Birth and demise of the Rheic Ocean magmatic arc(s): Combined U–Pb and Hf isotope analyses in detrital zircon from SW Iberia siliciclastic strata

Detalhes bibliográficos
Autor(a) principal: Pereira, Manuel Francisco
Data de Publicação: 2017
Outros Autores: Gutierrez-Alonso, Gabriel, Murphy, J. Brendan, Drost, Kerstin, Gama, Cristina, Silva, J. Brandão
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Repositório Científico de Acesso Aberto de Portugal (Repositórios Cientìficos)
Texto Completo: http://hdl.handle.net/10174/22540
https://doi.org/10.1016/j.lithos.2017.02.009
Resumo: Paleozoic continental reconstructions indicate that subduction of Rheic oceanic lithosphere led to collision be- tween Laurussia and Gondwanawhich was a major event in the formation of the Ouachita-Appalachian-Variscan orogenic belt and the amalgamation of Pangea. However, arc systems which record Rheic Ocean subduction are poorly preserved. The preservation of Devonian detrital zircon in Late Devonian–Early Carboniferous siliciclastic rocks ofSWIberia, rather than arc-related igneous rocks indicates that direct evidence of the arc systemmay have been largely destroyed by erosion. Herewe report in-situ detrital zircon U–Pb isotopic analyses of Late Devonian– Early Carboniferous siliciclastic rocks fromthe Pulo do Lobo Zone,which is a reworked Late Paleozoic suture zone located between Laurussia and Gondwana. Detrital zircon age spectra from the Pulo do Lobo Zone Frasnian formations show striking similarities, revealing a wide range of ages dominated by Neoproterozoic and Paleoproterozoic grains sourced fromrocks typical of peri-Gondwanan terranes, such as Avalonia, theMeguma ter- rane and theOssa-Morena Zone. Pulo do Lobo rocks also include representative populations ofMesoproterozoic and Early Silurian zircons that are typical of Avalonia and the Meguma terrane which are absent in the Ossa-Morena Zone. The Famennian–Tournaisian formations from the Pulo do Lobo Zone, however, contain more abundant Middle–Late Devonian zircon indicating the contribution from a previously unrecognized source probably related to the Rheic Ocean magmatic arc(s). The Middle–Late Devonian to Early Carboniferous zircon ages from the siliciclastic rocks of SW Iberia (South Portuguese, Pulo do Lobo and Ossa-Morena zones) have a wide range in !HfT values (−8.2 to +8.3) indicating the likely crystallization from magmas formed in a convergent setting. The missing Rheic Ocean arc was probably built on a Meguma/Avalonia type basement. We propose for the Pulo do Lobo Zone that the Frasnian sedimentation occurred through the opening of a back-arc basin formed along the Laurussian active margin during Rheic Ocean subduction, as has been recently proposed for the Rhenohercynian Zone in Central Europe. Detrital zircon ages in the Frasnian siliciclastic rocks indicate provenance in the Meguma terrane, Avalonia and Devonian Rheic Ocean arc(s). As a result of back-arc basin inversion, the Frasnian formations underwent deformation, metamorphism and denudation and were unconformably overlain by Famennian to Visean siliciclastic strata (including the Phyllite-Quartzite Formation of the South Portuguese Zone). The Latest Devonian–Early Carboniferous detritus were probably shed to the Pulo do Lobo Zone (Represa and Santa Iria formations) by recycling of Devonian siliciclastic rocks, from the South Portuguese Zone (Meguma terrane) and from a new distinct source with Baltica/Laurentia derivation (preserved in the Horta da Torre Formation and Alajar Mélange).
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spelling Birth and demise of the Rheic Ocean magmatic arc(s): Combined U–Pb and Hf isotope analyses in detrital zircon from SW Iberia siliciclastic strataDetrital zircon ageHf isotope compositionRheic Ocean magmatic arc(s)Devonian–CarboniferousLaurussia–Gondwana collisionPaleozoic continental reconstructions indicate that subduction of Rheic oceanic lithosphere led to collision be- tween Laurussia and Gondwanawhich was a major event in the formation of the Ouachita-Appalachian-Variscan orogenic belt and the amalgamation of Pangea. However, arc systems which record Rheic Ocean subduction are poorly preserved. The preservation of Devonian detrital zircon in Late Devonian–Early Carboniferous siliciclastic rocks ofSWIberia, rather than arc-related igneous rocks indicates that direct evidence of the arc systemmay have been largely destroyed by erosion. Herewe report in-situ detrital zircon U–Pb isotopic analyses of Late Devonian– Early Carboniferous siliciclastic rocks fromthe Pulo do Lobo Zone,which is a reworked Late Paleozoic suture zone located between Laurussia and Gondwana. Detrital zircon age spectra from the Pulo do Lobo Zone Frasnian formations show striking similarities, revealing a wide range of ages dominated by Neoproterozoic and Paleoproterozoic grains sourced fromrocks typical of peri-Gondwanan terranes, such as Avalonia, theMeguma ter- rane and theOssa-Morena Zone. Pulo do Lobo rocks also include representative populations ofMesoproterozoic and Early Silurian zircons that are typical of Avalonia and the Meguma terrane which are absent in the Ossa-Morena Zone. The Famennian–Tournaisian formations from the Pulo do Lobo Zone, however, contain more abundant Middle–Late Devonian zircon indicating the contribution from a previously unrecognized source probably related to the Rheic Ocean magmatic arc(s). The Middle–Late Devonian to Early Carboniferous zircon ages from the siliciclastic rocks of SW Iberia (South Portuguese, Pulo do Lobo and Ossa-Morena zones) have a wide range in !HfT values (−8.2 to +8.3) indicating the likely crystallization from magmas formed in a convergent setting. The missing Rheic Ocean arc was probably built on a Meguma/Avalonia type basement. We propose for the Pulo do Lobo Zone that the Frasnian sedimentation occurred through the opening of a back-arc basin formed along the Laurussian active margin during Rheic Ocean subduction, as has been recently proposed for the Rhenohercynian Zone in Central Europe. Detrital zircon ages in the Frasnian siliciclastic rocks indicate provenance in the Meguma terrane, Avalonia and Devonian Rheic Ocean arc(s). As a result of back-arc basin inversion, the Frasnian formations underwent deformation, metamorphism and denudation and were unconformably overlain by Famennian to Visean siliciclastic strata (including the Phyllite-Quartzite Formation of the South Portuguese Zone). The Latest Devonian–Early Carboniferous detritus were probably shed to the Pulo do Lobo Zone (Represa and Santa Iria formations) by recycling of Devonian siliciclastic rocks, from the South Portuguese Zone (Meguma terrane) and from a new distinct source with Baltica/Laurentia derivation (preserved in the Horta da Torre Formation and Alajar Mélange).Elsevier2018-02-27T16:40:06Z2018-02-272017-01-01T00:00:00Zinfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/articlehttp://hdl.handle.net/10174/22540http://hdl.handle.net/10174/22540https://doi.org/10.1016/j.lithos.2017.02.009engPereira, M.F., Gutierrez-Alonso, G., Murphy, J.B., Drost, K., Gama, C., Silva, J.B. (2017). Birth and demise of the Rheic Ocean magmatic arc(s): Combined U–Pb and Hf isotope analyses in detrital zircon from SW Iberia siliciclastic strata. Lithos 278-281: 383-399.mpereira@uevora.ptndndndndnd250Pereira, Manuel FranciscoGutierrez-Alonso, GabrielMurphy, J. BrendanDrost, KerstinGama, CristinaSilva, J. Brandãoinfo:eu-repo/semantics/openAccessreponame:Repositório Científico de Acesso Aberto de Portugal (Repositórios Cientìficos)instname:Agência para a Sociedade do Conhecimento (UMIC) - FCT - Sociedade da Informaçãoinstacron:RCAAP2024-01-03T19:13:56Zoai:dspace.uevora.pt:10174/22540Portal AgregadorONGhttps://www.rcaap.pt/oai/openaireopendoar:71602024-03-20T01:13:34.571837Repositório Científico de Acesso Aberto de Portugal (Repositórios Cientìficos) - Agência para a Sociedade do Conhecimento (UMIC) - FCT - Sociedade da Informaçãofalse
dc.title.none.fl_str_mv Birth and demise of the Rheic Ocean magmatic arc(s): Combined U–Pb and Hf isotope analyses in detrital zircon from SW Iberia siliciclastic strata
title Birth and demise of the Rheic Ocean magmatic arc(s): Combined U–Pb and Hf isotope analyses in detrital zircon from SW Iberia siliciclastic strata
spellingShingle Birth and demise of the Rheic Ocean magmatic arc(s): Combined U–Pb and Hf isotope analyses in detrital zircon from SW Iberia siliciclastic strata
Pereira, Manuel Francisco
Detrital zircon age
Hf isotope composition
Rheic Ocean magmatic arc(s)
Devonian–Carboniferous
Laurussia–Gondwana collision
title_short Birth and demise of the Rheic Ocean magmatic arc(s): Combined U–Pb and Hf isotope analyses in detrital zircon from SW Iberia siliciclastic strata
title_full Birth and demise of the Rheic Ocean magmatic arc(s): Combined U–Pb and Hf isotope analyses in detrital zircon from SW Iberia siliciclastic strata
title_fullStr Birth and demise of the Rheic Ocean magmatic arc(s): Combined U–Pb and Hf isotope analyses in detrital zircon from SW Iberia siliciclastic strata
title_full_unstemmed Birth and demise of the Rheic Ocean magmatic arc(s): Combined U–Pb and Hf isotope analyses in detrital zircon from SW Iberia siliciclastic strata
title_sort Birth and demise of the Rheic Ocean magmatic arc(s): Combined U–Pb and Hf isotope analyses in detrital zircon from SW Iberia siliciclastic strata
author Pereira, Manuel Francisco
author_facet Pereira, Manuel Francisco
Gutierrez-Alonso, Gabriel
Murphy, J. Brendan
Drost, Kerstin
Gama, Cristina
Silva, J. Brandão
author_role author
author2 Gutierrez-Alonso, Gabriel
Murphy, J. Brendan
Drost, Kerstin
Gama, Cristina
Silva, J. Brandão
author2_role author
author
author
author
author
dc.contributor.author.fl_str_mv Pereira, Manuel Francisco
Gutierrez-Alonso, Gabriel
Murphy, J. Brendan
Drost, Kerstin
Gama, Cristina
Silva, J. Brandão
dc.subject.por.fl_str_mv Detrital zircon age
Hf isotope composition
Rheic Ocean magmatic arc(s)
Devonian–Carboniferous
Laurussia–Gondwana collision
topic Detrital zircon age
Hf isotope composition
Rheic Ocean magmatic arc(s)
Devonian–Carboniferous
Laurussia–Gondwana collision
description Paleozoic continental reconstructions indicate that subduction of Rheic oceanic lithosphere led to collision be- tween Laurussia and Gondwanawhich was a major event in the formation of the Ouachita-Appalachian-Variscan orogenic belt and the amalgamation of Pangea. However, arc systems which record Rheic Ocean subduction are poorly preserved. The preservation of Devonian detrital zircon in Late Devonian–Early Carboniferous siliciclastic rocks ofSWIberia, rather than arc-related igneous rocks indicates that direct evidence of the arc systemmay have been largely destroyed by erosion. Herewe report in-situ detrital zircon U–Pb isotopic analyses of Late Devonian– Early Carboniferous siliciclastic rocks fromthe Pulo do Lobo Zone,which is a reworked Late Paleozoic suture zone located between Laurussia and Gondwana. Detrital zircon age spectra from the Pulo do Lobo Zone Frasnian formations show striking similarities, revealing a wide range of ages dominated by Neoproterozoic and Paleoproterozoic grains sourced fromrocks typical of peri-Gondwanan terranes, such as Avalonia, theMeguma ter- rane and theOssa-Morena Zone. Pulo do Lobo rocks also include representative populations ofMesoproterozoic and Early Silurian zircons that are typical of Avalonia and the Meguma terrane which are absent in the Ossa-Morena Zone. The Famennian–Tournaisian formations from the Pulo do Lobo Zone, however, contain more abundant Middle–Late Devonian zircon indicating the contribution from a previously unrecognized source probably related to the Rheic Ocean magmatic arc(s). The Middle–Late Devonian to Early Carboniferous zircon ages from the siliciclastic rocks of SW Iberia (South Portuguese, Pulo do Lobo and Ossa-Morena zones) have a wide range in !HfT values (−8.2 to +8.3) indicating the likely crystallization from magmas formed in a convergent setting. The missing Rheic Ocean arc was probably built on a Meguma/Avalonia type basement. We propose for the Pulo do Lobo Zone that the Frasnian sedimentation occurred through the opening of a back-arc basin formed along the Laurussian active margin during Rheic Ocean subduction, as has been recently proposed for the Rhenohercynian Zone in Central Europe. Detrital zircon ages in the Frasnian siliciclastic rocks indicate provenance in the Meguma terrane, Avalonia and Devonian Rheic Ocean arc(s). As a result of back-arc basin inversion, the Frasnian formations underwent deformation, metamorphism and denudation and were unconformably overlain by Famennian to Visean siliciclastic strata (including the Phyllite-Quartzite Formation of the South Portuguese Zone). The Latest Devonian–Early Carboniferous detritus were probably shed to the Pulo do Lobo Zone (Represa and Santa Iria formations) by recycling of Devonian siliciclastic rocks, from the South Portuguese Zone (Meguma terrane) and from a new distinct source with Baltica/Laurentia derivation (preserved in the Horta da Torre Formation and Alajar Mélange).
publishDate 2017
dc.date.none.fl_str_mv 2017-01-01T00:00:00Z
2018-02-27T16:40:06Z
2018-02-27
dc.type.status.fl_str_mv info:eu-repo/semantics/publishedVersion
dc.type.driver.fl_str_mv info:eu-repo/semantics/article
format article
status_str publishedVersion
dc.identifier.uri.fl_str_mv http://hdl.handle.net/10174/22540
http://hdl.handle.net/10174/22540
https://doi.org/10.1016/j.lithos.2017.02.009
url http://hdl.handle.net/10174/22540
https://doi.org/10.1016/j.lithos.2017.02.009
dc.language.iso.fl_str_mv eng
language eng
dc.relation.none.fl_str_mv Pereira, M.F., Gutierrez-Alonso, G., Murphy, J.B., Drost, K., Gama, C., Silva, J.B. (2017). Birth and demise of the Rheic Ocean magmatic arc(s): Combined U–Pb and Hf isotope analyses in detrital zircon from SW Iberia siliciclastic strata. Lithos 278-281: 383-399.
mpereira@uevora.pt
nd
nd
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