Prediction of the flash point of binary intermixtures according to data about activity coefficients
Vestnik Tomskogo gosudarstvennogo universiteta. Matematika i mehanika, no. 2 (2013), pp. 67-78 Cet article a éte moissonné depuis la source Math-Net.Ru

Voir la notice de l'article

A method for calculating the flash point by results of simulation of the liquid–solid body equilibrium at constant pressure using the Gibbs equation is discussed. The applied prediction model for the flash point is based on the modified Le Chatelier equation, Antoine equation, and the model for estimating the activity coefficient.
Keywords: binary intermixtures, flash point, boiling point, activity coefficients
Mots-clés : coefficient of solvation, coefficient of association.
@article{VTGU_2013_2_a7,
     author = {Z. N. Esina and V. V. Murashkin and M. R. Korchuganova},
     title = {Prediction of the flash point of binary intermixtures according to data about activity coefficients},
     journal = {Vestnik Tomskogo gosudarstvennogo universiteta. Matematika i mehanika},
     pages = {67--78},
     year = {2013},
     number = {2},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/VTGU_2013_2_a7/}
}
TY  - JOUR
AU  - Z. N. Esina
AU  - V. V. Murashkin
AU  - M. R. Korchuganova
TI  - Prediction of the flash point of binary intermixtures according to data about activity coefficients
JO  - Vestnik Tomskogo gosudarstvennogo universiteta. Matematika i mehanika
PY  - 2013
SP  - 67
EP  - 78
IS  - 2
UR  - http://geodesic.mathdoc.fr/item/VTGU_2013_2_a7/
LA  - ru
ID  - VTGU_2013_2_a7
ER  - 
%0 Journal Article
%A Z. N. Esina
%A V. V. Murashkin
%A M. R. Korchuganova
%T Prediction of the flash point of binary intermixtures according to data about activity coefficients
%J Vestnik Tomskogo gosudarstvennogo universiteta. Matematika i mehanika
%D 2013
%P 67-78
%N 2
%U http://geodesic.mathdoc.fr/item/VTGU_2013_2_a7/
%G ru
%F VTGU_2013_2_a7
Z. N. Esina; V. V. Murashkin; M. R. Korchuganova. Prediction of the flash point of binary intermixtures according to data about activity coefficients. Vestnik Tomskogo gosudarstvennogo universiteta. Matematika i mehanika, no. 2 (2013), pp. 67-78. http://geodesic.mathdoc.fr/item/VTGU_2013_2_a7/

[1] Torsuev N. S., “Granitsy vosplamenyaemosti smesi parov letuchikh rastvoritelei”, Zhurnal khimicheskoi promyshlennosti, 7:22–23 (1930), 1413–1414

[2] Liaw H.-J., Lee Y.-H., Tang C.-L., et al., “A mathematical model for predicting the flash point of binary solutions”, J. Loss Prev. Process, 15 (2002), 429–438 | DOI

[3] Liaw H.-J., Chiu Y.-Y., “A general model for predicting the flash point of miscible mixture”, J. Hazard Mater., 137 (2006), 38–46 | DOI

[4] Affens W. A., McLaren G. W., “Flammability properties of hydrocarbon solutions in air”, J. Chem Eng. Data, 17 (1972), 482–488 | DOI

[5] White D., Beyler C. L., Fulper C., Leonard J., “Flame spread on aviation fuels”, Fire Saf. J., 28 (1997), 1–31 | DOI

[6] Garland R. W., Malcolm M. O., “Evaluating vent manifold inerting requirements: flash point modeling for organic acid-water mixtures”, Process Saf. Prog., 21 (2002), 254–260 | DOI

[7] Liaw H.-J., Tang C.-L., Lai J.-S., “A model for predicting the flash point of ternary flammable solutions of liquid”, Combust. Flame, 138 (2004), 308–319 | DOI

[8] Liaw H.-J., Wang T.-A., “A non-ideal model for predicting the effect of dissolved salt on the flash point of solvent mixtures”, J. Hazard Mater., 141 (2007), 193–201 | DOI

[9] Catoire L., Paulmier S., Naudet V., “Estimation of closed cup flash points of combustible solvent blends”, J. Phys. Chem. Ref. Data, 35 (2006), 9–14 | DOI

[10] Gmehling J., Rasmussen P., “Flash points of flammable liquid mixtures using UNIFAC”, Ind. Eng. Chem. Fundam., 21 (1982), 186–188 | DOI

[11] Lee S.-J., Ha D.-M., “The Lower Flash Points of Binary Systems Containing Non-flammable Component”, Korean J. Chem. Eng., 20 (2003), 799–802 | DOI

[12] Fredenslund A., Jones R. L., Prausnitz J. M., “Group-Contribution Estimation of Activity Coefficients in Nonideal Liquid Mixtures”, AIChE J., 21 (1975), 1086–1099 | DOI

[13] Vidal M., Rogers W. J., Mannan M. S., “Prediction of minimum flash point behaviour for binary mixtures”, Process Saf. Environ. Prot., 84 (2006), 1–9 | DOI | MR

[14] Zabetakis M. G., Flammability Characteristics of Combustible Gases and Vapors, U. S. Dept. of the Interior, Bureau of Mines, Washington, 1965

[15] Liaw H.-J., Lee T.-P., Tsai J.-S., Hsiao W.-H., Chen M.-H., Hsu T.-T., “Binary liquid solutions exhibiting minimum flash-point behavior”, J. Loss Prev. Process, 16 (2003), 173–186 | DOI

[16] Liaw H.-J., Lin S.-C., “Binary mixtures exhibiting maximum flash-point behavior”, J. Hazard. Mater., 140 (2007), 155–164 | DOI

[17] Weidlich U., Gmehling J., “A modified UNIFAC model. 1. Prediction of VLE, hE, and gamma Infinite”, Ind. Eng. Chem. Res., 26 (1987), 1372–1381 | DOI

[18] Gmehling J., Li J., Schiller M., “A modified UNIFAC model. 2. Present parameter matrix and for different thermodynamic propertie”, Ind. Eng. Chem. Res., 32 (1993), 178–193 | DOI

[19] Larsen B. L., Rasmussen P., Fredenslund A., “A modified UNIFAC group contribution method for prediction of phase equilibria and heats of mixing”, Ind. Eng. Chem. Res., 26 (1987), 2274–2286 | DOI

[20] Magnussen T., Rasmussen P., Fredenslund A., “UNIFAC parameter table for prediction of liquid-liquid equilibria”, Ind. Eng. Chem. Process Des. Dev., 20 (1981), 331–339 | DOI

[21] The UNIFAC Consortium, , (accessed 2010)[elektronnyi resurs] http://unifac.ddbst.de/

[22] Liaw H.-J., Gergaud V., Li Y.-H., “Prediction of miscible mixtures flash-point from UNIFAC group contribution methods”, Fluid Phase Equilibria, 300 (2011), 70–82 | DOI

[23] Kogan V. B., Geterogennye ravnovesiya, Khimiya, L., 1968, 432 pp.

[24] Esina Z. N., Korchuganova M. R., Murashkin V. V., “Matematicheskoe modelirovanie fazovogo perekhoda zhidkost–tverdoe”, Vestnik Tomskogo gosudarstvennogo universiteta. Upravlenie, vychislitelnaya tekhnika i informatika, 2011, no. 3(16), 13–23

[25] Zakharov Yu. N., Esina Z. N., Korchuganova M. R., “Fazovye perekhody kak prichina katastrof na predpriyatiyakh pererabotki uglya i nefti”, Kuzbass-2, Cb. statei, Otdelnyi vypusk Gornogo informatsionno-analiticheskogo byulletenya (nauchno-tekhnicheskogo zhurnala) Mining Informational and Analitical Bulletin (Scienticfic and Technical Journal), No OB17, Izdatelstvo “Gornaya kniga”, M., 2009, 54–58

[26] Esina Z.N., Korchuganova M. R., Murashkin V. V., “Prognozirovanie temperatury vspyshki binarnykh zhidkikh smesei”, Problemy monitoringa okruzhayuschei sredy, Cb. trudov XI Vserossiiskoi konferentsii s uchastiem inostrannykh uchenykh (24–28 oktyabrya 2011 g.), KemGU, Kemerovo, 2011, 177–182

[27] Esina Z. N., Matematicheskoe modelirovanie fazovykh perekhodov v realnykh rastvorakh, Monografiya, Kemerovskii gosudarstvennyi universitet, Kemerovo, 2011, 228 pp.

[28] Esina Z. N., Korchuganova M. R., Murashkin V. V., Phase Chart Eutectic and Azeotropic System (PCEAS), Svidetelstvo o gosudarstvennoi registratsii programmy dlya EVM No 2012618394, (RU) – No 2012616324; zayavl. 25.07.2012; Zaregistrirovano v Reestre programm dlya EVM, g. Moskva, 17 sentyabrya 2012 g.