Thallium Isotope Fractionation During Magma Degassing: Evidence From Experiments and Kamchatka Arc Lavas
Abstract Thallium (Tl) isotope ratios are an emerging tool that can be used to trace crustal recycling processes in arc lavas and ocean island basalts (OIBs). Thallium is a highly volatile metal that is enriched in volcanic fumaroles, but it is unknown whether degassing of Tl from subaerial lavas ha...
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ftsubgoettingen:oai:publications.goettingen-research-online.de:2/133798 2023-11-05T03:43:07+01:00 Thallium Isotope Fractionation During Magma Degassing: Evidence From Experiments and Kamchatka Arc Lavas Nielsen, Sune G. Shu, Yunchao Wood, Bernard J. Blusztajn, Jerzy Auro, Maureen Norris, C. Ashley Wörner, Gerhard Nielsen, Sune G. Shu, Yunchao Wood, Bernard J. Blusztajn, Jerzy Auro, Maureen Norris, C. Ashley Wörner, Gerhard 2021 https://resolver.sub.uni-goettingen.de/purl?gro-2/133798 https://doi.org/10.1029/2020GC009608 en eng https://resolver.sub.uni-goettingen.de/purl?gro-2/133798 doi:10.1029/2020GC009608 info:eu-repo/semantics/openAccess http://onlinelibrary.wiley.com/termsAndConditions#am info:eu-repo/semantics/article journal_article yes 2021 ftsubgoettingen https://doi.org/10.1029/2020GC009608 2023-10-08T16:57:58Z Abstract Thallium (Tl) isotope ratios are an emerging tool that can be used to trace crustal recycling processes in arc lavas and ocean island basalts (OIBs). Thallium is a highly volatile metal that is enriched in volcanic fumaroles, but it is unknown whether degassing of Tl from subaerial lavas has a significant effect on their residual Tl isotope compositions. Here, we present Tl isotope and concentration data from degassing experiments that are best explained by Rayleigh kinetic isotope fractionation during Tl loss. Our data closely follow predicted isotope fractionation models in which TlCl is the primary degassed species and where Tl loss is controlled by diffusion and natural convection, consistent with the slow gas advection velocity utilized during our experiments. We calculate that degassing into air should be associated with a net Tl isotope fractionation factor of α net = 0.99969 for diffusion and natural gas convection (low gas velocities) and α net = 0.99955 for diffusion and forced gas convection (high gas velocities). We also show that lavas from three volcanoes in the Kamchatka arc exhibit Tl isotope and concentration patterns that plot in between the two different gas convection regimes, implying that degassing played an important role in controlling the observed Tl isotope compositions in these three volcanoes. Literature inspection of Tl isotope data for subaerial lavas reveals that the majority of these appear only minorly affected by degassing, although a few samples from both OIBs and arc volcanoes can be identified that likely experienced some Tl degassing. Plain Language Summary Volcanic degassing is an important process for understanding emissions to the atmosphere of greenhouse gasses and toxic metals. Thallium (Tl) is a toxic metal that is highly volatile, which in recent years has been developed as a stable isotope system that can be applied to understand the transfer of material from the Earth surface to the deep mantle via measurements of volcanic lavas. However, degassing of Tl ... Article in Journal/Newspaper Kamchatka Ocean Island Georg-August-Universität Göttingen: GoeScholar Geochemistry, Geophysics, Geosystems 22 5 |
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Open Polar |
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Georg-August-Universität Göttingen: GoeScholar |
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ftsubgoettingen |
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English |
description |
Abstract Thallium (Tl) isotope ratios are an emerging tool that can be used to trace crustal recycling processes in arc lavas and ocean island basalts (OIBs). Thallium is a highly volatile metal that is enriched in volcanic fumaroles, but it is unknown whether degassing of Tl from subaerial lavas has a significant effect on their residual Tl isotope compositions. Here, we present Tl isotope and concentration data from degassing experiments that are best explained by Rayleigh kinetic isotope fractionation during Tl loss. Our data closely follow predicted isotope fractionation models in which TlCl is the primary degassed species and where Tl loss is controlled by diffusion and natural convection, consistent with the slow gas advection velocity utilized during our experiments. We calculate that degassing into air should be associated with a net Tl isotope fractionation factor of α net = 0.99969 for diffusion and natural gas convection (low gas velocities) and α net = 0.99955 for diffusion and forced gas convection (high gas velocities). We also show that lavas from three volcanoes in the Kamchatka arc exhibit Tl isotope and concentration patterns that plot in between the two different gas convection regimes, implying that degassing played an important role in controlling the observed Tl isotope compositions in these three volcanoes. Literature inspection of Tl isotope data for subaerial lavas reveals that the majority of these appear only minorly affected by degassing, although a few samples from both OIBs and arc volcanoes can be identified that likely experienced some Tl degassing. Plain Language Summary Volcanic degassing is an important process for understanding emissions to the atmosphere of greenhouse gasses and toxic metals. Thallium (Tl) is a toxic metal that is highly volatile, which in recent years has been developed as a stable isotope system that can be applied to understand the transfer of material from the Earth surface to the deep mantle via measurements of volcanic lavas. However, degassing of Tl ... |
author2 |
Nielsen, Sune G. Shu, Yunchao Wood, Bernard J. Blusztajn, Jerzy Auro, Maureen Norris, C. Ashley Wörner, Gerhard |
format |
Article in Journal/Newspaper |
author |
Nielsen, Sune G. Shu, Yunchao Wood, Bernard J. Blusztajn, Jerzy Auro, Maureen Norris, C. Ashley Wörner, Gerhard |
spellingShingle |
Nielsen, Sune G. Shu, Yunchao Wood, Bernard J. Blusztajn, Jerzy Auro, Maureen Norris, C. Ashley Wörner, Gerhard Thallium Isotope Fractionation During Magma Degassing: Evidence From Experiments and Kamchatka Arc Lavas |
author_facet |
Nielsen, Sune G. Shu, Yunchao Wood, Bernard J. Blusztajn, Jerzy Auro, Maureen Norris, C. Ashley Wörner, Gerhard |
author_sort |
Nielsen, Sune G. |
title |
Thallium Isotope Fractionation During Magma Degassing: Evidence From Experiments and Kamchatka Arc Lavas |
title_short |
Thallium Isotope Fractionation During Magma Degassing: Evidence From Experiments and Kamchatka Arc Lavas |
title_full |
Thallium Isotope Fractionation During Magma Degassing: Evidence From Experiments and Kamchatka Arc Lavas |
title_fullStr |
Thallium Isotope Fractionation During Magma Degassing: Evidence From Experiments and Kamchatka Arc Lavas |
title_full_unstemmed |
Thallium Isotope Fractionation During Magma Degassing: Evidence From Experiments and Kamchatka Arc Lavas |
title_sort |
thallium isotope fractionation during magma degassing: evidence from experiments and kamchatka arc lavas |
publishDate |
2021 |
url |
https://resolver.sub.uni-goettingen.de/purl?gro-2/133798 https://doi.org/10.1029/2020GC009608 |
genre |
Kamchatka Ocean Island |
genre_facet |
Kamchatka Ocean Island |
op_relation |
https://resolver.sub.uni-goettingen.de/purl?gro-2/133798 doi:10.1029/2020GC009608 |
op_rights |
info:eu-repo/semantics/openAccess http://onlinelibrary.wiley.com/termsAndConditions#am |
op_doi |
https://doi.org/10.1029/2020GC009608 |
container_title |
Geochemistry, Geophysics, Geosystems |
container_volume |
22 |
container_issue |
5 |
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1781700978816319488 |