000 02273nab a2200205 4500
005 20260520000816.0
008 260224s2009 xxu
245 0 0 _aCharacterization of heavy oils and bitumens 2. Improving the prediction of vapor pressures for heavy hydrocarbons at low reduced temperatures using the peng - Robinson equation of state
260 _a
_b
_cene. 2009
270 _a15/05/2009 ; 16/04/2009
300 _a7 p. ; 366-373
520 _aTranscripción del resúmen publicado por el autor: An enhanced form of the temperature-dependent attractive pressure term of the Peng-Robinson equation of state (PR EOS) was developed. The function was developed using experimental vapor pressures from the NIST Standard Reference Data Base #103 as well as vapor pressures estimated based on the Nji et al. (2008) vapor pressure prediction correlation. 6000 vapor pressure data points from 237 diverse hydrocarbons were used in this study to develop the new attractive term. The quality of predicted vapor pressures using the modified PR EOS for heavy hydrocarbons showed a significant improvement when compared against the standard equation of state. Between reduced temperatures of 0.3 and 0.8, the average and maximum absolute percentage deviations for the predicted vapor pressures for the modified PR EOS are 4.9% and 78.0%, respectively, as compared to 10.4% and 230% for the standard PR EOS. For hydrocarbons from methane to tetralin corresponding to C1-C10, the average and maximum absolute percentage deviations in the vapor pressures using the standard Peng-Robinson are 5.7% and 70.7%, respectively. Using the modified PR EOS, the average and maximum percentage deviations in the calculated vapor pressures are 4.6% and 35.6%, respectively. This enhanced attractive pressure term combined with the critical property estimation method presented by Nji et al. (2008) provides a simple and self-consistent method for the prediction of thermodynamic properties of heavy hydrocarbons.
773 0 _tEnergy & fuels
_g23
942 _cARTICULO
100 1 _aNji, G.N.
_940934
100 1 _aSvrcek, W.Y.
_934967
100 1 _aYarranton, H.
_925591
999 _c169593
_d169593
856 _uhttp://pubs.acs.org/doi/full/10.1021/ef8006855