Felsic magmas of the caldera-forming eruptions on the Iturup Island: the first results of studies of melt inclusions in phenocrysts from pumices of the Lvinaya Past and Vetrovoy Isthmus calderas
The paper reports the first results of the petrological studies of magmatic melts that formed siliceous pyroclastic deposits related to voluminous eruptions on Iturup Island. The caldera-forming eruptions of the Lvinaya Past and the Vetrovoy Isthmus, having similar features, resulted from the evolut...
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Published in: | Russian journal of Pacific geology Vol. 11; no. 1; pp. 46 - 63 |
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Abstract | The paper reports the first results of the petrological studies of magmatic melts that formed siliceous pyroclastic deposits related to voluminous eruptions on Iturup Island. The caldera-forming eruptions of the Lvinaya Past and the Vetrovoy Isthmus, having similar features, resulted from the evolution of silicic melts that originated from partial melting of metabasalts. According to the mineral thermometry results, the melt was crystallized at ~800°C. The phenocrysts from the Vetrovoy Isthmus pumices were crystallized at <1 kbar, while those from the Lvinaya Past were formed at higher pressures. The pyroclastic rock compositions in both calderas correspond to moderately aluminous dacite and rhyolitic dacite of the normal series, whose melts likely did not undergo significant crystallization differentiation before the eruptions. The main volatile components of the magma include H
2
O, CO
2
, S, F, and Cl. Degassing with emission of water–carbon-dioxide fluid accompanied the early crystallization of plagioclase in the Vetrovoy Isthmus pumice. Evidence of pre-eruption melt degassing in the Lvinaya Past were not found. Water release from the melts may be related to both the early magma degassing and the eruptions. The lack of data evidencing the deep differentiation and mixing of contrasting melts implies a relatively small time period between the acid melt appearance and eruptions. |
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AbstractList | The paper reports the first results of the petrological studies of magmatic melts that formed siliceous pyroclastic deposits related to voluminous eruptions on Iturup Island. The caldera-forming eruptions of the Lvinaya Past and the Vetrovoy Isthmus, having similar features, resulted from the evolution of silicic melts that originated from partial melting of metabasalts. According to the mineral thermometry results, the melt was crystallized at ~800 degree C. The phenocrysts from the Vetrovoy Isthmus pumices were crystallized at <1 kbar, while those from the Lvinaya Past were formed at higher pressures. The pyroclastic rock compositions in both calderas correspond to moderately aluminous dacite and rhyolitic dacite of the normal series, whose melts likely did not undergo significant crystallization differentiation before the eruptions. The main volatile components of the magma include H sub(2)O, CO sub(2), S, F, and Cl. Degassing with emission of water-carbon-dioxide fluid accompanied the early crystallization of plagioclase in the Vetrovoy Isthmus pumice. Evidence of pre-eruption melt degassing in the Lvinaya Past were not found. Water release from the melts may be related to both the early magma degassing and the eruptions. The lack of data evidencing the deep differentiation and mixing of contrasting melts implies a relatively small time period between the acid melt appearance and eruptions. The paper reports the first results of the petrological studies of magmatic melts that formed siliceous pyroclastic deposits related to voluminous eruptions on Iturup Island. The caldera-forming eruptions of the Lvinaya Past and the Vetrovoy Isthmus, having similar features, resulted from the evolution of silicic melts that originated from partial melting of metabasalts. According to the mineral thermometry results, the melt was crystallized at ~800°C. The phenocrysts from the Vetrovoy Isthmus pumices were crystallized at <1 kbar, while those from the Lvinaya Past were formed at higher pressures. The pyroclastic rock compositions in both calderas correspond to moderately aluminous dacite and rhyolitic dacite of the normal series, whose melts likely did not undergo significant crystallization differentiation before the eruptions. The main volatile components of the magma include H2O, CO2, S, F, and Cl. Degassing with emission of water-carbon-dioxide fluid accompanied the early crystallization of plagioclase in the Vetrovoy Isthmus pumice. Evidence of pre-eruption melt degassing in the Lvinaya Past were not found. Water release from the melts may be related to both the early magma degassing and the eruptions. The lack of data evidencing the deep differentiation and mixing of contrasting melts implies a relatively small time period between the acid melt appearance and eruptions. The paper reports the first results of the petrological studies of magmatic melts that formed siliceous pyroclastic deposits related to voluminous eruptions on Iturup Island. The caldera-forming eruptions of the Lvinaya Past and the Vetrovoy Isthmus, having similar features, resulted from the evolution of silicic melts that originated from partial melting of metabasalts. According to the mineral thermometry results, the melt was crystallized at ~800°C. The phenocrysts from the Vetrovoy Isthmus pumices were crystallized at <1 kbar, while those from the Lvinaya Past were formed at higher pressures. The pyroclastic rock compositions in both calderas correspond to moderately aluminous dacite and rhyolitic dacite of the normal series, whose melts likely did not undergo significant crystallization differentiation before the eruptions. The main volatile components of the magma include H 2 O, CO 2 , S, F, and Cl. Degassing with emission of water–carbon-dioxide fluid accompanied the early crystallization of plagioclase in the Vetrovoy Isthmus pumice. Evidence of pre-eruption melt degassing in the Lvinaya Past were not found. Water release from the melts may be related to both the early magma degassing and the eruptions. The lack of data evidencing the deep differentiation and mixing of contrasting melts implies a relatively small time period between the acid melt appearance and eruptions. |
Author | Rybin, A. V. Kuzmin, D. V. Sokolova, E. N. Smirnov, S. Z. Degterev, A. V. Timina, T. Yu |
Author_xml | – sequence: 1 givenname: S. Z. surname: Smirnov fullname: Smirnov, S. Z. email: ssmr@igm.nsc.ru organization: Sobolev Institute of Geology and Mineralogy, Siberian Branch, Russian Academy of Sciences, National Research Tomsk State University – sequence: 2 givenname: A. V. surname: Rybin fullname: Rybin, A. V. organization: Institute of Marine Geology and Geophysics, Far East Branch, Russian Academy of Sciences – sequence: 3 givenname: E. N. surname: Sokolova fullname: Sokolova, E. N. organization: Sobolev Institute of Geology and Mineralogy, Siberian Branch, Russian Academy of Sciences, National Research Tomsk State University – sequence: 4 givenname: D. V. surname: Kuzmin fullname: Kuzmin, D. V. organization: Sobolev Institute of Geology and Mineralogy, Siberian Branch, Russian Academy of Sciences, National Research Novosibirsk State University – sequence: 5 givenname: A. V. surname: Degterev fullname: Degterev, A. V. organization: Institute of Marine Geology and Geophysics, Far East Branch, Russian Academy of Sciences – sequence: 6 givenname: T. Yu surname: Timina fullname: Timina, T. Yu organization: Sobolev Institute of Geology and Mineralogy, Siberian Branch, Russian Academy of Sciences |
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Cites_doi | 10.1093/petrology/egu021 10.2138/am-1996-9-1016 10.1063/1.1702680 10.1007/s00410-004-0553-7 10.1093/petroj/40.3.381 10.1007/s00410-015-1160-5 10.1016/S0009-2541(00)00324-7 10.1007/s00445-014-0800-3 10.1016/j.earscirev.2010.07.001 10.1007/s00410-013-0932-z 10.1016/S0024-4937(00)00056-6 10.1093/petrology/egh077 10.1016/j.jvolgeores.2005.01.004 10.1093/petrology/32.2.365 10.1093/petrology/egr046 10.1016/j.jvolgeores.2009.07.015 10.2138/am-1995-1-210 10.1016/j.gca.2008.10.034 10.2138/am.2005.1769 10.1111/j.1751-908X.1980.tb00273.x 10.1016/j.jvolgeores.2013.03.007 10.1007/s00445-014-0794-x |
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Keywords | metabasalts and Iturup Island pumice caldera-forming eruptions degassing melt inclusions calderas pyroclastic rocks melting volatiles acid melts |
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SubjectTerms | Calderas Carbon dioxide Crystallization Degassing Earth and Environmental Science Earth Sciences Geology Islands Magma Melting Petrology Silica |
Title | Felsic magmas of the caldera-forming eruptions on the Iturup Island: the first results of studies of melt inclusions in phenocrysts from pumices of the Lvinaya Past and Vetrovoy Isthmus calderas |
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