Genesis of Quaternary volcanism of high-Mg andesitic rocks in the northeast Kamchatka Peninsula

Arc magmatism is a product of subduction factory, involving thermal and chemical interactions between a subducted slab as a material input and mantle wedge as a processing factory. In turn, the compositions of arc magma provide invaluable information concerning the material input and the interaction...

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Main Authors: Nishizawa Tatsuji, Nakamura Hitomi, Churikova T., Gordeychik B., Ishizuka Osamu, Iwamori Hikaru
Format: Text
Language:English
Japanese
Published: 2016
Subjects:
Online Access:http://repo.kscnet.ru/2941/
http://repo.kscnet.ru/2941/1/Nishizawa_2016%20JPGU.pdf
http://repo.kscnet.ru/2941/2/Nishizawa_2016%20JPGU%20Jp.pdf
http://www2.jpgu.org/meeting/2016/session/PDF/S-VC48/SVC48-02_e.pdf
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spelling ftinstvs:oai:repo.kscnet.ru:2941 2023-05-15T16:58:54+02:00 Genesis of Quaternary volcanism of high-Mg andesitic rocks in the northeast Kamchatka Peninsula Nishizawa Tatsuji Nakamura Hitomi Churikova T. Gordeychik B. Ishizuka Osamu Iwamori Hikaru 2016 text http://repo.kscnet.ru/2941/ http://repo.kscnet.ru/2941/1/Nishizawa_2016%20JPGU.pdf http://repo.kscnet.ru/2941/2/Nishizawa_2016%20JPGU%20Jp.pdf http://www2.jpgu.org/meeting/2016/session/PDF/S-VC48/SVC48-02_e.pdf en ja eng jpn http://repo.kscnet.ru/2941/1/Nishizawa_2016%20JPGU.pdf http://repo.kscnet.ru/2941/2/Nishizawa_2016%20JPGU%20Jp.pdf Nishizawa Tatsuji <http://repo.kscnet.ru/view/creators/Nishizawa=3ATatsuji=3A=3A.html>, Nakamura Hitomi <http://repo.kscnet.ru/view/creators/Nakamura=3AHitomi=3A=3A.html>, Churikova T. <http://repo.kscnet.ru/view/creators/Churikova=3AT=2E=3A=3A.html>, Gordeychik B. <http://repo.kscnet.ru/view/creators/Gordeychik=3AB=2E=3A=3A.html>, Ishizuka Osamu <http://repo.kscnet.ru/view/creators/Ishizuka=3AOsamu=3A=3A.html>, Iwamori Hikaru <http://repo.kscnet.ru/view/creators/Iwamori=3AHikaru=3A=3A.html> (2016) Genesis of Quaternary volcanism of high-Mg andesitic rocks in the northeast Kamchatka Peninsula // Japan Geoscience Union Meeting, 22-26 May 2016, Makuhari, Messe. pp. SVC48-02. 38.37.25 Вулканология Конференционный материал NonPeerReviewed 2016 ftinstvs 2022-08-09T17:05:57Z Arc magmatism is a product of subduction factory, involving thermal and chemical interactions between a subducted slab as a material input and mantle wedge as a processing factory. In turn, the compositions of arc magma provide invaluable information concerning the material input and the interactions. The northeast Kamchatka Peninsula is an ideal field to examine such interactions and relationships, being characterized by (1) subduction of the Emperor Seamount Chain (Davaille and Lees, 2004), and (2) possible material and thermal interaction among the subducted slab, the overlying mantle wedge and the sub-slab mantle via the edge of subducted Pacific slab (Portnyagin and Manea, 2008). Within this area, a monogenetic volcanic group occurs along the east coast, including high-Mg andesitic rocks and relatively primitive basalts (East Cones, EC (Fedorenko, 1969)). We have conducted geochemical studies of the EC lavas, with bulk rock major and trace elements, and K-Ar and Ar-Ar ages, based on which a possible contribution of subducted seamounts and its relation to the tectonic setting are discussed. The elemental compositions indicate that the lavas from individual cones have distinct mantle sources with different amounts and/or compositions of slab-derived fluids. Based on mass balance, water content and melting phase relations, we estimate the melting P-T conditions to bet ~1200 ℃ at 1.5 GPa, while the slab surface temperature is 620 –730 ℃ (at 50-80 km depth). Compared with the southern part of Kamchatka, the slab surface temperature beneath EC seems to be high due to the thinner Pacific slab associated with the seamount chain and/or the plate rejuvenation from a mantle plume impact (Davaille and Lees, 2004; Manea and Manea, 2007). The K-Ar and Ar-Ar ages of the Middle Pleistocene are consistent with the tephrochronological study (Uspensky and Shapiro, 1984) and the present tectonic setting after 2 Ma (Lander and Shapiro, 2007). The high-Mg andesite with the highest SiO2 content in the EC lavas shows the oldest ... Text Kamchatka Kamchatka Peninsula Institute of Volcanology and Seismology, Petropavlovsk-Kamchatsky: IVS FEB RAS Repository Emperor Seamount Chain ENVELOPE(168.955,168.955,47.893,47.893) Kamchatka Peninsula ENVELOPE(160.000,160.000,56.000,56.000) Pacific
institution Open Polar
collection Institute of Volcanology and Seismology, Petropavlovsk-Kamchatsky: IVS FEB RAS Repository
op_collection_id ftinstvs
language English
Japanese
topic 38.37.25 Вулканология
spellingShingle 38.37.25 Вулканология
Nishizawa Tatsuji
Nakamura Hitomi
Churikova T.
Gordeychik B.
Ishizuka Osamu
Iwamori Hikaru
Genesis of Quaternary volcanism of high-Mg andesitic rocks in the northeast Kamchatka Peninsula
topic_facet 38.37.25 Вулканология
description Arc magmatism is a product of subduction factory, involving thermal and chemical interactions between a subducted slab as a material input and mantle wedge as a processing factory. In turn, the compositions of arc magma provide invaluable information concerning the material input and the interactions. The northeast Kamchatka Peninsula is an ideal field to examine such interactions and relationships, being characterized by (1) subduction of the Emperor Seamount Chain (Davaille and Lees, 2004), and (2) possible material and thermal interaction among the subducted slab, the overlying mantle wedge and the sub-slab mantle via the edge of subducted Pacific slab (Portnyagin and Manea, 2008). Within this area, a monogenetic volcanic group occurs along the east coast, including high-Mg andesitic rocks and relatively primitive basalts (East Cones, EC (Fedorenko, 1969)). We have conducted geochemical studies of the EC lavas, with bulk rock major and trace elements, and K-Ar and Ar-Ar ages, based on which a possible contribution of subducted seamounts and its relation to the tectonic setting are discussed. The elemental compositions indicate that the lavas from individual cones have distinct mantle sources with different amounts and/or compositions of slab-derived fluids. Based on mass balance, water content and melting phase relations, we estimate the melting P-T conditions to bet ~1200 ℃ at 1.5 GPa, while the slab surface temperature is 620 –730 ℃ (at 50-80 km depth). Compared with the southern part of Kamchatka, the slab surface temperature beneath EC seems to be high due to the thinner Pacific slab associated with the seamount chain and/or the plate rejuvenation from a mantle plume impact (Davaille and Lees, 2004; Manea and Manea, 2007). The K-Ar and Ar-Ar ages of the Middle Pleistocene are consistent with the tephrochronological study (Uspensky and Shapiro, 1984) and the present tectonic setting after 2 Ma (Lander and Shapiro, 2007). The high-Mg andesite with the highest SiO2 content in the EC lavas shows the oldest ...
format Text
author Nishizawa Tatsuji
Nakamura Hitomi
Churikova T.
Gordeychik B.
Ishizuka Osamu
Iwamori Hikaru
author_facet Nishizawa Tatsuji
Nakamura Hitomi
Churikova T.
Gordeychik B.
Ishizuka Osamu
Iwamori Hikaru
author_sort Nishizawa Tatsuji
title Genesis of Quaternary volcanism of high-Mg andesitic rocks in the northeast Kamchatka Peninsula
title_short Genesis of Quaternary volcanism of high-Mg andesitic rocks in the northeast Kamchatka Peninsula
title_full Genesis of Quaternary volcanism of high-Mg andesitic rocks in the northeast Kamchatka Peninsula
title_fullStr Genesis of Quaternary volcanism of high-Mg andesitic rocks in the northeast Kamchatka Peninsula
title_full_unstemmed Genesis of Quaternary volcanism of high-Mg andesitic rocks in the northeast Kamchatka Peninsula
title_sort genesis of quaternary volcanism of high-mg andesitic rocks in the northeast kamchatka peninsula
publishDate 2016
url http://repo.kscnet.ru/2941/
http://repo.kscnet.ru/2941/1/Nishizawa_2016%20JPGU.pdf
http://repo.kscnet.ru/2941/2/Nishizawa_2016%20JPGU%20Jp.pdf
http://www2.jpgu.org/meeting/2016/session/PDF/S-VC48/SVC48-02_e.pdf
long_lat ENVELOPE(168.955,168.955,47.893,47.893)
ENVELOPE(160.000,160.000,56.000,56.000)
geographic Emperor Seamount Chain
Kamchatka Peninsula
Pacific
geographic_facet Emperor Seamount Chain
Kamchatka Peninsula
Pacific
genre Kamchatka
Kamchatka Peninsula
genre_facet Kamchatka
Kamchatka Peninsula
op_relation http://repo.kscnet.ru/2941/1/Nishizawa_2016%20JPGU.pdf
http://repo.kscnet.ru/2941/2/Nishizawa_2016%20JPGU%20Jp.pdf
Nishizawa Tatsuji <http://repo.kscnet.ru/view/creators/Nishizawa=3ATatsuji=3A=3A.html>, Nakamura Hitomi <http://repo.kscnet.ru/view/creators/Nakamura=3AHitomi=3A=3A.html>, Churikova T. <http://repo.kscnet.ru/view/creators/Churikova=3AT=2E=3A=3A.html>, Gordeychik B. <http://repo.kscnet.ru/view/creators/Gordeychik=3AB=2E=3A=3A.html>, Ishizuka Osamu <http://repo.kscnet.ru/view/creators/Ishizuka=3AOsamu=3A=3A.html>, Iwamori Hikaru <http://repo.kscnet.ru/view/creators/Iwamori=3AHikaru=3A=3A.html> (2016) Genesis of Quaternary volcanism of high-Mg andesitic rocks in the northeast Kamchatka Peninsula // Japan Geoscience Union Meeting, 22-26 May 2016, Makuhari, Messe. pp. SVC48-02.
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