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Tolstykh, M L; Naumov, V B; Gavrilenko, M G; Ozerov, AYu; Kononkova, N N (2012): Major and trace element composition of melts from the Gorely volcanic center, southern Kamchatka [dataset publication series]. PANGAEA, https://doi.org/10.1594/PANGAEA.793071, Supplement to: Tolstykh, ML et al. (2012): Chemical composition, volatile components, and trace elements in the melts of the Gorely volcanic center, southern Kamchatka: Evidence from inclusions in minerals. Geochemistry International, 50(6), 522-550, https://doi.org/10.1134/S0016702912060079

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Abstract:
Melt inclusions in olivine and plagioclase phenocrysts from rocks (magnesian basalt, basaltic andesite, andesite, ignimbrite, and dacite) of various age from the Gorely volcanic center, southern Kamchatka, were studied by means of their homogenization and by analyzing the glasses in 100 melt inclusions on an electron microprobe and 24 inclusions on an ion probe. The SiO2 concentrations of the melts vary within a broad range of 45-74 wt%, as also are the concentrations of other major components. According to their SiO2, Na2O, K2O, TiO2, and P2O5 concentrations, the melts are classified into seven groups. The mafic melts (45-53 wt% SiO2) comprise the following varieties: potassic (on average 4.2 wt% K2O, 1.7 wt% Na2O, 1.0 wt% TiO2, and 0.20 wt% P2O5), sodic (3.2% Na2O, 1.1% K2O, 1.1% TiO2, and 0.40% P2O5), and titaniferous with high P2O5 concentrations (2.2% TiO2, 1.1% P2O5, 3.8% Na2O, and 3.0% K2O). The melts of intermediate composition (53-64% SiO2) also include potassic (5.6% K2O, 3.4% Na2O, 1.0% TiO2, and 0.4% P2O5) and sodic (4.3% Na2O, 2.8% K2O, 1.3% TiO2, and 0.4% P2O5) varieties. The acid melts (64-74% SiO2) are either potassic (4.5% K2O, 3.6% Na2O, 0.7% TiO2, and 0.15% P2O5) or sodic (4.5% Na2O, 3.1% K2O, 0.7% TiO2, and 0.13% P2O5). A distinctive feature of the Gorely volcanic center is the pervasive occurrence of K-rich compositions throughout the whole compositional range (silicity) of the melts. Melt inclusions of various types were sometimes found not only in a single sample but also in the same phenocrysts. The sodic and potassic types of the melts contain different Cl and F concentrations: the sodic melts are richer in Cl, whereas the potassic melts are enriched in F. We are the first to discover potassic melts with very high F concentrations (up to 2.7 wt%, 1.19 wt% on average, 17 analyses) in the Kuriles and Kamchatka. The average F concentration in the sodic melts is 0.16 wt% (37 analyses). The melts are distinguished for their richness in various groups of trace elements: LILE, REE (particularly HREE), and HFSE (except Nb). All of the melts share certain geochemical features. The concentrations of elements systematically increase from the mafic to acid melts (except only for the Sr and Eu concentrations, because of active plagioclase fractionation, and Ti, an element contained in ore minerals). The paper presents a review of literature data on volcanic rocks in the Kurile-Kamchatka area in which melt inclusions with high K2O concentrations (K2O/Na2O > 1) were found. K-rich melts are proved to be extremely widespread in the area and were found on such volcanoes as Avachinskii, Bezymyannyi, Bol'shoi Semyachek, Dikii Greben', Karymskii, Kekuknaiskii, Kudryavyi, and Shiveluch and in the Valaginskii and Tumrok Ranges.
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Median Latitude: 52.547213 * Median Longitude: 158.054551 * South-bound Latitude: 52.510200 * West-bound Longitude: 157.989500 * North-bound Latitude: 52.585900 * East-bound Longitude: 158.128900
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11 datasets

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Datasets listed in this publication series

  1. Tolstykh, ML; Naumov, VB; Gavrilenko, MG et al. (2012): (Table 7) Major element oxides of glasses in melt inclusions in a single plagioclase phenocryst from sample Gor-60. https://doi.org/10.1594/PANGAEA.793065
  2. Tolstykh, ML; Naumov, VB; Gavrilenko, MG et al. (2012): (Table 8) Major element oxides of glasses in melt inclusions in a single plagioclase phenocryst from sample Gor-188. https://doi.org/10.1594/PANGAEA.793066
  3. Tolstykh, ML; Naumov, VB; Gavrilenko, MG et al. (2012): (Table 11) Fluorine and trace element composition of melt inclusions in plagioclase and groundmass in rocks from Gorely volcano. https://doi.org/10.1594/PANGAEA.793070
  4. Tolstykh, ML; Naumov, VB; Gavrilenko, MG et al. (2012): (Table 10) Fluorine and trace element composition of melt inclusions in olivine and plagioclase from rocks from Gorely volcano. https://doi.org/10.1594/PANGAEA.793068
  5. Tolstykh, ML; Naumov, VB; Gavrilenko, MG et al. (2012): (Table 6) Major element oxides of glasses in melt inclusions in olivine and plagioclase from rocks of Gorely volcano. https://doi.org/10.1594/PANGAEA.793064
  6. Tolstykh, ML; Naumov, VB; Gavrilenko, MG et al. (2012): (Table 9) Major element oxides of various melt types from Gorely volcanic center. https://doi.org/10.1594/PANGAEA.793067
  7. Tolstykh, ML; Naumov, VB; Gavrilenko, MG et al. (2012): (Table 2) Major element oxides of olivine in rocks obtained from the Gorely volcanic center. https://doi.org/10.1594/PANGAEA.793060
  8. Tolstykh, ML; Naumov, VB; Gavrilenko, MG et al. (2012): (Table 5) Major element oxides of ore minerals in rocks obtained from the Gorely volcanic center. https://doi.org/10.1594/PANGAEA.793063
  9. Tolstykh, ML; Naumov, VB; Gavrilenko, MG et al. (2012): (Table 3) Major element oxides of plagioclase in rocks obtained from the Gorely volcanic center. https://doi.org/10.1594/PANGAEA.793061
  10. Tolstykh, ML; Naumov, VB; Gavrilenko, MG et al. (2012): (Table 4) Major element oxides of pyroxene in rocks obtained from the Gorely volcanic center. https://doi.org/10.1594/PANGAEA.793062
  11. Tolstykh, ML; Naumov, VB; Gavrilenko, MG et al. (2012): (Table 1) Major element oxides of rocks obtained from the Gorely volcanic center. https://doi.org/10.1594/PANGAEA.793059