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Minubayeva, Z., Seward, T.M. (2010) Molybdic acid ionisation under hydrothermal conditions to 300°C. Geochimica et Cosmochimica Acta, 74 (15) 4365-4374 doi:10.1016/j.gca.2010.04.054

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Reference TypeJournal (article/letter/editorial)
TitleMolybdic acid ionisation under hydrothermal conditions to 300°C
JournalGeochimica et Cosmochimica Acta
AuthorsMinubayeva, Z.Author
Seward, T.M.Author
Year2010 (August)Volume74
Page(s)4365-4374Issue15
PublisherElsevier BV
DOIdoi:10.1016/j.gca.2010.04.054Search in ResearchGate
Mindat Ref. ID353697Long-form Identifiermindat:1:5:353697:5
GUID84084957-c9ec-4c76-8b42-63b10dd036de
Full ReferenceMinubayeva, Z., Seward, T.M. (2010) Molybdic acid ionisation under hydrothermal conditions to 300°C. Geochimica et Cosmochimica Acta, 74 (15) 4365-4374 doi:10.1016/j.gca.2010.04.054
Plain TextMinubayeva, Z., Seward, T.M. (2010) Molybdic acid ionisation under hydrothermal conditions to 300°C. Geochimica et Cosmochimica Acta, 74 (15) 4365-4374 doi:10.1016/j.gca.2010.04.054
In(2010, August) Geochimica et Cosmochimica Acta Vol. 74 (15) Elsevier BV

References Listed

These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.

Arutyunyan (1966) Geokhimiya The stability of water-soluble forms of molybdenum in sulphur-containing solutions at high temperatures 4, 479
Not Yet Imported: Marine Chemistry - journal-article : 10.1016/0304-4203(91)90002-E

If you would like this item imported into the Digital Library, please contact us quoting Journal ID 55242
Ivanova (1975) Geokhimiya Equilibria in the molybdenum trioxide–water system in the 25–300°C range 2, 234
Kolonin G. R., and Laptev Y. V. (1975) Spectrophotometric study of temperature influence on tiomolybdate complexes. in Experimental Studies in Mineralogy, Akad. Nauk USSR, Novosibirsk, 38–43.
Kolonin G. R., Laptev Y. V., and Biteikina R. P. (1975) Formation condition of molybdenite and powellite in hydrotermal solutions. in Experimental Studies in Mineralogy, Akad. Nauk USSR, Novosibirsk, 27–33.
Kudrin (1985) Geokhimiya Experimental study of solubility of tugarinovite MoO2 in aqueous solutions at high temperatures 6, 870
Kudrin (1989) Geokhimiya Behavior of Mo in aqueous NaCl and KCl solutions at 300–450°C 1, 99
Lentz (2000) Econ. Geol. Bull. Soc. Econ. Geol. A low F pegmatite-related mo skarn from the southwestern Grenville province, Ontario, Canada: phase equilibria and petrogenetic implications 95, 1319
Maksimova (1976) Ukr. Khim. Zh. (Russ. Ed.) Study of hydrolysis of sodium chromate, molybdate, and tungstate in aqueous solutions at 15–90°C 42, 1019
Seward (1986) in: Monograph Series on Mineral Deposits Waimangu geothermal field 26, 81
Solymosi (1977) Acta Physica et Chemica Thermal stability of perchloric acid 23, 317
Tugarinov (1973) Geokhimiya Physicochemical conditions of molybdenite formation in hydrothermal uranium–molybdenum deposits 7, 975
Urusov V. S., Ivanova G. F., and Khodakovskii I. L. (1967) Energy and thermodynamic characteristics of tungstates and molybdates in connection with some features of their geochemistry. Geokhimiya (10), 1050–1063.
Wahrenberger C., Seward T. M., and Dietrich V. (2002). Volatile trace element transport in high temperature gases from Kudriavy volcano (Iturup, Kurile Islands, Russia). In Water Rock Interactions, Ore Deposits and Environmental Geochemistry, Geochemical Society Spec. Publ. 7 (eds. R. Hellmann and S.A. Wood), pp. 307–327.
Zhidikova (1971) Geokhimiya Powellite activity product at 25°C 4, 427
Zhidikova (1971) Geokhimiya Determination of thermodynamic constants of calcium molybdate (powellite) and sodium molybdate 9, 1149
Zhidikova (1973) Zh. Neorg. Khim. Experimental determination of the activity coefficients of sodium molybdate in aqueous solutions at 25 and 300°C 18, 1160
Zinov’ev (1961) Zh. Neorg. Khim. The thermal decomposition of perchloric acid 6, 271


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