Parte de libro

Estamos trabajando para incorporar este artículo al repositorio
Consulte el artículo en la página del editor

Registro:

Documento: Parte de libro
Título:pVTx Properties of Hydrothermal Systems
Autor:Corti, H.R.; Abdulagatov, I.M.
Filiación:Department of Physics of Condensed Matter, Institute of Physical Chemistry of Materials, Environment and Energy (INQUIMAE), University of Buenos Aires, Buenos Aires, Argentina
Geothermal Res. Institute of the Dagestan Sci. Center of the Russian Academy of Sci., Thermophysical Division, Makhachkala 367030, Russian Federation
Palabras clave:'Binary systems with acids'; 'Binary systems with electrolytes'; 'Binary systems with nonelectrolytes'; Binary aqueous systems - 3 groups; Debye-Hückel (DH) theory; Hydrothermal pVTx data systems; Hydrothermal systems and pVTx properties; Multi-component systems and volumetric properties; Parametric crossover model and parametric crossover equations
Año:2008
Página de inicio:135
Página de fin:193
DOI: http://dx.doi.org/10.1002/9780470094679.ch2
Título revista:Hydrothermal Experimental Data
Título revista abreviado:Hydrothermal Exp. Data
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_97804700_v_n_p135_Corti

Referencias:

  • Abdulagatov, I.M., Azizov, N.D., Intern. J. Thermophys. (2003), 24, pp. 1581-1610; Abdulagatov, I.M., Azizov, N.D., J. Solution Chem. (2003), 32, pp. 573-599; Abdulagatov, I.M., Azizov, N.D., J. Chem. Thermod. (2004), 36, pp. 17-27; Abdulagatov, I.M., Azizov, N.D., J. Chem. Thermod. (2004), 36, pp. 829-843; Abdulagatov, I.M., Azizov, N.D., J. Solution Chem. (2004), 33, pp. 1305-1331; Abdulagatov, I.M., Azizov, N.D., High Temp.-High Press (2004), 35-36, pp. 477-498; Abdulagatov, I.M., Azizov, N.D., J. Solution Chem. (2005), 34, pp. 645-685; Abdulagatov, I.M., Azizov, N.D., Fluid Phase Eq. (2006), 246, pp. 96-110; Abdulagatov, I.M., Azizov, N.D., Chem. Geol. (2006), 230, pp. 22-41; Abdulagatov, I.M., Bazaev, A.R., Ramazanova, A.E., Teplofiz. Visok. Temp. (1992), 30, pp. 897-908; Abdulagatov, I.M., Bazaev, A.R., Ramazanov, A.E., Zh. Fizich. Khimii (1993), 67, pp. 13-17; Abdulagatov, I.M., Bazaev, A.R., Ramazanova, A.E., Int. J. Thermophys. (1993), 14, pp. 231-250; Abdulagatov, I.M., Bazaev, A.R., Ramazanova, A.E., J. Chem. Thermod. (1993), 25, pp. 249-259; Abdulagatov, I.M., Bazaev, A.R., Ramazanova, A.E., Ber. Bunsenges Phys. Chem. (1994), 98, pp. 1596-1600; Abdulagatov, I.M., Bazaev, A.R., Ramazanov, A.E., Gasanov, R.K., (1995), pp. 558-561. , In: H.J. White, Jr. et al. (eds), Physical Chemistry of Aqueous Solutions: Meetings the Needs of Industry (Proc. 12 Intern. Conf. on the Prop. of Water and Steam), Begell House; Abdulagatov, I.M., Bazaev, A.R., Gasanov, R.K., Ramazanova, A.E., J. Chem. Thermod. (1996), 28, pp. 1037-1057; Abdulagatov, I.M., Bazaev, A.R., Gasanov, R.K., Bazaev, E.A., Ramazanova, A.E., Teplofiz. Visok. Temp. (1996), 34, pp. 691-697; Abdulagatov, I.M., Bazaev, A.R., Gasanov, R.K., Bazaev, E.A., Ramazanova, A.E., J. Supercrit. Fluids (1997), 10, pp. 149-173; Abdulagatov, I.M., Bazaev, A.R., Gasanov, R.K., Bazaev, E.A., Ramazanova, A.E., High Temp.-High Press (1997), 29, pp. 671-676; Abdulagatov, I.M., Dvoryanchikov, V.I., Mursalov, B.A., Kamalov, A.N., Fluid Phase Equilibria (1998), 143, pp. 213-240; Abdulagatov, I.M., Bazaev, A.R., Bazaev, E.A., Saidakhmedova, M.B., Ramazanova, A.E., (1998), 43, pp. 451-458; Abdulagatov, I.M., Bazaev, A.R., Bazaev, E.A., Khokhlachev, S.P., Saidakhmedova, M.B., J. Soln. Chem. (1998), 27, pp. 731-753; Abdulagatov, I.M., Bazaev, A.R., Bazaev, E.A., Saidakhmedova, M.B., Ramazanova, A.E., Fluid Phase Equil. (1998), 150-151, pp. 537-547; Abdulagatov, I.M., Bazaev, E.A., Bazaev, A.R., Rabezkii, M.G., J. Supercritical Fluids (2001), 19, pp. 219-237; Abdulagatov, I.M., Bazaev, A.R., Magee, J.W., Kiselev, S.B., Ely, J.F., Ind. Eng. Chem. Res. (2005), 44, pp. 1967-1984; Abdullaev, K.M., Mamedov, R.K., Mamedov, F.I., Garadagi, E.M., (1983), pp. 95-100. , In: Teplofiz. Svoistva Vysokokipyashchikh Zhidk; Abdullaev, A.A., Izvestiya Vysshikh Uchebnykh Zavedenii Neft i Gaz (1990), (11), pp. 73-80; Abdullaev, A.A., Iskenderov, A.I., Tairov, A.D., Imanova, M.V., Inform. Listok, ser. 'Energet. i Elektrotekh' (1990), (3) AzerbNIINTI, Baku; Abdullaev, A.A., Iskenderov, A.I., Tairov, A.D., (1991), pp. 43-45. , In: Tekhn. obrab. vodi na TETs, teplofiz. svoystva i teploobmen elektr. i zhidk, Sbornik, Baku, AzerbSSR; Abdullaev, K.M., Mamedov, F.I., Aliev, N.M., Khimiya I Tekhnologiya Vody (1992), 14, pp. 339-343; Agaev, N.A., Pachaev, A.A., Kerimov, A.M., Deposit. VINITI USSR (1974), 504-74 Dep; Akhmedova, I.N., Akhundov, T.S., Imanova, M.V., Ismail-Zade, S.M., (1991), pp. 46-48. , In: Tekhnol. obrab. vodi na TETs, teplofiz. svoystva i teploobmen elektr-tov i zhidkostey, Sbornik, Baku, AzerbSSR; Akhumov, E.I., Vasil'ev, B.B., Zh. Obshchei Khimii (1932), 2, pp. 282-289. , Izv. Sekt. Fiz. Khim. Analiza 9: 295-315 (1936); Akhundov, T.S., Imanova, M.V., Inzhen.-Fizich. Zh. (1983), 45, pp. 140-142; Akhundov, T.S., Imanova, M.V., Arutyunyan, G.S., Dokl. Akad. Nauk SSSR (1983), 271, pp. 1146-1149; Akhundov, T.S., Imanova, M.V., Tairov, A.D., Dokl. Akad. Nauk Azerb.SSR (1983), 39, pp. 40-43; Akhundov, T.S., Imanova, M.V., Tairov, A.D., Ismail-Zade, S., (1983), pp. 3-10. , In: Teplofiz. Svoistva Vysokokipyashchikh Zhidk Zhidkostei, Baku; Akhundov, T.S., Imanova, M.V., Inzhenerno-Fizicheskii Zhurnal (1984), 47, pp. 957-959; Akhundov, T.S., Imanova, M.V., Ismail-Zade, S., Izvestiya Vysshikh Uchebnykh Zavedenii Energetika (1984), (1), pp. 95-97; Akhundov, T.S., Imanova, M.V., Tairov, A.D., Ismail-Zade, S., (1984), pp. 3-6. , In: Teplofiz. Svoystva Visokokip. Zhidkostey, Trudi Azerb. Inst. Nefty i Khimii, Baku, AzerbSSR; Akhundov, T.S., Imanova, M.V., Ismail-Zade, S., Izvestiya Vysshikh Uchebnykh Zavedenii, Neft i Gaz (1985), (2), pp. 58-60; Akhundov, T.S., Imanova, M.V., Tairov, A.D., (1985), pp. 9-16. , In: Teplofiz. i Gidrodinam. Issl. Zhidkostey, Azerb. Polytekh. Inst., Baku, AzrebSSR; Akhundov, T.S., Imanova, M.V., Tairov, A.D., Dokl. Akad. Nauk Azerb.SSR (1986), 42, pp. 30-34; Akhundov, T.S., Imanova, M.V., Tahirov, A.D., (1986), 2, pp. 316-323. , In: V.V. Sytchev and A.A. Aleksandrov (eds), Proc. of the 10th Intern. Conf. on the Properties of Steam, Mir Publ., Moscow, USSR; Akhundov, T.S., Akhmedova, I.N., Tairov, A.D., Iskenderov, A.I., Imanova, M.V., (1988), pp. 10-17. , In: Rezul'tati Issled. Protsessov Vodopodg., Vodn. Rezhima na TES i Teplofiz. Svoystv Rastv. i Teplonosit, Trudi Azerb. Inst. Nefti i Khimii, Baku, AzerbSSR; Akhundov, T.S., Iskenderov, A.I., Imanova, M.V., Zh. Fizich. Khimii (1988), 62, pp. 1932-1933; Akhundov, T.S., Akhmedova, I.N., Iskenderov, A.I., Tairov, A.D., Izvestiya Vysshikh Uchebnykh Zavedenii, Neft i Gaz (1989), (8), pp. 95-96; Akhundov, T.S., Akhmedova, I.N., Tairov, A.D., Izvestiya Vysshikh Uchebnykh Zavedenii, Neft i Gaz (1989), (9), pp. 34+55-56; Akhundov, T.S., Akhmedova, I.N., Iskenderov, A.I., Izvestiya Vysshikh Uchebnykh Zavedenii, Neft i Gaz (1989), (12), pp. 66-69; Akhundov, T.S., Iskenderov, A.I., Tairov, A.D., Abdullaev, A.A., Inform. Listok, ser. 'Energet. i Elektrotekh.' (1990), (6): AzerbNIINTI, Baku; Akhundov, T.S., Azizov, N.D., Tairov, A.D., Iskenderov, A.I., Izvestiya Vysshikh Uchebnykh Zavedenii, Neft i Gaz (1991), 6, pp. 55-56; Akhundov, T.S., Azizov, N.D., Tairov, A.D., Iskenderov, A.I., Izvestiya Vysshikh Uchebnykh Zavedenii, Neft i Gaz (1991), (7), pp. 26-32; Akhundov, T.S., Akhmedova, I.N., Iskenderov, A.I., Sambur, K., Izvestiya Vysshikh Uchebnykh Zavedenii, Neft i Gaz (1992), (9-10), pp. 62-66; Albert, H.J., Wood, R.H., Rev. Sci. Instrum. (1984), 55, pp. 589-593; Alekhin, O.S., Tsai, S.V., Puchkov, L.V., Zarembo, V.I., Zh. Prikl. Khimii (1993), 66, pp. 437-440; Alekhin, O.S., Tsai, S.V., Giliarov, V.N., Puchkov, L.V., Zarembo, V.I., Zh. Prikl. Khimii (1993), 66, pp. 441-444; Alexandrov, A.A., Kochetkov, A.I., Kuznetsov, G.G., Teploenergetika (1989), (7), pp. 73-76; Alexandrov, A.A., Tsatsuryan, K., (1995), pp. 526-532. , In H.J. White, Jr. et al. (eds), Physical Chemistry of Aqueous Solutions: Meetings the Needs of Industry. Proceedings of the 12th. International Conference on the Properties of Water and Steam. Begell House; Aliev, M.M., Magee, J.W., Abdulagatov, I.M., Int. J. Thermophys. (2003), 24, pp. 1551-1579; Amend, J.P., Helgeson, H.C., Geochim. Cosmochim. Acta (1997), 61, pp. 11-46; Anderko, A., Pitzer, K.S., AIChE J (1991), 37, pp. 1379-1391; Anderko, A., Pitzer, K.S., Geochim. Cosmochim. Acta (1993), 57, pp. 1657-1680; Anderko, A., Pitzer, K.S., Geochim. Cosmochim. Acta (1993), 57, pp. 4885-4897; Anderko, A., (2000), pp. 75-126. , In J.V. Sengers, R.F. Kayser, C.J. Peters, and H.J. White, Jr. (eds), Equation of State for Fluids and Fluid Mixtures, Part I, Elsevier, Amsterdam; Anderko, A., Wang, P., Rafal, M., Fluid Phase Equilib. (2002), 194-197, pp. 123-142; Apelblat, A., Manzurola, E., J. Chem. Thermodyn. (1999), 31, pp. 869-893; Apelblat, A., Manzurola, E., J. Chem. Thermodyn. (2001), 33, pp. 1133-1155; Archer, D.G., Majer, V., Inglese, A., Wood, R.H., J. Colloid Int. Sci. (1988), 124, pp. 585-590; Azizov, N.D., Zh. Neorgan. Khimii (1998), 43, pp. 323-327; Azizov, N.D., J. Eng. Phys. Termophys. (2003), 76, pp. 450-455; Azizov, N.D., Akhundov, T.S., Izv. Visch. Ucheb. Zaved., Neft' i Gaz (1994), (2), pp. 50-52; Azizov, N.D., Akhundov, T.S., Teplofiz. Vysok. Temp. (1996), 34, pp. 798-801. , (High Temperature 34: 788-91); Azizov, N.D., Akhundov, T.S., Azizova, L.A., Teplofiz. Vysok. Temp. (1996), 34, pp. 973-977. , (High Temperature 34: 959-63); Azizov, N.D., Akhundov, T.S., Zh. Priklad. Khimii (1997), 70, pp. 1955-1959; Azizov, N.D., Akhundov, T.S., Teplofiz. Vysok. Temp. (1998), 36, pp. 385-390. , (High Temperature 36: 363-8); Azizov, N.D., Akhundov, T.S., Teplofiz. Vysok. Temp. (2000), 38, pp. 220-226. , (High Temperature 38: 203-9); Azizov, N.D., Zeinalova, A.B., Teplofiz. Vysok. Temp. (2004), 42, pp. 642-646. , (High Temperature 42: 648-51); Bazaev, A.R., Bazaev, E.A., Teplofiz. Visok. Temp. (2004), 42, pp. 48-57. , High Temp. 42: 44-53; Bazaev, A.R., Abdulagatov, I.M., Magee, J.W., Bazaev, E.A., Ramazanova, A.E., Int. J. Thermophys. (2004), 25, pp. 805-838; Bazaev, A.R., Abdulagatov, I.M., Bazaev, E.A., Abdurashidova, A., J. Chem. Thermodyn. (2007), 39, pp. 385-411; Bell, J.T., Helton, D.M., Rogers, T.G., J. Chem. Eng. Data (1970), 15, pp. 44-46; Belyakov, M.Y., Kiselev, S.B., Rainwater, J.C., J. Chem. Phys. (1997), 107, pp. 3085-3097; Benedict, M., J. Geology (1939), 47, pp. 252-276; Benson, S.W., Copeland, C.S., Pearson, D., J. Chem. Phys. (1953), 21, pp. 2208-2213; Biggerstaff, D.R., Wood, R.H., J. Phys. Chem. (1988), 92, pp. 1988-1994; Bischoff, J.L., Rosenbauer, R.J., Geochim. Cosmochim. Acta (1988), 52, pp. 2121-2126; Bischoff, J.L., Pitzer, K.S., Am. J. Science (1989), 289, pp. 217-248; Blencoe, J.G., Drummond, S.E., Seitz, J.C., Nesbitt, B.E., Int. J. Thermophys. (1996), 17, pp. 179-190; Blum, L., Mol. Phys. (1975), 30, pp. 1529-1535; Bodnar, R.J., Sterner, S.M., Geochim. Cosmochim. Acta (1985), 49, pp. 1855-1859; Born, M., Z. Phys. (1920), 1, pp. 45-48; Boublik, T., J. Chem. Phys. (1970), 53, pp. 471-472; Bradley, D.J., Pitzer, K.S., J. Phys. Chem. (1979), 83, pp. 1599-1603; Brandt, E., Franck, E.U., Wei, Y.S., Sadus, R.J., Phys. Chem. Chem. Phys. (2000), 2, pp. 4157-4164; Brelvi, S.W., O'Connell, J.P., AIChE J. (1971), 18, pp. 1239-1243; Campbell, A.N., Kartzmark, E.M., Bednas, M.E., Herron, J.T., Can. J. Chem. (1954), 32, pp. 1051-1060; Campbell, A.N., Debus, G.H., Kartzmark, E.M., Can. J. Chem. (1955), 33, pp. 1508-1514; Carnahan, N.F., Starling, K.E., J. Chem. Phys. (1969), 51, pp. 635-636; Christoforakos, M., Franck, E.U., Ber. Bunsenges. Phys. Chem. (1986), 90, pp. 780-789; Cibulka, I., Hn Dkovský, L., Marek, T., J. Chem. Thermodyn. (2007), 39, pp. 1286-1291; Cibulka, I., Hn Dkovský, L., Marek, T., J. Chem. Thermodyn. (2007), 39, pp. 1292-1299; Clarke, R.G., Tremaine, P.R., J. Phys. Chem. B. (1999), 103, pp. 5131-5144; Connaughton, L.M., Hershey, J.P., Millero, F.J., J. Solution Chem. (1986), 15, pp. 989-1002; Conway, B.E., Verall, R.E., Desnoyers, J.E., Z. Phys. Chem. (Liepzig) (1965), 230, pp. 157-166; Cooney, W.J., O'Connell, J.P., Chem. Eng. Commun. (1987), 56, pp. 341-347; Copeland, C.S., Silverman, J., Benson, S.W., J. Chem. Phys. (1953), 21, pp. 12-16; Corti, H.R., Fernandez-Prini, R., Svarc, F., J. Solution Chem. (1990), 19, pp. 793-809; Corti, H.R., Svarc, F.E., J. Solution Chem. (1995), 24, pp. 121-132; Corti, H.R., (1997), 2, pp. 203-217. , In: Current Topics in Solution Chemistry; Corti, H.R., Simonson, J., J. Solution Chem. (2006), 35, pp. 1057-1074; Criss, C.M., Wood, R.H., J. Chem. Thermod. (1996), 28, pp. 723-741; Crovetto, R., Wood, R.H., Majer, V., J. Chem. Thermodyn. (1990), 22, pp. 231-243; Crovetto, R., Wood, R.H., Majer, V., J. Chem. Thermodyn. (1991), 23, pp. 1139-1146; Crovetto, R., Wood, R.H., Fluid Phase Equil. (1992), 74, pp. 271-288; Crovetto, R., Lvov, S.N., Wood, R.H., J. Chem. Thermodyn. (1993), 25, pp. 127-138; Debye, P., Hückel, E., Zeitschr. Physik (1923), 24, pp. 185-206; Degrange, S., Nouvelle procedure de determination simultanee des proprietes enthalpiques et volumiques des systemes fluides: Application a l'etude des solutions aqueuses d'hydrocarbures jusqu'au domaine critique del'eau (1998), PhD dissertation, Univ. Blaise Pascal University, France; Dibrov, I.A., Mashovets, V.P., Federov, M.K., Zh. Prikl. Khimii (1963), 36, pp. 1250-1253; Dibrov, I.A., Mashovets, V.P., Matveeva, R.P., Zh. Prikl. Khimii (1964), 37, pp. 29-36; Dohrn, R., Prausnitz, J.M., Fluid Phase Equilib. (1990), 61, pp. 53-69; Domanin, D.V., Azizov, N.D., Zarembo, V.I., Zh. Prikl. Khimii (1998), 71, pp. 212-215; Eberz, A., Franck, E.U., Ber. Bunsenges. Phys. Chem. (1995), 99, pp. 1091-1103; Egorov, V.M., Ikornokova, N.Y., Zapiski Vsesoyuz. Mineral. Obshchestva (1973), 102, pp. 272-282; Egorov, V.Y., Zarembo, V.I., Feodorov, M.K., Deposit. ONIITEKHIM (1975), 688, p. 75. , (Cherkassi, USSR); Egorov, V.Y., Zarembo, V.I., Feodorov, M.K., Zh. Prikl. Khimii (1976), 49, pp. 124-128; Ellis, A.J., Golding, R.M., Am. J. Sci. (1963), 261, pp. 47-60; Ellis, A.J., J. Chem. Soc. Section A: Inorganic, Physical, Theoretical (1966), 11, pp. 1579-1584; Ellis, A.J., J. Chem. Soc. Section A: Inorganic, Physical, Theoretical (1967), 4, pp. 660-664; Ellis, A.J., J. Chem. Soc. Section A: Inorganic, Physical, Theoretical (1968), 5, pp. 1138-1143; Ellis, A.J., McFadden, I.M., Chem. Commun. (1968), 9, pp. 516-517; Ellis, A.J., McFadden, I.M., Geochim. Cosmochim. Acta (1972), 36, pp. 413-426; Fenghour, A., Wakeham, W.A., Ferguson, D., Scott, A.C., Watson, J.T.R., J. Chem. Thermodyn. (1993), 25, pp. 1151-1159; Fenghour, A., Wakeham, W.A., Watson, J.T.R., J. Chem. Thermodyn. (1996), 28, pp. 433-446; Fenghour, A., Wakeham, W.A., Watson, J.T.R., J. Chem. Thermodyn. (1996), 28, pp. 447-458; Feodorov, M.K., Zarembo, V.I., Volume Properties of Aqueous Alkali Halides at High Values of State Parameters. (Russ) (1983), Izd. Standartov, Moskva, USSR; Fernández-Prini, R., Corti, H.R., Japas, M.L., High Temperature Aqueous Solutions: Thermodynamic Properties (1992), CRC Press; Fernández-Prini, R., Japas, M.L., Chem. Soc. Rev. (1994), 23, pp. 155-163; Franck, E.U., Tödheide, K., Z. Phys. Chem. (1959), 22, pp. 232-245; Franck, E.U., Lentz, H., Welsch, H., Z. Phys. Chem. (1974), 93, pp. 95-108; Franks, F., Smith, H.T., Trans. Faraday Soc. (1967), 63, pp. 2586-2598; Friedman, H.L., J. Solution Chem. (1972), 1, pp. 387-399; Frost, D.J., Wood, B.J., Geochim. Cosmochim. Acta (1997), 61, pp. 3301-3309; Ganopolsky, J.G., Bianchi, H.L., Corti, H.R., J. Solution Chem. (1996), 25, pp. 377-389; Ganopolsky, J.G., Bianchi, H.L., Corti, H.R., J. Solution Chem. (1996), 25, pp. 391-399; Gates, J.A., Wood, R.H., J. Chem. Eng. Data (1989), 34, pp. 53-56; Gehrig, M., Lentz, H., Franck, E.U., Ber. Bunsenges. Phys. Chem. (1983), 87, pp. 597-600; Gehrig, M., Lentz, H., Franck, E.U., Ber. Bunsenges. Phys. Chem. (1986), 90, pp. 525-533; Glueckauf, E., Trans. Faraday Soc. (1965), 61, pp. 914-921; Gorbachev, S.V., Kondrat'ev, V.P., Androsov, V.I., Zh. Fizich. Khim. (1971), 45, pp. 1566-1567; Gorbachev, S.V., Kondrat'ev, V.P., Androsov, V.I., Zh. Fizich. Khim. (1974), 48, pp. 2675-2677; Gorbachev, S.V., Kondrat'ev, V.P., Androsov, V.I., Kolupaev, V.G., Zh. Fizich. Khim. (1974), 48, pp. 2789-2791. , (Russ. J. Phys. Chem. 48: 1641-2); Grant-Taylor, D.F., J. Solution Chem. (1981), 10, pp. 621-630; Greenwood, H.J., J. Am. Sci. (1969), 267 A, pp. 191-208; Grigoriev, A.P., Nikolaev, A.V., Dokl. Akad. Nauk SSSR (1967), 174, pp. 93-95; Gubbins, K.E., Twu, C.H., (1978), 33, pp. 863-878; Guseynov, A.G., Iskanderov, A.I., Akhundov, R.T., Agaeva, D.A., Akhundov, T.S., (1989), pp. 14-20. , In: Termodyn. i Perenosn Svoystva Veschestv, Sbornik Azerb. Polytechn. Instit., Baku, AzerbSSR; Guseynov, A.G., Iskenderov, A.I., Akhundov, R.T., Imanova, M.V., Tairov, A.D., Dokl. Akad. Nauk AzerbSSR (1990), 46, pp. 37-40; Guseynov, A.G., Iskenderov, A.I., Tairov, A.D., Imanova, M.V., Izv. Vissh. Ucheb. Zaved., Neft' i Gaz (1991), (3), pp. 51-54; Haar, L., Gallagher, J.S., Kell, G., NBS/NRC Steam Tables: Thermodynamic and Transport Properties and Computer Programs for Vapor and Liquid States of Water in SI Units, Hemisphere, Washington (1984); Hakin, A.W., Daisley, D.C., Delgado, L., Liu, J.L., Marriott, R.A., J. Chem. Thermod. (1998), 30, pp. 583-606; Hakin, A.W., Liu, J.L., Marriott, R.A., J. Chem. Thermod. (2000), 32, pp. 1355-1380; Hakin, A.W., Lukacs, M.J., Liu, J.L., J. Chem. Thermod. (2004), 36, pp. 759-772; Haruki, M., Yahiro, Y., Higashi, H., Arai, Y., J. Chem. Eng. Japan (1999), 32, pp. 535-539; Haruki, M., Iwai, Y., Nagao, S., Yahiro, Y., Arai, Y., Ind. Eng. Chem. Res. (2000), 39, pp. 4516-4520; Harvey, A.H., Levelt Sengers, J.H.M., Tanger, J.C., J. Phys. Chem. (1991), 95, pp. 932-937; Heilig, M., Franck, E.U., Ber. Bunsenges. Phys. Chem. (1989), 93, pp. 898-905; Heilig, M., Franck, E.U., Ber. Bunsenges. Phys. Chem. (1990), 94, pp. 27-35; Helgeson, H.C., Kirkham, D.H., Amer. J. Sci. (1974), 274, pp. 1199-1161; Helgeson, H.C., Kirkham, D.H., Amer. J. Sci. (1976), 276, pp. 97-240; Helgeson, H.C., Kirkham, D.H., Flowers, G.C., Amer. J. Sci. (1981), 281, pp. 1249-1516; Hershey, J.P., Damesceno, R., Millero, F.J., J. Solution Chem. (1984), 13, pp. 825-848; Higashi, H., Furuya, T., Ishidao, T., Iwai, Y., Arai, Y., J. Chem. Eng. Japan (1994), 27, pp. 677-679; Hilbert, R., (1979), Ph.D. Dissertation, Universitat Fridericiana Karlsruhe; Hirschfelder, J.O., Curtiss, C.F., Bird, R.B., Molecular Theory of Gases and Liquids (1964), John Wiley & Sons, Inc., New York; Hn Dkovský, L., Majer, V., Wood, R.H., J. Chem. Thermod. (1995), 27, pp. 801-814; Hn Dkovský, L., Wood, R.H., Majer, V., J. Chem. Thermod. (1996), 28, pp. 125-142; Hn Dkovský, L., Wood, R.H., J. Chem. Thermod. (1997), 29, pp. 731-747; Hn Dkovský, L., Degrange, S., Cibulka, I., J. Chem. Thermod. (1998), 30, pp. 557-569; Hn Dkovský, L., Cibulka, I., Hynek, V., J. Chem. Thermod. (2001), 33, pp. 1049-1057; Hn Dkovský, L., Cibulka, I., J. Chem. Thermod. (2003), 35, pp. 1185-1197; Hn Dkovský, L., Cibulka, I., J. Chem. Thermod. (2007), 39, pp. 833-840; Hn Dkovský, L., Konigsberger, E., Cibulka, I., Konigsberger, L.-C., Schrodle, S., May, P.M., Hefter, G., J. Chem. Eng.Data (2007), 52, pp. 2237-2244; Holmes, H.F., Mesmer, R.E., J. Chem. Thermodyn. (1994), 26, pp. 271-298; Holmes, H.F., Busey, R.H., Simonson, J.M., Mesmer, R.E., J. Chem. Thermodyn. (1994), 26, pp. 271-298; Holmes, H.F., Mesmer, R.E., J. Chem. Thermodyn. (1996), 28, pp. 1325-1358; Hovey, J.K., Pitzer, K.S., Tanger, J.C., Bischoff, J.L., Rosenbauer, R.J., J. Phys. Chem. (1990), 94, pp. 1175-1179; Hyncica, P., Hn Dkovský, L., Cibulka, I., J. Chem. Thermod. (2002), 34, pp. 861-873; Hyn Ica, P., Hn Dkovský, L., Cibulka, I., J. Chem. Thermod. (2003), 35, pp. 1905-1915; Hyn Ica, P., Hn Dkovský, L., Cibulka, I., J. Chem. Thermod. (2004), 36, pp. 1095-1103; Hyn Ica, P., Hn Dkovský, L., Cibulka, I., J. Chem. Thermod. (2006), 38, pp. 418-426; Hyn Ica, P., Hn Dkovský, L., Cibulka, I., J. Chem. Thermod. (2006), 38, pp. 801-809; Hyn Ica, P., Hn Dkovský, L., Cibulka, I., J. Chem. Thermod. (2006), 38, pp. 1085-1091; Hynek, V., Obsil, M., Majer, V., Quint, J., Grolier, J.-P.E., Int. J. Thermophys. (1997), 18, pp. 719-732; Hynek, V., Hn Dkovský, L., Cibulka, I., (1997), 29, pp. 1237-1252; Hynek, V., Degrange, S., Polednicek, M., Majer, V., Quint, J., J. Soln. Chem. (1999), 28, pp. 631-636; Imanova, M.V., Izvestiya Vysshikh Uchebnykh Zavedenii, Neft i Gaz (1985), (4), pp. 61-63; Imanova, M.V., Iskenderov, A.I., Akhundov, T.S., (1985), pp. 99-102. , In: Obrabotka visokomin. vod i teplofiz. svoystv, Trudi Instituta Nefti i Khimii, Baku, AzerbSSR; Inglese, A., Robert, P., De Lisi, R., Milioto, S., J. Chem. Thermod. (1996), 28, pp. 873-886; Isono, T., Rikagaku Kenkyusho Hokoku (1980), 56, pp. 103-114; Isono, T., J. Chem. Eng. Data (1984), 29, pp. 45-52; Japas, M.L., Franck, E.U., Ber. Bunsenges. Phys. Chem. (1985), 89, pp. 793-800; Japas, M.L., Franck, E.U., Ber. Bunsenges. Phys. Chem. (1985), 89, pp. 1268-1274; Japas, M.L., Alvarez, J.L., Gutkowski, K., Fernandez-Prini, R., J. Chem. Thermodyn. (1998), 30, pp. 1603-1616; Jedelský, J., Hn Dkovský, L., Cibulka, I., J. Chem. Thermod. (1999), 31, pp. 27-42; Jedelský, J., Hn Dkovský, L., Hyn Ica, P., Cibulka, I., J. Chem. Thermodyn. (2000), 32, pp. 1299-1310; Jiang, S., Pitzer, K.S., AIChE J (1996), 42, pp. 585-594; Johnson, J.G., Oelkers, E.H., Helgeson, H.C., Comput. Geosci. (1992), 18, pp. 899-947; Kabadi, V.N., Danner, R.P., Ind. Eng. Chem. Process Des. Dev. (1985), 24, pp. 537-541; Kabata, Y., Takada, M., Sonobe, R., Sugiura, I., Uematsu, M., J. Chem. Thermodyn. (1993), 25, pp. 649-652; Kabata, Y., Takada, M., Uematsu, M., J. Chem. Thermodyn. (1993), 25, pp. 881-885; Kabata, Y., Sonobe, R., Sugiura, I., Uematsu, M., J. Chem. Thermodyn. (1993), 25, pp. 1005-1009; Kabata, Y., Takada, M., Sonobe, R., Sugiura, I., Uematsu, M., J. Chem. Thermodyn. (1993), 25, pp. 1145-1150; Kamilov, I.K., Malysheva, L.V., Rasulov, A.R., Shakbanov, K.A., Stepanov, G.V., Fluid Phase Equil. (1996), 125, pp. 177-184; Kamilov, I.K., Stepanov, G.V., Abdulagatov, I.M., Rasulov, A.R., Milikhina, E.I., J. Chem. Eng. Data (2001), 46, pp. 1556-1567; Kehiaian, H.V., Fluid Phase Equilib. (1983), 13, pp. 243-252; Kerschbaum, S., Franck, E.U., Ber. Bunsenges. Phys. Chem. (1995), 99, pp. 624-632; Ketsko, V.A., Valyashko, V.M., Deposit. VINITI, IONKh AN SSSR (1984), n.6208-84 Dep; Khaibullin, I.K., Borisov, N.M., Teplofiz. Visok. Temp. (1966), 4, pp. 518-523; Khaibullin, I.K., Novikov, B.E., Teplofiz. Vysok. Temp. (1973), 11, pp. 320-327. , (High Temp. 11: 276-82); Khitarov, N.I., Malinin, S.D., Geokhimiya (1956), 3, pp. 18-27; Kirkwood, J.G., Buff, F.P., J. Chem. Phys. (1951), 19, pp. 774-782; Kiselev, S.B., Povodyrev, A.A., Fluid Phase Equilib. (1992), 79, pp. 33-47; Kiselev, S.B., Fluid Phase Equilib. (1997), 128, pp. 1-28; Kiselev, S.B., Rainwater, J.C., Fluid Phase Equilib. (1997), 141, pp. 129-154; Kiselev, S.B., Rainwater, J.C., J. Chem. Phys. (1998), 109, pp. 643-657; Kiselev, S.B., Rainwater, J.C., Huber, M.L., Fluid Phase Equilib. (1998), 150, pp. 469-478; Kiselev, S.B., Abdulagatov, I.M., Harvey, A.H., Int. J. Thermophys. (1999), 20, pp. 563-588; Kiselev, S.B., Fluid Phase Equilib. (1998), 147, pp. 7-23; Kiselev, S.B., Friend, D.G., Fluid Phase Equilib. (1999), 162, pp. 51-82; Kiselev, S.B., Ely, J.F., Abdulagatov, I.M., Bazaev, E.A., Magee, J.W., Ind. Eng. Chem. Res. (2002), 41, pp. 1000-1016; Kiselev, S.B., Ely, J., J. Chem. Phys. (2003), 119, pp. 8645-8661; Kitajima, H., Kagawa, N., Endo, H., Tsuruno, S., Magee, J.W., J. Chem. Eng. Data (2003), 48, pp. 1583-1586; Knight, C.L., Bodnar, R.J., Geochim. Cosmochim. Acta (1989), 53, pp. 3-8; Kodama, H., Yokokawa, T., Niwa, K., Bull. Chem. Soc. Japan (1970), 43, pp. 1036-1040; Kondo, J., Yasukawa, Y., Uematsu, M., J. Chem. Thermodyn. (2002), 34, pp. 1045-1056; Kosinski, J.J., Anderko, A., Fluid Phase Equilibr. (2001), 183-184, pp. 75-86; Krader, T., Franck, E.U., Ber. Bunsenges. Phys. Chem. (1987), 91, pp. 627-634; Kratky, O., Leopold, H., Stabinger, H., Z. Angew. Phys. (1969), 27, pp. 273-277; Krichevskii, I.R., Russ. J. Phys. Chem. (1967), 41, pp. 1332-1338; Krumgalz, B.S., Mashovets, V.P., Zh. Prikl. Khimii (1964), 37, pp. 2596-2600; Kumar, A., J. Chem. Eng. Data (1986), 31, pp. 347-349; Kumar, A., J. Solution Chem. (1986), 15, pp. 409-412; Kumar, S.K., Suten, V.W., Reid, R.C., Fluid Phase Equilib. (1986), 29, pp. 373-383; Kurochkina, V.V., (1972), Dissertation, Technological Institute, Leningrad, USSR; Kuroki, T., Kagawa, Endo, H., Tsuruno, S., Magee, J.W., J. Chem. Eng. Data (2001), 46, pp. 1101-1106; Laliberte, M., Cooper, W.E., J. Chem. Eng. Data (2004), 49, pp. 1141-1151; Larsen, B., Rasaiah, J.C., Stell, G., Mol. Phys. (1977), 33, pp. 987-1027; Lee, R.J., Di Giulio, R.M., Jeter, S.M., Teja, A.S., ASHRAE Trans (1990), 96, pp. 702-708; Lemire, R.J., Saluja, P.P.S., Campbell, A.B., J. Soln. Chem. (1992), 21, pp. 507-523; Lentz, H., Rev. Sci. Instrum. (1969), 40, pp. 371-372; Lentz, H., Franck, E.U., Ber. Bunsenges. Phys. Chem. (1969), 73, pp. 28-35; Levelt Sengers, J.M.H., (1991), pp. 1-56. , In: T.J. Bruno and J.N. Ely (eds), Supercritical Fluid Technology: Reviews in Modern Theory and Applications. Chapter 1, CRC Press; Lo Surdo, A., Alzola, E.M., Millero, F.J., J. Chem. Thermodyn. (1982), 14, pp. 649-662; Lvov, S.N., Zarembo, V.I., Gilyarov, V.N., Geokhimiya (1981), 4, pp. 505-516; Magee, J.W., Kagawa, N., J. Chem. Eng. Data (1998), 43, pp. 1082-1090; Majer, V., Gates, J.A., Inglese, A., Wood, R.H., J. Chem. Thermodyn. (1988), 20, pp. 949-968; Majer, V., Inglese, A., Wood, R.H., J. Chem. Thermodyn. (1989), 21, pp. 321-329; Majer, V., Inglese, A., Wood, R.H., J. Chem. Thermodyn. (1989), 21, pp. 397-406; Majer, V., Hui, L., Crovetto, R., Wood, R.H., J. Chem. Thermodyn. (1991), 23, pp. 213-229; Majer, V., Crovetto, R., Wood, R.H., J. Chem. Thermodyn. (1991), 23, pp. 333-344; Majer, V., Hui, L., Crovetto, R., Wood, R.H., J. Chem. Thermodyn. (1991), 23, pp. 365-378; Majer, V., Wood, R.H., J. Chem. Thermodyn. (1994), 26, pp. 1143-1166; Majer, V., Obsil, M., Hefter, G., Grolier, J.-P.E., J. Solution Chem. (1997), 26, pp. 847-875; Majer, V., Degrange, S., Sedlbauer, J., Fluid Phase Equilib. (1999), 158-160, pp. 419-428; Majer, V., Sedlbauer, J., Hn Dkovsky, L., Wood, R.H., Phys. Chem. Chem. Phys. (2000), 2, pp. 2907-2917; Maksimova, I.N., Pravdin, N.N., Razuvaev, V.E., Sergeev, S.V., Fedotov, N.V., (1976), p. 13. , Deposit Doc.VINITI, n3366-76; Mamedov, R.K., Mamedov, F.I., Imanov, S.Y., Garadagi, E.M., (1984), pp. 41-42. , In: Teplofiz. Svoystva Visokokip. Zhidkostey, Trudi Azerb. Instit. Nefti I Khimii, Baku, AzerbSSR; Mansoori, N.F., Carnahan, N.F., Starling, K., Leland, T.W., J. Chem. Phys. (1971), 54, pp. 1523-1525; Marcus, Y., Ion Solvation (1985), John Wiley & Sons Ltd; Marriott, R.A., Hakin, A.W., Liu, J.L., Lutter, E., J. Chem. Thermod. (2001), 33, pp. 959-982; Marshall, W.L., J. Phys. Chem. (1970), 74, pp. 346-355; Mashovets, V.P., Dibrov, I.A., Krumgalz, B.S., Matveeva, R.P., Zh. Prikl. Khimii (1965), 38, pp. 2344-2347; Mashovets, V.P., Puchkov, L.V., Sidorova, S.M., Feodorov, M.K., Zh. Prikl. Khimii (1974), 47, pp. 546-549; Mather, A.E., Sadus, R.J., Franck, E.U., J. Chem. Thermodyn. (1993), 25, pp. 771-779; Melikov, R.A., Aliev, N.M., Imanov, S.Y., Izv. Vissh. Ucheb. Zaved., ser. Neft' i Gaz (1995), (2), pp. 44-46; Melikov, R.A., (1999), 4, pp. 144-147. , In: Scientific Transactions of Azerbaijan State Oil Academy, Power Engineering of Oil and Gas Industry; Melikov, R.A., (2000), pp. 360-363. , In: Proceedings of the conference 'Ratsional. Ispol'zov. Energo-Resursov i Nadezhnost' Elektrooborud.' - 80 years of the Azerbaijan State Oil Academy, Baku, Azerbaijan; Michelberger, T., Franck, E.U., Ber. Bunsenges. Phys. Chem. (1990), 94, pp. 1134-1143; Millero, F.J., Chem. Rev. (1971), 71, pp. 147-176; Millero, F.J., Masterton, W.L., J. Phys. Chem. (1974), 78, pp. 1287-1294; Monnin, C., J. Solution Chem. (1987), 16, pp. 1035-1048; Munakata, T., Kasahara, K., Uematsu, M., J. Chem. Thermodyn. (2002), 34, pp. 807-819; Neichel, M., Franck, E.U., J. Supercritical Fluids (1996), 9, pp. 69-74; Nighswander, J.A., Kalogerakis, N., Mehrotra, A.K., J. Chem. Eng. Data (1989), 34, pp. 355-360; Novotný, P., Söhnel, O., J. Chem. Eng. Data (1988), 33, pp. 49-55; Noyes, A.A., Coolidge, W.D., Zeit. Phys. Chem. Stoech. Verwand (1903), 46, pp. 323-378; Noyes, A.A., Melcher, A.C., Cooper, H.C., Eastman, G.W., Zeit. Phys. Chem. (1910), 70, pp. 335-337; Oakes, C.S., Bodnar, R.J., Simonson, J.M., Pitzer, K.S., Int. J. Thermophys. (1995), 16, pp. 483-492; Oakes, C.S., Simonson, J.M., Bodnar, R.J., J. Solution Chem. (1995), 24, pp. 897-916; Obsil, M., (1997), PhD dissertation, Universite Blaise Pascal, France; Obsil, M., Majer, V., Hefter, G.T., Hynek, V., J. Chem. Eng. Data (1997), 42, pp. 137-142; Obsil, M., Majer, V., Hefter, G.T., Hynek, V., J. Chem. Thermodyn. (1997), 29, pp. 575-593; O'Connell, J.P., Sharygin, A.V., Wood, R.H., Ind. Eng. Chem. Res. (1996), 35, pp. 2808-2812; Ölander, A., Liander, H., Acta Chem. Scand. (1950), 4, pp. 1437-1445; Osada, O., Sato, M., Uematsu, M., J. Chem. Thermodyn. (1999), 31, pp. 451-463; Pabalan, R.T., Pitzer, K.S., Geochim. Cosmochim. Acta (1987), 51, pp. 829-837; Pabalan, R.T., Pitzer, K.S., Geochim. Cosmochim. Acta. (1988), 52, pp. 2393-2404; Panayiotou, C., Vera, J.H., Polym. J. (1982), 14, pp. 681-694; Panayiotou, C., J. Chem. Thermodyn. (2003), 35, pp. 349-381; Panayiotou, C., Tsivintzelis, I., Economou, I.G., Ind. Eng. Chem. Res. (2007), 46, pp. 2628-2636; Patel, M.R., Holste, J.C., Hall, K.R., Eubank, P.T., Fluid Phase Equil. (1987), 36, pp. 279-299; Patel, M.R., Eubank, P.T., J. Chem. Eng. Data (1988), 33, pp. 185-193; Peng, D.Y., Robinson, D.B., Ind. Eng. Chem. Fund. (1976), 15, pp. 59-64; Peng, D.Y., Robinson, D.B., Can. J. Chem. Eng. (1976), 54, pp. 595-608; Pepinov, R.I., Yusufova, B.D., Lobkova, N.V., Zokhrabbekova, G.Y., Teplofiz. Vysok. Temp. (1982), 20, pp. 998-1000; Pepinov, R.I., Lobkova, N.V., Zokhrabbekova, G.Y., Teplofiz. Vysok. Temp. (1983), 21, pp. 827-828; Pepinov, R.I., Lobkova, N.V., Zokhrabbekova, G.Y., Panakhov, I.A., Teplofiz. Vysok. Temp. (1984), 22, pp. 1210-1212; Pepinov, R.I., Lobkova, N.V., Zokhrabbekova, G.Y., Teplofiz. Vysok. Temp. (1985), 23, pp. 399-402; Pepinov, R.I., Lobkova, N.V., Panakhov, I.A., Zokhrabbekova, G.Y., (1988), pp. 90-102. , In: Teplofiz. Svoystva Veschestv i Rastvorov, Sbornik Nauchnikh Trudov IT SO AN SSSR, Novosibirsk; Pepinov, R.I., Lobkova, N.V., Panakhov, I.A., Teplofiz. Vysok. Temp. (1989), 27, pp. 1086-1089; Pepinov, R.I., Lobkova, N.V., Zokhrabbekova, G.Y., Teplofiz. Vysok. Temp. (1992), 30, pp. 76-81; Perfetti, E., Pokrovski, G.S., Ballerat-Busserolles, K., Majer, V., Gibert, F., Geochim. Cosmochim. Acta (2008), 72, pp. 713-731; Petrenko, S.V., Pitzer, K.S., J. Phys. Chem. B (1997), 101, pp. 3589-3595; Phutela, R.C., Pitzer, K.S., J. Chem. Eng. Data (1986), 31, pp. 320-327; Phutela, R.C., Pitzer, K.S., Saluja, P.P.S., J. Chem. Eng. Data (1987), 32, pp. 76-80; Picker, P., Tremblay, E., Jolicoeur, C., J. Solution Chem. (1974), 3, pp. 377-384; Pierotti, R.A., Chem. Rev. (1976), 76, pp. 717-726; Pitzer, K.S., J. Phys. Chem. (1973), 77, pp. 268-277; Pitzer, K.S., J. Phys. Chem. (1986), 90, pp. 1502-1504; Pitzer, K.S., Bischoff, J.L., Rosenbauer, R.J., Chem. Phys. Lett. (1987), 134, pp. 60-63; Pitzer, K.S., Tanger, J.C., Int. J. Thermophys. (1988), 9, pp. 635-648; Pitzer, K.S., J. Chem. Thermodyn. (1989), 21, pp. 1-17; Pitzer, K.S., Acc. Chem. Res. (1990), 23, pp. 333-338; Pitzer, K.S., Anderko, A., Sterner, S.M., Fluid Phase Equilib. (1992), 79, pp. 125-137; Pitzer, K.S., Thermodynamics (1995), 3rd edn. McGraw-Hill, Inc; Pitzer, K.S., Int. J. Thermophys. (1998), 19, pp. 355-366; Plyasunov, A.V., Geochem. Int. (1993), 30, pp. 52-65; Plyasunov, A.V., O'Connell, J.P., Wood, R.H., Geochim. Cosmochim. Acta (2000), 64, pp. 495-512; Plyasunov, A.V., Shock, E.L., Geochim. Cosmochim. Acta (2001), 65, pp. 3879-3900; Polishuk, I., Wisniak, J., Segura, H., Yelash, L.V., Kraska, T., Fluid Phase Equil. (2000), 172, pp. 1-26; Polyakov, E.A., Prikl.Geofizika, Vses. Nauchn.-Issled. Inst. Geofiz. Metodov Razvedki, Sb.Statei (1965), 41, pp. 163-180; Popov, V.N., (1970), 3, pp. 371-379. , In: Tr.Vses.Nauch.-Tekh.Konf.Termodin., Sb. Dokl.Sekts. 'Termodin.Fazovykh Perekhodov, Potoka Neobratimykh Protsessov'/'Teplofiz.Svoistva Veshchestv'; Popov, V.N., Malov, B.A., (1972), pp. 129-133. , In: Trud. Moscow Power Eng. Inst; Potter II, R.W., Badcock, R.S., Czamanske, G.K., J. Solution Chem. (1976), 5, pp. 223-230; Povodyrev, A.A., Anisimov, M.A., Sengers, J.V., Levelt Sengers, J.M.H., Physica A. (1997), 244, pp. 298-328; Pryanikova, R.O., Efremova, G.D., (1972), pp. 228-233. , In: O.Y. Samoylov (ed.), Fizich. Khimiya Rastvorov. Nauka, Moskva; Puchalska, D., Atkinson, G., J. Chem. Eng. Data (1994), 36, pp. 449-452; Puchkov, L.V., Matashkin, V.G., Zh. Prikl. Khimii (1970), 43, pp. 1848-1851; Puchkov, L.V., Kurochkina, V.V., (1972), pp. 263-267. , In: Issled. Obl. Neorg. Tekhnol; Puchkov, L.V., Kurochkina, V.V., Matveeva, R.P., Deposit. VINITI USSR (1976), n.3474-76 Dep; Puchkov, L.V., Matashkin, V.G., Matveeva, R.P., Zh. Prikl. Khimii (1979), 52, pp. 1015-1018; Puchkov, L.V., Matashkin, V.G., Matveeva, R.P., Zh. Prikl. Khimii (1979), 52, pp. 1167-1169; Rabezkii, M.G., Bazaev, A.R., Abdulagatov, I.M., Magee, J.W., Bazaev, E.A., J. Chem. Eng. Data (2001), 46, pp. 1610-1618; Rau, H., Kutty, T.R.N., Ber. Bunsenges. Phys. Chem. (1972), 76, pp. 645-651; Ravich, M.I., Borovaya, F.E., Zh. Neorgan. Khimii (1971), 16, pp. 1776-1781; Ravich, M.I., Borovaya, F.E., Zh. Neorgan. Khimii (1971), 16, pp. 3135-3142; Reamer, H.H., Sage, B.H., Lacey, W.N., Ind. Eng. Chem. (1952), 44, pp. 609-615; Redlich, O., Kwong, J.N.S., Chem. Rev. (1949), 44, pp. 233-244; Redlich, O., Mayer, D.M., Chem. Rev. (1964), 64, pp. 221-227; Rivkin, S.L., Kremenevskaya, E.A., Romashin, S.N., Tractuev, O.M., (1984), 2, p. 289. , In V.V. Sytchev and A. Aleksandrov (eds), Proceed. 10th Intern. Conf. on the Properties of Steam. Moscow, USSR. Mir Publ., Moscow; Rodnanskii, I.M., Galinker, I.S., Dokl. Akad. Nauk. SSSR (1955), 105, pp. 115-118; Rodnianski, I.M., Korobkov, V.I., Galinker, I.S., Zh. Fizich. Khimii. (1962), 36, pp. 2216-2219; Rogers, P.S.Z., Pitzer, K.S., J. Phys. Chem. Ref. Data (1982), 11, pp. 15-81; Rogers, P.S.Z., Bradley, D.J., Pitzer, K.S., J. Chem. Eng. Data (1982), 27, pp. 47-50; Rushbrooke, G.S., Stell, G., Hoye, J.S., Mol. Phys. (1973), 26, pp. 1199-1215; Ruzicka, K., Hnedkovsky, L., Cibulka, I., J. Chem. Thermod. (2000), 32, pp. 1657-1668; Safarov, J.T., Shahverdiyev, A.N., High Temp. (2001), 39, pp. 395-400. , Teplofiz. Vis. Temp. 39: 424-9; Safarov, J.T., Shahverdiyev, A.N., Huseynova, S.H., J. Chem. Thermod. (2003), 35, pp. 137-144; Safarov, J.T., Najafov, G.N., Shahverdiyev, A.N., Hassel, E., J. Mol. Liquids (2005), 116, pp. 157-163; Safarov, J.T., Najafov, G.N., Shahverdiyev, A.N., Hassel, E., J. Mol. Liquids (2005), 116, pp. 165-174; Safarov, J.T., J. Mol. Liquids (2006), 123, pp. 139-145; Safarov, J.T., Jannataliyev, R.M., Shahverdiyev, A.N., Hassel, E.P., J. Mol. Liquids (2006), 124, pp. 51-57; Safarov, J.T., Jannataliyev, R.M., Shahverdiyev, A.N., Hassel, E.P., J. Mol. Liquids (2006), 128, pp. 127-133; Sanchez, M., Lentz, H., High Temp.-High Press (1973), 5, pp. 689-699; Sandarusi, J.A., Kidnay, A.J., Yesavage, V.F., Ind. Eng. Chem. Process Des. Dev. (1986), 25, pp. 957-963; Schulte, M.D., Shock, E.L., Obsil, M., Majer, V., J. Chem. Thermodyn. (1999), 31, pp. 1195-1229; Scott, R.L., Van Konynenburg, P.H., Faraday Disc. Chem. Soc. (1970), 49, pp. 87-97; Sedlbauer, J., Yezdimer, E.M., Wood, R.H., J. Chem. Thermodyn. (1998), 30, pp. 3-12; Sedlbauer, J., O'Connell, J.P.O., Wood, R.H., Chem. Geol. (2000), 163, pp. 43-63; Sedlbauer, J., Wood, R.H., J. Phys. Chem. B (2004), 108, pp. 11838-11849; Seitz, J.C., Blencoe, J.G., Geochim. Cosmochim. Acta (1999), 63, pp. 1559-1569; Seward, T.M., Franck, E.U., Ber. Bunsenges. Phys. Chem. (1981), 85, pp. 2-7; Shahverdiyev, A.N., Safarov, J.T., Phys. Chem. Chem. Phys. (2002), 4, pp. 979-986; Sharygin, A.V., Wood, R.H., J. Chem. Thermod. (1996), 28, pp. 851-872; Sharygin, A.V., Wood, R.H., J. Chem. Thermodyn. (1997), 29, pp. 125-148; Sharygin, A.V., Wood, R.H., J. Chem. Thermod. (1998), 30, pp. 1555-1570; Sheydlin, F.E., Shleifer, S.G., Zh. Tekh. Fiz. (1953), 23, pp. 1427-1429; Shmonov, V.M., Sadus, R.J., Franck, E.U., J. Phys. Chem. (1993), 97, pp. 9054-9059; Shmulovich, K.I., Shmonov, V.N., Zakirov, I.V., (1979), pp. 81-89. , In Metodi Eksp. Issled. Gidroterm. Ravnov, Izd.Nauka, Novosibirsk; Shmulovich, K.I., Shmonov, V.M., Mazur, V.A., Kalinichev, A.O., Geokhimiya (1980), (12), pp. 1807-1824; Shmulovich, K.I., Tkachenko, S.I., Plyasunova, N.V., (1994), pp. 193-214. , In: K.I. Schmulovich et al. (eds), Fluids in the Crust: Equilibrium and Transport Properties, Chapman & Hall; Shock, E.L., Helgeson, H.C., Geochim. Cosmochim. Acta (1988), 52, pp. 2009-2036; Shock, E.L., Helgeson, H.C., Sverjensky, D.A., Geochim. Cosmochim. Acta (1989), 53, pp. 2157-2183; Shock, E.L., Helgeson, H.C., Geochim. Cosmochim. Acta (1990), 54, pp. 915-945; Shock, E.L., Sassani, D.C., Willis, M., Sverjensky, D.A., Geochim. Cosmochim. Acta (1997), 61, pp. 907-950; Shvedov, D., Tremaine, P.R., J. Solution Chem. (1997), 26, pp. 1113-1143; Simonson, J.M., Oakes, C.S., Bodnar, R.J., J. Chem. Thermodyn. (1994), 26, pp. 345-359; Smirnova, N.A., Victorov, A.I., Fluid Phase Equilib. (1987), 34, pp. 235-263; Smirnova, N.A., Victorov, A.V., (2000), pp. 256-288. , In J.V. Sengers, R.F. Kayser, C.J. Peters and H.J. White, Jr. (eds), Equation of State for Fluids and Fluid Mixtures, Part I, Elsevier, Amsterdam; Soave, G., Chem. Eng. Sci. (1972), 27, pp. 1197-1203; Sourirajan, S., Kennedy, G.C., Am. J. Sci. (1962), 260, pp. 115-141; Sretenskaya, N.G., Zakirov, I.V., Shmonov, V.M., Shmulovich, K.I., (1986), pp. 315-334. , In V.A. Zharikov and V.V. Fed'kin (eds), Eksperiment v reshenii aktual'nikh zadach geologii, Moscow, Nauka; Sretenskaja, N.G., Sadus, R.J., Franck, E.U., J. Phys. Chem. (1995), 99, pp. 4273-4277; Stell, G., Rasaiah, J.C., Narang, H., Mol. Phys. (1972), 23, pp. 393-406; Stell, G., Rasaiah, J.C., Narang, H., Mol. Phys. (1974), 27, pp. 1393-1414; Sterner, S.M., Bodnar, R.J., Geochim. Cosmochim. Acta (1984), 48, pp. 2659-2668; Sterner, S.M., Bodnar, R.J., Amer. J. Sci. (1991), 291, pp. 1-54; St Íteská, L., Hn Dkovský, L., Cibulka, I., J. Chem. Thermodyn. (2003), 35, pp. 1199-1212; St Íteská, L., Hn Dkovský, L., Cibulka, I., J. Chem. Thermodyn (2004), 36, pp. 401-407; Sun, T., Ly, D., Teja, A.S., Ind. Eng. Chem. Res. (1995), 34, pp. 1327-1331; Sun, T., Teja, A.S., J. Chem. Eng. Data (2003), 48, pp. 198-202; Sun, T., Teja, A.S., J. Chem. Eng. Data (2004), 49, pp. 1311-1317; Sun, T., Teja, A.S., J. Chem. Eng. Data (2004), 49, pp. 1843-1846; Sverjensky, D.A., Shock, E.L., Helgeson, H.C., Geochim. Cosmochim. Acta (1997), 61, pp. 1359-1412; Takiguchi, Y., Osada, O., Uematsu, M., J. Chem. Thermodyn. (1996), 28, pp. 1375-1385; Tanger, J.C., Helgeson, H.C., Am. J. Sci. (1988), 288, pp. 19-98; Tanger, J.C., Pitzer, K.S., Geochim. Cosmochim. Acta. (1989), 53, pp. 973-987; Thompson, W.H., Snyder, J.R., J. Chem. Eng. Data (1964), 9, pp. 516-520; Traktuev, O.M., Ptitzina, V.P., (1989), Deposit. VINITI, 30.05.1989, Russ., n.3572-B89; Tremaine, P.R., Shvedov, D., Xiao, C., J. Phys. Chem. B. (1997), 101, pp. 409-419; Trevani, L.N., Balodis, E.C., Tremaine, P.R., J. Phys. Chem. B. (2007), 111, pp. 2015-2024; Tsay, S.V., Gilyarov, V.N., Puchkov, L.V., Zarembo, V.I., Zh. Prikl. Khim. (1986), 59, pp. 987-991; Tsay, S.V., Gilyarov, V.N., Puchkov, L.V., Zarembo, V.I., Zh. Prikl. Khim. (1986), 59, pp. 992-994; Tsay, S.V., Gilyarov, V.N., Zarembo, V.I., Puchkov, L.V., Geokhimiya (1988), 7, pp. 968-972; Tsatsuryan, K.D., Alexandrov, A.A., Kochetkov, A.I., Teploenergetika (1992), (6), pp. 60-64; Urusova, M.A., Zh. Neorgan. Khimii (1975), 20, pp. 3103-3110. , Russ. J. Inorg. Chem. 20: 1717-21 (in English); Valyashko, V.M., Abdulagatov, I.M., Levelt Sengers, M.H., J. Chem. Eng. Data (2000), 45, pp. 1139-1149; Vandana, V., Teja, A.S., Fluid Phase Equil. (1995), 103, pp. 113-118; Victorov, A.I., Fredenslund, A., Smirnova, N.A., Fluid Phase Equilib. (1991), 66, pp. 187-210; Victorov, A.I., Smirnova, N.A., (1985), pp. 37-42. , In: Proc. of VII Mendeleev's Discussions. Khar'kov; Wagner, W., Pruß, A., J. Phys. Chem. Ref. Data (2002), 31, pp. 387-535; Wagner, W., Kleinrahn, R., Lösch, H.W., Watson, J.T.R., Majer, V., (2003), In A.R.H. Goodwin, K.N. Marsh and W.A. Wakeham (eds), Measurements of the Thermodynamic Properties Single Phases, Chapter 5. IUPAC, Physical Chemistry Division, Commission on Thermodynamics, Elsevier; Wang, P., Pitzer, K.S., Simonson, J.M., J. Phys. Chem. Ref. Data (1998), 27, pp. 971-991; Wei, Y.S., Sadus, R.J., AIChE J. (2000), 46, pp. 169-196; Welsch, H., (1973), p. 41. , Dissert.; Fakultat fur Chemie; University Karlsruhe, Karlsruhe; Wheeler, J.C., Ber. Bunsenges. Phys. Chem. (1972), 76, pp. 308-318; Wood, R.H., Carter, R.W., Quint, J.R., Majer, V., Thompson, P.T., J. Chem. Thermodyn. (1994), 26, pp. 225-249; Wu, G., Heiling, M., Lentz, H., Franck, E.U., Ber. Bunsenges. Phys. Chem. (1990), 94, pp. 24-27; Xiao, C., Tremaine, P.R., J. Solution Chem. (1997), 26, pp. 277-294; Xiao, C., Bianchi, H., Tremaine, P.R., J. Chem. Thermod. (1997), 29, pp. 261-286; Xiao, C., Simonson, J.M., Tremaine, P.R., J. Chem. Thermod. (1999), 31, pp. 1055-1065; Xie, W., Trevani, L., Tremaine, P.R., J. Chem. Thermod. (2004), 36, pp. 127-140; Yiling, T., Michelberger, T., Franck, E.U., J. Chem. Thermod. (1991), 23, pp. 105-112; Yokoyama, H., Uematsu, M., J. Chem. Thermodyn. (2003), 35, pp. 813-823; Zaitsev, P.M., Malova, N.S., Kurapova, G.I., Zh. Prikl. Khimii (1996), 69, pp. 575-579; Zakirov, I.V., Geokhimiya (1984), 6, pp. 805-811; Zana, R., Yeager, E., J. Phys. Chem. (1966), 70, pp. 954-956; Zarembo, V.I., Feodorov, M.K., Zh. Prikl. Khimii (1975), 48, pp. 1949-1953; Zawisza, A., Malesinska, B., J. Chem. Eng. Data (1981), 26, pp. 388-391

Citas:

---------- APA ----------
Corti, H.R. & Abdulagatov, I.M. (2008) . pVTx Properties of Hydrothermal Systems. Hydrothermal Experimental Data, 135-193.
http://dx.doi.org/10.1002/9780470094679.ch2
---------- CHICAGO ----------
Corti, H.R., Abdulagatov, I.M. "pVTx Properties of Hydrothermal Systems" . Hydrothermal Experimental Data (2008) : 135-193.
http://dx.doi.org/10.1002/9780470094679.ch2
---------- MLA ----------
Corti, H.R., Abdulagatov, I.M. "pVTx Properties of Hydrothermal Systems" . Hydrothermal Experimental Data, 2008, pp. 135-193.
http://dx.doi.org/10.1002/9780470094679.ch2
---------- VANCOUVER ----------
Corti, H.R., Abdulagatov, I.M. pVTx Properties of Hydrothermal Systems. Hydrothermal Exp. Data. 2008:135-193.
http://dx.doi.org/10.1002/9780470094679.ch2