Mineral-scale Sr isotope variation in plutonic rocks - a tool for unravelling the evolution of magma systems

Isotope ratios of elements such as Sr, Nd, Pb and Hf can be used as tracers of magmatic sources and processes. Analytical capabilities have evolved so that isotope ratios can now be analysed in situ, and isotopic tracers can therefore be used within single minerals to track the changing magmatic env...

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Main Authors: Davidson, Jon P., Font, Laura, Charlier, Bruce L. A., Tepley, Frank J.
Format: Article in Journal/Newspaper
Language:unknown
Published: 2008
Subjects:
Online Access:https://oro.open.ac.uk/11575/
http://www.ingentaconnect.com/content/rse/tes/2008/00000097/00000004/art00005
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spelling ftopenunivgb:oai:oro.open.ac.uk:11575 2024-06-23T07:46:00+00:00 Mineral-scale Sr isotope variation in plutonic rocks - a tool for unravelling the evolution of magma systems Davidson, Jon P. Font, Laura Charlier, Bruce L. A. Tepley, Frank J. 2008-07 https://oro.open.ac.uk/11575/ http://www.ingentaconnect.com/content/rse/tes/2008/00000097/00000004/art00005 unknown Davidson, Jon P.; Font, Laura; Charlier, Bruce L. A. <https://oro.open.ac.uk/view/person/bc63.html> and Tepley, Frank J. (2008). Mineral-scale Sr isotope variation in plutonic rocks - a tool for unravelling the evolution of magma systems. Transactions: Earth Sciences, 97(4) pp. 357–367. Journal Item PeerReviewed 2008 ftopenunivgb 2024-06-05T00:40:24Z Isotope ratios of elements such as Sr, Nd, Pb and Hf can be used as tracers of magmatic sources and processes. Analytical capabilities have evolved so that isotope ratios can now be analysed in situ, and isotopic tracers can therefore be used within single minerals to track the changing magmatic environment in which a given mineral grew. This contribution shows that Sr isotope ratios in feldspars that make up plutonic rocks will typically preserve initial isotopic variations, provided precise and accurate age corrections can be applied. Variations in initial isotope ratio can give a core-to-rim record of magmatic evolution and can be used to diagnose open system events such as contamination and magma recharge and mixing. New single grain Sr isotope data are presented from the Dais Intrusion, Antarctica, which reflect an open system origin for the crystals. The crystal cargo appears to be aggregated and assembled during transport and emplacement. This model, as opposed to a magma body crystallising post emplacement, may be more applicable to plutonic rocks in general, and is testable using the in situ isotopic determination methods described here. Article in Journal/Newspaper Antarc* Antarctica The Open University: Open Research Online (ORO) Dais ENVELOPE(161.267,161.267,-77.550,-77.550)
institution Open Polar
collection The Open University: Open Research Online (ORO)
op_collection_id ftopenunivgb
language unknown
description Isotope ratios of elements such as Sr, Nd, Pb and Hf can be used as tracers of magmatic sources and processes. Analytical capabilities have evolved so that isotope ratios can now be analysed in situ, and isotopic tracers can therefore be used within single minerals to track the changing magmatic environment in which a given mineral grew. This contribution shows that Sr isotope ratios in feldspars that make up plutonic rocks will typically preserve initial isotopic variations, provided precise and accurate age corrections can be applied. Variations in initial isotope ratio can give a core-to-rim record of magmatic evolution and can be used to diagnose open system events such as contamination and magma recharge and mixing. New single grain Sr isotope data are presented from the Dais Intrusion, Antarctica, which reflect an open system origin for the crystals. The crystal cargo appears to be aggregated and assembled during transport and emplacement. This model, as opposed to a magma body crystallising post emplacement, may be more applicable to plutonic rocks in general, and is testable using the in situ isotopic determination methods described here.
format Article in Journal/Newspaper
author Davidson, Jon P.
Font, Laura
Charlier, Bruce L. A.
Tepley, Frank J.
spellingShingle Davidson, Jon P.
Font, Laura
Charlier, Bruce L. A.
Tepley, Frank J.
Mineral-scale Sr isotope variation in plutonic rocks - a tool for unravelling the evolution of magma systems
author_facet Davidson, Jon P.
Font, Laura
Charlier, Bruce L. A.
Tepley, Frank J.
author_sort Davidson, Jon P.
title Mineral-scale Sr isotope variation in plutonic rocks - a tool for unravelling the evolution of magma systems
title_short Mineral-scale Sr isotope variation in plutonic rocks - a tool for unravelling the evolution of magma systems
title_full Mineral-scale Sr isotope variation in plutonic rocks - a tool for unravelling the evolution of magma systems
title_fullStr Mineral-scale Sr isotope variation in plutonic rocks - a tool for unravelling the evolution of magma systems
title_full_unstemmed Mineral-scale Sr isotope variation in plutonic rocks - a tool for unravelling the evolution of magma systems
title_sort mineral-scale sr isotope variation in plutonic rocks - a tool for unravelling the evolution of magma systems
publishDate 2008
url https://oro.open.ac.uk/11575/
http://www.ingentaconnect.com/content/rse/tes/2008/00000097/00000004/art00005
long_lat ENVELOPE(161.267,161.267,-77.550,-77.550)
geographic Dais
geographic_facet Dais
genre Antarc*
Antarctica
genre_facet Antarc*
Antarctica
op_relation Davidson, Jon P.; Font, Laura; Charlier, Bruce L. A. <https://oro.open.ac.uk/view/person/bc63.html> and Tepley, Frank J. (2008). Mineral-scale Sr isotope variation in plutonic rocks - a tool for unravelling the evolution of magma systems. Transactions: Earth Sciences, 97(4) pp. 357–367.
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