Modified α Function for the Peng-Robinson Equation of State To Improve the Vapor Pressure Prediction of Non-hydrocarbon and Hydrocarbon Compounds

被引:82
作者
Li, Huazhou [1 ]
Yang, Daoyong [1 ]
机构
[1] Univ Regina, Fac Engn & Appl Sci, Regina, SK S4S 0A2, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
ORGANIC OXYGEN COMPOUNDS; REDLICH-KWONG EQUATION; THERMODYNAMIC PROPERTIES; CUBIC EQUATION; N-ALKANES; TEMPERATURE RELATIONS; HEAVY HYDROCARBONS; PURE COMPOUNDS; LIQUID; MIXTURES;
D O I
10.1021/ef100927z
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
On the basis of the available vapor pressures for 59 non-hydrocarbon and hydrocarbon compounds, including heavy alkanes up to n-tritetracontane (n-C43H88), a modified a function for the Peng-Robinson equation of state (PR-EOS) has been developed to more accurately determine the vapor pressure for pure non-hydrocarbon and hydrocarbon compounds, especially heavy components. To balance the characterization of both light and heavy compounds, the Pitzer acentric factor is first redefined in terms of reduced vapor pressure at a reduced temperature of 0.6. In comparison to the evaluated a functions used for the PR-EOS, it is found that the newly developed alpha function with the redefined acentric factor provides a more accurate prediction of vapor pressures with a percentage average absolute deviation of 1.90% and a percentage maximum absolute deviation of 21.22% for the 59 chemical species. In addition, the newly developed alpha function results in the best prediction of the vaporization enthalpy data with an average absolute deviation of 3.92% in comparison to the other existing alpha functions evaluated.
引用
收藏
页码:215 / 223
页数:9
相关论文
共 63 条
[41]   The Soave, Twu and Boston-Mathias alpha functions in cubic equations of state. Part II. Modeling of thermodynamic properties of pure compounds [J].
Neau, Evelyne ;
Raspo, Isabelle ;
Escandell, Joan ;
Nicolas, Christophe ;
Hernandez-Garduza, Otilio .
FLUID PHASE EQUILIBRIA, 2009, 276 (02) :156-164
[42]   Vapour-liquid critical temperatures and pressures of normal alkanes with from 19 to 36 carbon atoms, naphthalene and m-terphenyl determined by the pulse-heating technique [J].
Nikitin, ED ;
Pavlov, PA ;
Popov, AP .
FLUID PHASE EQUILIBRIA, 1997, 141 (1-2) :155-164
[43]   Characterization 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 [J].
Nji, G. N. ;
Svrcek, W. Y. ;
Yarranton, H. ;
Satyro, A. A. .
ENERGY & FUELS, 2009, 23 (1-2) :366-373
[44]   A New Two-Constant Equation of State [J].
PENG, D ;
ROBINSON, DB .
INDUSTRIAL & ENGINEERING CHEMISTRY FUNDAMENTALS, 1976, 15 (01) :59-64
[45]   THE VOLUMETRIC AND THERMODYNAMIC PROPERTIES OF FLUIDS .2. COMPRESSIBILITY FACTOR, VAPOR PRESSURE AND ENTROPY OF VAPORIZATION [J].
PITZER, KS ;
LIPPMANN, DZ ;
CURL, RF ;
HUGGINS, CM ;
PETERSEN, DE .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1955, 77 (13) :3433-3440
[47]   ON THE THERMODYNAMICS OF SOLUTIONS .5. AN EQUATION OF STATE - FUGACITIES OF GASEOUS SOLUTIONS [J].
REDLICH, O ;
KWONG, JNS .
CHEMICAL REVIEWS, 1949, 44 (01) :233-244
[48]  
Robinson D.B, 1978, research report 28
[49]  
Sandler S.I, 1999, CHEM ENG THERMODYNAM
[50]   A FRAMEWORK FOR THE PREDICTION OF SATURATION PROPERTIES - VAPOR-PRESSURES [J].
SHAVER, RD ;
ROBINSON, RL ;
GASEM, KAM .
FLUID PHASE EQUILIBRIA, 1991, 64 :141-163