Petrogenesis of the Sólheimar ignimbrite (Katla, Iceland): Implications for tephrostratigraphy

The Sólheimar ignimbrite was one of the largest eruptions from the Katla caldera (Iceland) and is important for tephra studies in the North Atlantic because of its possible linkage with the Vedde Ash, a compositionally bimodal tephra layer used for correlation of sedimentary records in the North Atl...

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Published in:Geochimica et Cosmochimica Acta
Main Authors: Tomlinson, Emma L., Thordarson, Thor, Lane, Christine S., Smith, Victoria C., Manning, Christina J., Müller, Wolfgang, Menzies, Martin A.
Format: Article in Journal/Newspaper
Language:English
Published: 2012
Subjects:
Online Access:https://research.manchester.ac.uk/en/publications/d1338a37-cd23-4b9c-aefa-d8b52c7c562e
https://doi.org/10.1016/j.gca.2012.03.012
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spelling ftumanchesterpub:oai:pure.atira.dk:publications/d1338a37-cd23-4b9c-aefa-d8b52c7c562e 2023-11-12T04:19:14+01:00 Petrogenesis of the Sólheimar ignimbrite (Katla, Iceland): Implications for tephrostratigraphy Tomlinson, Emma L. Thordarson, Thor Lane, Christine S. Smith, Victoria C. Manning, Christina J. Müller, Wolfgang Menzies, Martin A. 2012-06-01 https://research.manchester.ac.uk/en/publications/d1338a37-cd23-4b9c-aefa-d8b52c7c562e https://doi.org/10.1016/j.gca.2012.03.012 eng eng info:eu-repo/semantics/closedAccess Tomlinson , E L , Thordarson , T , Lane , C S , Smith , V C , Manning , C J , Müller , W & Menzies , M A 2012 , ' Petrogenesis of the Sólheimar ignimbrite (Katla, Iceland): Implications for tephrostratigraphy ' , Geochimica et Cosmochimica Acta , vol. 86 , pp. 318-337 . https://doi.org/10.1016/j.gca.2012.03.012 article 2012 ftumanchesterpub https://doi.org/10.1016/j.gca.2012.03.012 2023-10-30T09:12:37Z The Sólheimar ignimbrite was one of the largest eruptions from the Katla caldera (Iceland) and is important for tephra studies in the North Atlantic because of its possible linkage with the Vedde Ash, a compositionally bimodal tephra layer used for correlation of sedimentary records in the North Atlantic and Northern Europe. The composition of the Sólheimar ignimbrite extends from rhyolite to basaltic-icelandite, a trend that defines a coherent magma mixing line. Mixing is evident both in mingled textures seen in hand specimens and thin sections and as binary mixing trends in major and trace element and 87Sr/ 86Sr isotopes of the volcanic glasses. The Sólheimar rhyolite is slightly more radiogenic than the basaltic-icelandite in terms of Sr isotopes, which is inconsistent with generation of the rhyolite by fractionation of the basaltic-icelandite. Alternatively, the Sólheimar rhyolite may have been produced by partial melting of Icelandic crust. Major and trace element modelling indicates that partial melting of Icelandic tholeiite does not replicate the observed rhyolite composition, in particular K 2O is significantly lower in the modelled melt. However, partial melting of Katla alkali basalt does produce a comparable melt. We suggest a two-stage model in which 30-40% melting of basalt generated a dacitic magma which underwent subsequent ~30% fractionation of the observed phenocryst phases (feldspar, clinopyroxene, spinel and FeTi oxide) form rhyolite. The eruption of the Sólheimar ignimbrite was triggered by the intrusion of basaltic-icelandite magma, which mixed with resident rhyolite magma during eruption.The Sólheimar ignimbrite has been linked to the Vedde Ash (. Lacasse et al., 1995), a compositionally bimodal tephra layer used to link sedimentary records in the North Atlantic and Northern Europe. Despite the importance of the Vedde Ash in late Quaternary studies, its provenance remains equivocal. We demonstrate that Vedde rhyolite glasses share the same major and trace element chemistry as the Sólheimar ... Article in Journal/Newspaper Iceland Katla North Atlantic The University of Manchester: Research Explorer Katla ENVELOPE(-19.062,-19.062,63.631,63.631) Geochimica et Cosmochimica Acta 86 318 337
institution Open Polar
collection The University of Manchester: Research Explorer
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description The Sólheimar ignimbrite was one of the largest eruptions from the Katla caldera (Iceland) and is important for tephra studies in the North Atlantic because of its possible linkage with the Vedde Ash, a compositionally bimodal tephra layer used for correlation of sedimentary records in the North Atlantic and Northern Europe. The composition of the Sólheimar ignimbrite extends from rhyolite to basaltic-icelandite, a trend that defines a coherent magma mixing line. Mixing is evident both in mingled textures seen in hand specimens and thin sections and as binary mixing trends in major and trace element and 87Sr/ 86Sr isotopes of the volcanic glasses. The Sólheimar rhyolite is slightly more radiogenic than the basaltic-icelandite in terms of Sr isotopes, which is inconsistent with generation of the rhyolite by fractionation of the basaltic-icelandite. Alternatively, the Sólheimar rhyolite may have been produced by partial melting of Icelandic crust. Major and trace element modelling indicates that partial melting of Icelandic tholeiite does not replicate the observed rhyolite composition, in particular K 2O is significantly lower in the modelled melt. However, partial melting of Katla alkali basalt does produce a comparable melt. We suggest a two-stage model in which 30-40% melting of basalt generated a dacitic magma which underwent subsequent ~30% fractionation of the observed phenocryst phases (feldspar, clinopyroxene, spinel and FeTi oxide) form rhyolite. The eruption of the Sólheimar ignimbrite was triggered by the intrusion of basaltic-icelandite magma, which mixed with resident rhyolite magma during eruption.The Sólheimar ignimbrite has been linked to the Vedde Ash (. Lacasse et al., 1995), a compositionally bimodal tephra layer used to link sedimentary records in the North Atlantic and Northern Europe. Despite the importance of the Vedde Ash in late Quaternary studies, its provenance remains equivocal. We demonstrate that Vedde rhyolite glasses share the same major and trace element chemistry as the Sólheimar ...
format Article in Journal/Newspaper
author Tomlinson, Emma L.
Thordarson, Thor
Lane, Christine S.
Smith, Victoria C.
Manning, Christina J.
Müller, Wolfgang
Menzies, Martin A.
spellingShingle Tomlinson, Emma L.
Thordarson, Thor
Lane, Christine S.
Smith, Victoria C.
Manning, Christina J.
Müller, Wolfgang
Menzies, Martin A.
Petrogenesis of the Sólheimar ignimbrite (Katla, Iceland): Implications for tephrostratigraphy
author_facet Tomlinson, Emma L.
Thordarson, Thor
Lane, Christine S.
Smith, Victoria C.
Manning, Christina J.
Müller, Wolfgang
Menzies, Martin A.
author_sort Tomlinson, Emma L.
title Petrogenesis of the Sólheimar ignimbrite (Katla, Iceland): Implications for tephrostratigraphy
title_short Petrogenesis of the Sólheimar ignimbrite (Katla, Iceland): Implications for tephrostratigraphy
title_full Petrogenesis of the Sólheimar ignimbrite (Katla, Iceland): Implications for tephrostratigraphy
title_fullStr Petrogenesis of the Sólheimar ignimbrite (Katla, Iceland): Implications for tephrostratigraphy
title_full_unstemmed Petrogenesis of the Sólheimar ignimbrite (Katla, Iceland): Implications for tephrostratigraphy
title_sort petrogenesis of the sólheimar ignimbrite (katla, iceland): implications for tephrostratigraphy
publishDate 2012
url https://research.manchester.ac.uk/en/publications/d1338a37-cd23-4b9c-aefa-d8b52c7c562e
https://doi.org/10.1016/j.gca.2012.03.012
long_lat ENVELOPE(-19.062,-19.062,63.631,63.631)
geographic Katla
geographic_facet Katla
genre Iceland
Katla
North Atlantic
genre_facet Iceland
Katla
North Atlantic
op_source Tomlinson , E L , Thordarson , T , Lane , C S , Smith , V C , Manning , C J , Müller , W & Menzies , M A 2012 , ' Petrogenesis of the Sólheimar ignimbrite (Katla, Iceland): Implications for tephrostratigraphy ' , Geochimica et Cosmochimica Acta , vol. 86 , pp. 318-337 . https://doi.org/10.1016/j.gca.2012.03.012
op_rights info:eu-repo/semantics/closedAccess
op_doi https://doi.org/10.1016/j.gca.2012.03.012
container_title Geochimica et Cosmochimica Acta
container_volume 86
container_start_page 318
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