First data on magma ascent and residence times retrieved from Fe-Mg and trace element zonation in olivine phenocrysts from Kamchatka basalts

Compositional zonation in olivine phenocrysts and diffusion modelling have been used in the last ten years to estimate magma residence times and the duration of magma ascent. The fundamental assumption is that mixing with newly injected magma into a reservoir triggers diffusional exchange between ma...

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Main Authors: Gordeychik Boris, Churikova Tatiana, Kronz Andreas, Simakin Alexander, Wörner Gerhard
Format: Text
Language:English
Published: 2016
Subjects:
Online Access:http://repo.kscnet.ru/2944/
http://repo.kscnet.ru/2944/1/Gordeychik_2016%20EGU.pdf
http://meetingorganizer.copernicus.org/EGU2016/EGU2016-12839.pdf
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spelling ftinstvs:oai:repo.kscnet.ru:2944 2023-05-15T16:58:44+02:00 First data on magma ascent and residence times retrieved from Fe-Mg and trace element zonation in olivine phenocrysts from Kamchatka basalts Gordeychik Boris Churikova Tatiana Kronz Andreas Simakin Alexander Wörner Gerhard 2016-04-16 text http://repo.kscnet.ru/2944/ http://repo.kscnet.ru/2944/1/Gordeychik_2016%20EGU.pdf http://meetingorganizer.copernicus.org/EGU2016/EGU2016-12839.pdf en eng http://repo.kscnet.ru/2944/1/Gordeychik_2016%20EGU.pdf Gordeychik Boris <http://repo.kscnet.ru/view/creators/Gordeychik=3ABoris=3A=3A.html>, Churikova Tatiana <http://repo.kscnet.ru/view/creators/Churikova=3ATatiana=3A=3A.html>, Kronz Andreas <http://repo.kscnet.ru/view/creators/Kronz=3AAndreas=3A=3A.html>, Simakin Alexander <http://repo.kscnet.ru/view/creators/Simakin=3AAlexander=3A=3A.html>, Wörner Gerhard <http://repo.kscnet.ru/view/creators/W=F6rner=3AGerhard=3A=3A.html> (2016) First data on magma ascent and residence times retrieved from Fe-Mg and trace element zonation in olivine phenocrysts from Kamchatka basalts // Geophysical Research Abstracts. Vol. 18. pp. EGU2016-12839. 38.37.25 Вулканология Острый Толбачик Плоский Толбачик Шивелуч Ключевской Статья NonPeerReviewed 2016 ftinstvs 2022-08-09T17:05:57Z Compositional zonation in olivine phenocrysts and diffusion modelling have been used in the last ten years to estimate magma residence times and the duration of magma ascent. The fundamental assumption is that mixing with newly injected magma into a reservoir triggers diffusional exchange between mafic olivine crystals and more evolved magma and that this magma mixing eventually triggers eruption. If depth of mixing is known, this translates to ascent rates of magmas to the surface. We applied this approach to a series of different arc basalt lavas from Kamchatka to constrain the rates of magma ascent and magma resident in what is one of the most active subduction zones in the world that is also dominated by an abundance of unusually mafic magmas. Our sample collection cover the principal modes of arc magmatism in Kamchatka: from different volcanic complexes (stratovolcano, dikes, summit eruptions, monogenetic cones), of different age (from Late-Pleistocene to Holocene and recent eruptions), from different magmatic regimes (long-lived volcanoes vs. monogenetic eruptions) and different major element composition (from basalt to basaltic andesite of different geochemical character including LILE enrichments). We analyzed and modelled zonation profiles for a range of elements with different diffusivities (e.g. Mg-Fe, Ca, Ni, Mn, Cr) to assess the role of variable diffusivities as a function of major and trace elements in the olivines from different P-T conditions. First data were obtained on samples from the Klyuchevskoy, Shiveluch and Tolbachik, including recent most eruption in 2012/2013. These data show that for some samples the zonation patterns are much more complex than is usually observed: high-Mg olivines at different volcanoes have very different zonation patterns, including normally, reversely zoned grains or even show highly complex repetitive zonation that indicate large compositional changes in the surrounding magma at very short time scales (years). Thus in some Kamchatka basalts, we observe unusual ... Text Kamchatka Institute of Volcanology and Seismology, Petropavlovsk-Kamchatsky: IVS FEB RAS Repository Tolbachik ENVELOPE(159.960,159.960,55.537,55.537)
institution Open Polar
collection Institute of Volcanology and Seismology, Petropavlovsk-Kamchatsky: IVS FEB RAS Repository
op_collection_id ftinstvs
language English
topic 38.37.25 Вулканология
Острый Толбачик
Плоский Толбачик
Шивелуч
Ключевской
spellingShingle 38.37.25 Вулканология
Острый Толбачик
Плоский Толбачик
Шивелуч
Ключевской
Gordeychik Boris
Churikova Tatiana
Kronz Andreas
Simakin Alexander
Wörner Gerhard
First data on magma ascent and residence times retrieved from Fe-Mg and trace element zonation in olivine phenocrysts from Kamchatka basalts
topic_facet 38.37.25 Вулканология
Острый Толбачик
Плоский Толбачик
Шивелуч
Ключевской
description Compositional zonation in olivine phenocrysts and diffusion modelling have been used in the last ten years to estimate magma residence times and the duration of magma ascent. The fundamental assumption is that mixing with newly injected magma into a reservoir triggers diffusional exchange between mafic olivine crystals and more evolved magma and that this magma mixing eventually triggers eruption. If depth of mixing is known, this translates to ascent rates of magmas to the surface. We applied this approach to a series of different arc basalt lavas from Kamchatka to constrain the rates of magma ascent and magma resident in what is one of the most active subduction zones in the world that is also dominated by an abundance of unusually mafic magmas. Our sample collection cover the principal modes of arc magmatism in Kamchatka: from different volcanic complexes (stratovolcano, dikes, summit eruptions, monogenetic cones), of different age (from Late-Pleistocene to Holocene and recent eruptions), from different magmatic regimes (long-lived volcanoes vs. monogenetic eruptions) and different major element composition (from basalt to basaltic andesite of different geochemical character including LILE enrichments). We analyzed and modelled zonation profiles for a range of elements with different diffusivities (e.g. Mg-Fe, Ca, Ni, Mn, Cr) to assess the role of variable diffusivities as a function of major and trace elements in the olivines from different P-T conditions. First data were obtained on samples from the Klyuchevskoy, Shiveluch and Tolbachik, including recent most eruption in 2012/2013. These data show that for some samples the zonation patterns are much more complex than is usually observed: high-Mg olivines at different volcanoes have very different zonation patterns, including normally, reversely zoned grains or even show highly complex repetitive zonation that indicate large compositional changes in the surrounding magma at very short time scales (years). Thus in some Kamchatka basalts, we observe unusual ...
format Text
author Gordeychik Boris
Churikova Tatiana
Kronz Andreas
Simakin Alexander
Wörner Gerhard
author_facet Gordeychik Boris
Churikova Tatiana
Kronz Andreas
Simakin Alexander
Wörner Gerhard
author_sort Gordeychik Boris
title First data on magma ascent and residence times retrieved from Fe-Mg and trace element zonation in olivine phenocrysts from Kamchatka basalts
title_short First data on magma ascent and residence times retrieved from Fe-Mg and trace element zonation in olivine phenocrysts from Kamchatka basalts
title_full First data on magma ascent and residence times retrieved from Fe-Mg and trace element zonation in olivine phenocrysts from Kamchatka basalts
title_fullStr First data on magma ascent and residence times retrieved from Fe-Mg and trace element zonation in olivine phenocrysts from Kamchatka basalts
title_full_unstemmed First data on magma ascent and residence times retrieved from Fe-Mg and trace element zonation in olivine phenocrysts from Kamchatka basalts
title_sort first data on magma ascent and residence times retrieved from fe-mg and trace element zonation in olivine phenocrysts from kamchatka basalts
publishDate 2016
url http://repo.kscnet.ru/2944/
http://repo.kscnet.ru/2944/1/Gordeychik_2016%20EGU.pdf
http://meetingorganizer.copernicus.org/EGU2016/EGU2016-12839.pdf
long_lat ENVELOPE(159.960,159.960,55.537,55.537)
geographic Tolbachik
geographic_facet Tolbachik
genre Kamchatka
genre_facet Kamchatka
op_relation http://repo.kscnet.ru/2944/1/Gordeychik_2016%20EGU.pdf
Gordeychik Boris <http://repo.kscnet.ru/view/creators/Gordeychik=3ABoris=3A=3A.html>, Churikova Tatiana <http://repo.kscnet.ru/view/creators/Churikova=3ATatiana=3A=3A.html>, Kronz Andreas <http://repo.kscnet.ru/view/creators/Kronz=3AAndreas=3A=3A.html>, Simakin Alexander <http://repo.kscnet.ru/view/creators/Simakin=3AAlexander=3A=3A.html>, Wörner Gerhard <http://repo.kscnet.ru/view/creators/W=F6rner=3AGerhard=3A=3A.html> (2016) First data on magma ascent and residence times retrieved from Fe-Mg and trace element zonation in olivine phenocrysts from Kamchatka basalts // Geophysical Research Abstracts. Vol. 18. pp. EGU2016-12839.
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