Geochemistry of Thermal Waters of Ketoi Island, Kuril Island Arc
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Barabanov, L.N., Gidrotermy Kuril’skoi vulkanicheskoi oblasti (Hydrothermal Occurrences in the Kuril Volcanic Area), in two books, Petropavlovsk-Kamchatskii: IV DVNTs AN SSSR, 1976.
Begué, F., Deering, C.D., Gravley, D.M., et al., From source to surface: Tracking magmatic boron and chlorine input into the geothermal systems of the Taupo Volcanic Zone, New Zealand, J. of Volcanol. and Geotherm. Res., 2017. http://dx.doi.org/10.1016/j.jvolgeores.2017.03.008
Bernard, R., Taran, Y., Pennisi, M., et al., Cloride and boron behavior in fluids of Los Humeros geothermal field (Mexico): A model based on the existence of deep acid brine, Applied Geochemistry, 2011, vol. 26, pp. 2064–2073.
Cheshko, A.L. and Esikov, A.D., Deuterium and 18O in naturally occurring waters and sediments in Kamchatka and the Kuril Islands, Vodnye Resursy, 1990, no. 6, pp. 121–129.
Chirkov, A.M., Barabanov, L.N., Basharina, L.A., and Zelenov, K.K., The condition of certain volcanoes on the Kuril Islands in summer 1970, Byull. Vulkanol. St., Moscow: Nauka, 1972, no. 48, pp. 33–39.
Ellis, A.J. and Mahon, W.A.J., Chemistry and Geothermal Systems, Acad. Press, 1977.
Giggenbach, W.F., Geothermal solute equilibria. Derivation of Na–K–Mg–Ca geoindicators, Geochim. et Cosmochim. Acta, 1988, vol. 52, pp. 2749–2765.
Giggenbach, W.F. and Stewart, M.K., Processes controlling the isotopic composition of steam and water discharges from steam vents and steam-heated pools in geothermal areas, Geothermics, 1982, vol. 11, pp. 71–80.
Gorshkov, G.S., Vulkanizm Kuril’skoi ostrovnoi dugi (The Volcanism of the Kuril Island Arc), Moscow: Nauka, 1967.
Ivanov, V.V., On the origin and classification of present-day hydrothermal occurrences, Geokhimiya, 1960, no. 5, pp. 443–449.
Joseph, E.P., Fournier, N., Lindsay, J.V., et al., Chemical and isotopic characteristics of geothermal fluids from Sulphur Springs, Saint Lucia, J. of Volcanol. and Geotherm. Res., 2013, vol. 254, pp. 23–36.
Kalacheva, E., Taran, Y., and Kotenko, T., Geochemistry and solute fluxes of volcano–hydrothermal systems of Shiashkotan, Kuril Islands, J. Volcanol. Geotherm. Res., 2015, vol. 296, pp. 40–54.
Kalacheva, E.G., Rychagov, S.N., Koroleva, G.P., and Nuzhdaev, A.A., The geochemistry of steam hydrothermal occurrences in the Koshelev Volcanic Massif, southern Kamchatka, J. Volcanol. Seismol., 2016a, vol. 10, no. 3, pp. 188–202.
Kalacheva, E., Taran, Y., Kotenko, T., et al., Volcanohydrothermal system of Ebeko volcano, Paramushir, Kuril Islands: geochemistry and solute fluxes of magmatic chlorine and sulfur, J. Volcanol. Geotherm. Res., 2016b, vol. 310, pp. 118–131.
Kalacheva, E.G., Taran, Yu.A., Kotenko, T.A., Inguaggiato, S., and Voloshina, E.V., The hydrothermal system of Mendeleev Volcano, Kunashir Island, Kuril Islands: The geochemistry and the transport of magmatic components, J. Volcanol. Seismol., 2017a, vol. 11, no. 5, pp. 335–352.
Kalacheva, E., Taran, Y., Voloshina, E., and Inguaggiato, S., Hydrothermal system and acid lakes of Golovnin caldera, Kunashir, Kuril Islands, J. Volcanol. Geotherm. Res., 2017b. doi 10.1016/j.jvolgeores.2017.06.001
Markhinin, E.K. and Stratula, D.S., Gidrotermy Kuril’skikh ostrovov (The Hydrothermal Occurrences on the Kuril Islands), Moscow: Nauka, 1977.
Naboko, S.I., Chemical types of volcanic water, in Gidrotermal’nye mineraloobrazuyushchie rastvory oblastei aktivnogo vulkanizma (Hydrothermal Mineral-Forming Brines in Areas of Active Volcanism), Novosibirsk: Nauka, 1974, pp. 8–14.
Noveishii i sovremennyi vulkanizm Rossii (Neotectonic and Recent Volcanism of Russia), Laverov, N.P., Ed., Moscow: Nauka, 2005.
Palandri, J. and Reed, M.H., Reconstruction of in situ composition of sedimentary formation waters, Geochim. et Cosmochim. Acta, 2001, vol. 65, pp. 1741–1767.
Reed, M.H. and Spycher, N.F., Calculation of pH and mineral equilibria in hydrothermal waters with application to geothermometry and studies of boiling and dilution, Geochim. et Cosmochim. Acta, 1984, vol. 48, pp. 1479–1492.
Sakhalinsk: GBUK Sakhalinskii oblastnoi kraevedcheskii muzei (The Sakhalin Region Ethnography Museum), IMGiG DVO RAN, 2015.
Smith, D.J., Jenkin, G.R.T., Naden, J., et al., Anomalous alkaline sulphate fluids produced in a magmatic hydrothermal system–Savo, Solomon Islands, Chemical Geology, 2010, vol. 275, pp. 35–49.
Spravochnik po geokhimii (A Handbook of Geochemistry), Moscow: Nedra, 1990.
Spycher, N., Peiffer, L., Sonnenthal, E.L., et al., Integrated multicomponent solute geothermometry, Geothermics, 2014, vol. 51, pp. 113–123.
Taran, Yu.A., Geokhimiya geotermal’nykh gazov (The Geochemistry of Geothermal Gases), Moscow: Nauk, 1988.
Taran, Yu.A., Gavrilenko, G.M., Chertkova, L.V., and Grichuk, D.V., A geochemical model for the hydrothermal system of Ushishir Volcano, Kuril Islands, Vulkanol. Seismol., 1993, no. 1, pp. 55–68.
Taran, Yu.A., Pokrovskii, B.G., and Dubik, Yu.M., The isotope composition and origin of water in andesitic magmas, Dokl. Acad. Nauk SSSR, 1989, vol. 304, no. 2, pp. 440–443.
Taran, Y., Kalacheva, E., Melnikov, D., et al., Fumarolic vs hydrothermal fluxes of magmatic volatiles from Kuril island arc, NW Pacific, JpGU-AGU Joint Meeting 2017, Chiba, Japan. Abstract SGC52-02.
Taran, Y. and Zelenski, M., Systematics of water isotopic composition and chlorine content in arc-volcanic gases, in The Role of Volatiles in the Genesis, Evolution and Eruption of Arc Magmas, Geological Society, London, Special Publications, 2014, pp. 410–432.
Voitkevich, G.V., Kokin, A.V., Miroshnikov, A.E., Prokhorov, V.G., and Zelenov K.K., Vulkany kak istochniki rudoobrazuyushchikh komponentov osadochnykh tolshch (Volcanoes as Sources of Ore-Forming Components in Sediments), Moscow: Nauka, 1972.
