ГОСТ 34898—2022
[24]Stull D.R., Westrum E.F.jr., Sinke G.C. The Chemical Thermodynamics of Organic Compounds, John Wiley inc.
(New York etc), 865 p. (1969)
[25]Wagman D.D., Evans W.H., Parker V.B., Schumm R.H., Halow I., Bailey S.M. The NBS Tables of Chemical
Thermodynamic Properties — Selected Values for Inorganic and C1 and C2 Organic Substances in SI Units, J.
Phys. Chem. Ref. Data 11 (1982) supplement 2, 407 p.
[26] Humphreys A.E. Calculation of the heat of combustion and calorific value at metric standard conditions from the
standard heat of combustion at 25 °C, British Gas London Research Station Technical Report T417 (Nov. 1980),
11
p.
[27] Mason D.A., Eakin B.E. Calculation of Heating Value and Specific Gravity of Fuel Gases, Institute of Gas Technol
ogy Res. Bull. No. 32 (Dec. 1961), 18 p.
[28]Dymond J.H., Marsh K.N., Wilhoit R.C., Wong K.C. In: Landolt-Bornstein: Numerical Data and Functional
RelationshipsinScienceandTechnology—NewSeries/Physical Chemistrygroup IVvolume21A, Virial Coefficients
of Pure Gases. (Frenkel M., & Marsh K.N. eds.). Springer Verlag, 2002, 335 p.
[29]Dymond J.H., & Smith E.B. The Virial Coefficients of Pure Gases and Mixtures. Clarendon Press, Oxford, Second
Edition, 1980
[30]Tsonopoulos C. An empirical correlation of second virial coefficients, AlChE J. 1974, 20 (2) pp. 263—272
[31] Pitzer K.F., Curl R.F. jr. The volumetric and thermodynamic properties of fluids, III. Empirical equation for the sec
ond virial coefficient. J. Am. Chem. Soc. 1957, 79 pp. 2369—2370
[32] Poling B.E., Prausnitz J.M., O’Connell J.P The Properties of Gases and Liquids, McGraw-Hill inc., 5th edi
tion (2001), appendixA
[33] Reid R.C., Prausnitz J.M., Poling B.E. The Properties of Gases and Liquids, McGraw-Hill inc., 4th edition (1987),
appendixA
[34]Lemmon E.W., Huber M.L., McLinden M.O. Reference Fluid Thermodynamic and Transport Properties, program
NIST RefProp version 9.1
[35] Wagner W., De Reuck K.M. International Thermodynamic Tables of the Fluid State — 13, Methane, IUPAC
Commission on Thermodynamics. Blackwell Science, Oxford, 1996
[36] Setzmann U., Wagner W. A new equation of state and tables of thermodynamic properties for methane covering the
range from the melting line to 635 К at pressures up to 1000 MPa, J. Phys. Chem. Ref. Data 1991, 20 (
6
) pp.
1061—1151
[37] Bucker D., Wagner W. A reference equation of state for the thermodynamic properties of ethane for temperatures
from the melting line to 675 К and pressures up to 900 MPa, J. Phys. Chem. Ref. Data 2006, 35 (1) pp. 205—266
[38] Lemmon E.W., McLinden M.O., Wagner W. Thermodynamic properties of propane III. A reference equation of
state for temperatures from the melting line to 650 К and pressures up to 1000 MPa, J. Chem. Eng. Data 2009, 54
pp. 3141—3180
[39] BuckerD., Wagner W. Reference equations ofstate for the thermodynamicproperties offluidphase n-Butane and
iso-Butane, J. Phys. Chem. Ref. Data 2006, 35pp. 929—1019
[40]Span R., WagnerW. Equationsofstate for technicalapplications. II. Resultsfornon-polarfluids, Int. J. Thermophys.
2003, 24 (1) pp. 41—109
[41]Lemmon E.W., Span R. Short fundamental equations of state for 20 industrial fluids, J. Chem. Eng. Data 2006, 51
pp. 785—850
[42]Aleksandrov I.S., GerasimovA. A., Grigor’evB.A. Using fundamental equations ofstate for calculating the thermo
dynamicproperties ofnormal undecane, Therm. Eng. 2011, 58 (8) pp. 691—698
[43]Lemmon E.W., HuberM.L. Thermodynamicproperties ofn-Dodecane, Energy Fuels 2004, 18pp. 960—967
[44] Smukala J., Span R., Wagner W. A new equation ofstate for ethylene covering the fluid region for temperatures
from the melting line to 450 К at pressures up to 300 MPa. J. Phys. Chem. Ref. Data 2000, 29 (5) pp. 1053—1122
[45] Lemmon E.W., Overhoff U., McLinden M.O., Wagner W. A reference equation of state for the thermodynamic
properties ofpropene for temperatures from the melting line to 575 К andpressures up to 1000 MPa. Submitted to
J. Phys. Chem. Ref. Data
[46]Lemmon E.W., Ihmels E.C. Thermodynamic properties of the butenes. Part II. Short fundamental equations of
state, Fluid Phase Equilib. 2005, 228—229pp. 173—187
[47] Gedanitz H., Davila M.J., Lemmon E.W. Speed of sound measurements and a fundamental equation ofstate for
cyclopentane, J. Chem. Eng. Data 2015, 60 (5) pp. 1331—1337
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