Water contents of clinopyroxenes from sub-arc mantle peridotites

One poorly constrained reservoir of the Earth's water budget is that of clinopyroxene in metasomatised, mantle peridotites. This study presents reconnaissance Sensitive High-Resolution, Ion Microprobe-Stable Isotope (SHRIMP-SI) determinations of the H 2 O contents of (dominantly) clinopyroxenes...

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Published in:Island Arc
Main Authors: Turner, Michael, Turner, Simon, Blatter, Dawnika, Maury, Rene, Perfit, Michael, Yogodzinski, Gene
Format: Article in Journal/Newspaper
Language:English
Published: 2017
Subjects:
Online Access:https://researchers.mq.edu.au/en/publications/a6001f49-8059-4ae0-8dc8-e7a4a0f4e34c
https://doi.org/10.1111/iar.12210
http://www.scopus.com/inward/record.url?scp=85021341347&partnerID=8YFLogxK
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author Turner, Michael
Turner, Simon
Blatter, Dawnika
Maury, Rene
Perfit, Michael
Yogodzinski, Gene
author_facet Turner, Michael
Turner, Simon
Blatter, Dawnika
Maury, Rene
Perfit, Michael
Yogodzinski, Gene
author_sort Turner, Michael
collection Macquarie University Research Portal
container_issue 5
container_title Island Arc
container_volume 26
description One poorly constrained reservoir of the Earth's water budget is that of clinopyroxene in metasomatised, mantle peridotites. This study presents reconnaissance Sensitive High-Resolution, Ion Microprobe-Stable Isotope (SHRIMP-SI) determinations of the H 2 O contents of (dominantly) clinopyroxenes in rare mantle xenoliths from four different subduction zones, i.e. Mexico, Kamchatka, Philippines, and New Britain (Tabar-Feni island chain) as well as one intra-plate setting (western Victoria). All of the sub-arc xenoliths have been metasomatised and carry strong arc trace element signatures. Average measured H 2 O contents of the pyroxenes range from 70 ppm to 510ppm whereas calculated bulk H 2 O contents range from 88 ppm to 3737ppm if the variable presence of amphibole is taken into account. In contrast, the intra-plate, continental mantle xenolith from western Victoria has higher water contents (3447ppm) but was metasomatised by alkali and/or carbonatitic melts and does not carry a subduction-related signature. Material similar to the sub-arc peridotites can either be accreted to the base of the lithosphere or potentially be transported by convection deeper into the mantle where it will lose water due to amphibole breakdown.
format Article in Journal/Newspaper
genre Kamchatka
genre_facet Kamchatka
id ftmacquarieunicr:oai:https://researchers.mq.edu.au:publications/a6001f49-8059-4ae0-8dc8-e7a4a0f4e34c
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op_doi https://doi.org/10.1111/iar.12210
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op_source Turner , M , Turner , S , Blatter , D , Maury , R , Perfit , M & Yogodzinski , G 2017 , ' Water contents of clinopyroxenes from sub-arc mantle peridotites ' , Island Arc , vol. 26 , no. 5 , e12210 , pp. 1-10 . https://doi.org/10.1111/iar.12210
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spelling ftmacquarieunicr:oai:https://researchers.mq.edu.au:publications/a6001f49-8059-4ae0-8dc8-e7a4a0f4e34c 2025-01-16T22:49:08+00:00 Water contents of clinopyroxenes from sub-arc mantle peridotites Turner, Michael Turner, Simon Blatter, Dawnika Maury, Rene Perfit, Michael Yogodzinski, Gene 2017-09 https://researchers.mq.edu.au/en/publications/a6001f49-8059-4ae0-8dc8-e7a4a0f4e34c https://doi.org/10.1111/iar.12210 http://www.scopus.com/inward/record.url?scp=85021341347&partnerID=8YFLogxK eng eng info:eu-repo/semantics/closedAccess Turner , M , Turner , S , Blatter , D , Maury , R , Perfit , M & Yogodzinski , G 2017 , ' Water contents of clinopyroxenes from sub-arc mantle peridotites ' , Island Arc , vol. 26 , no. 5 , e12210 , pp. 1-10 . https://doi.org/10.1111/iar.12210 clinopyroxene intra-plate xenolith mantle peridotite sub-arc xenoliths water contents article 2017 ftmacquarieunicr https://doi.org/10.1111/iar.12210 2024-12-30T06:39:08Z One poorly constrained reservoir of the Earth's water budget is that of clinopyroxene in metasomatised, mantle peridotites. This study presents reconnaissance Sensitive High-Resolution, Ion Microprobe-Stable Isotope (SHRIMP-SI) determinations of the H 2 O contents of (dominantly) clinopyroxenes in rare mantle xenoliths from four different subduction zones, i.e. Mexico, Kamchatka, Philippines, and New Britain (Tabar-Feni island chain) as well as one intra-plate setting (western Victoria). All of the sub-arc xenoliths have been metasomatised and carry strong arc trace element signatures. Average measured H 2 O contents of the pyroxenes range from 70 ppm to 510ppm whereas calculated bulk H 2 O contents range from 88 ppm to 3737ppm if the variable presence of amphibole is taken into account. In contrast, the intra-plate, continental mantle xenolith from western Victoria has higher water contents (3447ppm) but was metasomatised by alkali and/or carbonatitic melts and does not carry a subduction-related signature. Material similar to the sub-arc peridotites can either be accreted to the base of the lithosphere or potentially be transported by convection deeper into the mantle where it will lose water due to amphibole breakdown. Article in Journal/Newspaper Kamchatka Macquarie University Research Portal Island Arc 26 5
spellingShingle clinopyroxene
intra-plate xenolith
mantle peridotite
sub-arc xenoliths
water contents
Turner, Michael
Turner, Simon
Blatter, Dawnika
Maury, Rene
Perfit, Michael
Yogodzinski, Gene
Water contents of clinopyroxenes from sub-arc mantle peridotites
title Water contents of clinopyroxenes from sub-arc mantle peridotites
title_full Water contents of clinopyroxenes from sub-arc mantle peridotites
title_fullStr Water contents of clinopyroxenes from sub-arc mantle peridotites
title_full_unstemmed Water contents of clinopyroxenes from sub-arc mantle peridotites
title_short Water contents of clinopyroxenes from sub-arc mantle peridotites
title_sort water contents of clinopyroxenes from sub-arc mantle peridotites
topic clinopyroxene
intra-plate xenolith
mantle peridotite
sub-arc xenoliths
water contents
topic_facet clinopyroxene
intra-plate xenolith
mantle peridotite
sub-arc xenoliths
water contents
url https://researchers.mq.edu.au/en/publications/a6001f49-8059-4ae0-8dc8-e7a4a0f4e34c
https://doi.org/10.1111/iar.12210
http://www.scopus.com/inward/record.url?scp=85021341347&partnerID=8YFLogxK