leneindre, Int. J. Thermophys., 13, 383 (1992).
Y. Tanaka, M. Nakata and T. Makita, Int. J. Thermophys., 12, 949 (1991).
E.W. Lemmon, M.L. Huber and M.O. McLinden, NIST Standard Reference Database 23, Reference Fluid Thermodynamic and Transport Properties Database (REFPROP), Version 8.0, Gaithersburg: National Institute of Standards and Technology (2007).