Paleoproterozoic juvenile magmatism within the northeastern sector of the São Francisco paleocontinent : insights from the shoshonitic high Ba–Sr Montezuma granitoids.

Detalhes bibliográficos
Autor(a) principal: Bersan, Samuel Moreira
Data de Publicação: 2020
Outros Autores: Costa, Alice Fernanda de Oliveira, Danderfer Filho, André, Abreu, Francisco Robério de, Lana, Cristiano de Carvalho, Queiroga, Gláucia Nascimento, Storey, Craig Darryl, Moreira, Hugo Souza
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Repositório Institucional da UFOP
Texto Completo: http://www.repositorio.ufop.br/handle/123456789/13162
https://doi.org/10.1016/j.gsf.2020.01.017
Resumo: New, integrated petrographic, mineral chemistry, whole rock geochemical, zircon and titanite U–Pb geochronology, and zircon Hf isotopic data from the Montezuma granitoids, as well as new geochemical results for its host rocks represented by the Corrego Tingui Complex, provides new insights into the late- to post-collisional evolution of the northeastern S~ao Francisco paleocontinent. U–Pb zircon dates from the Montezuma granitoids spread along the Concordia between ca. 2.2 Ga to 1.8 Ga and comprise distinct groups. Group I have crystallization ages between ca. 2.15 Ga and 2.05 Ga and are interpreted as inherited grains. Group II zircon dates vary from 2.04 Ga to 1.9 Ga and corresponds to the crystallization of the Montezuma granitoids, which were constrained at ca. 2.03 Ga by the titanite U–Pb age. Inverse age zoning is common within the ca. 1.8 Ga Group III zircon ages, being related to fluid isotopic re-setting during the Espinhaco rifiting event. Zircon εHf(t) analysis show dominantly positive values for both Group I ( 4 to þ9) and II ( 3 to þ8) zircons and TDM2 model ages of 2.7–2.1 Ga and 2.5–1.95 Ga, respectively. Geochemically, the Montezuma granitoids are weakly peraluminous to metaluminous magnesian granitoids, enriched in LILES and LREE, with high to moderate Mg# and depleted in some of the HFSE. Their lithochemical signature, added to the juvenile signature of both inherited and crystallized zircons, allowed its classification as a shoshonitic high Ba–Sr granitoid related to a late- to post-collisional lithosphere delamination followed by asthenospheric upwelling. In this scenario, the partial melting of the lithospheric mantle interacted with the roots of an accreted juvenile intra-oceanic arc, being these hybrid magma interpreted as the source of the Montezuma granitoids. The Corrego Tinguí Complex host rocks are akin to a syn- to late-collisional volcanic arc granitoids originated from the partial melting of ancient crustal rocks. The results presented in this study have revealed the occurrence of juvenile rocks, probably related to an island arc environment, that are exotic in relation to the Paleo- to Neoarchean crust from the S~ao Francisco paleocontinent’s core.
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spelling Paleoproterozoic juvenile magmatism within the northeastern sector of the São Francisco paleocontinent : insights from the shoshonitic high Ba–Sr Montezuma granitoids.Zircon U–Pb-HfTitanite U–PbLate- to post-collisionalNew, integrated petrographic, mineral chemistry, whole rock geochemical, zircon and titanite U–Pb geochronology, and zircon Hf isotopic data from the Montezuma granitoids, as well as new geochemical results for its host rocks represented by the Corrego Tingui Complex, provides new insights into the late- to post-collisional evolution of the northeastern S~ao Francisco paleocontinent. U–Pb zircon dates from the Montezuma granitoids spread along the Concordia between ca. 2.2 Ga to 1.8 Ga and comprise distinct groups. Group I have crystallization ages between ca. 2.15 Ga and 2.05 Ga and are interpreted as inherited grains. Group II zircon dates vary from 2.04 Ga to 1.9 Ga and corresponds to the crystallization of the Montezuma granitoids, which were constrained at ca. 2.03 Ga by the titanite U–Pb age. Inverse age zoning is common within the ca. 1.8 Ga Group III zircon ages, being related to fluid isotopic re-setting during the Espinhaco rifiting event. Zircon εHf(t) analysis show dominantly positive values for both Group I ( 4 to þ9) and II ( 3 to þ8) zircons and TDM2 model ages of 2.7–2.1 Ga and 2.5–1.95 Ga, respectively. Geochemically, the Montezuma granitoids are weakly peraluminous to metaluminous magnesian granitoids, enriched in LILES and LREE, with high to moderate Mg# and depleted in some of the HFSE. Their lithochemical signature, added to the juvenile signature of both inherited and crystallized zircons, allowed its classification as a shoshonitic high Ba–Sr granitoid related to a late- to post-collisional lithosphere delamination followed by asthenospheric upwelling. In this scenario, the partial melting of the lithospheric mantle interacted with the roots of an accreted juvenile intra-oceanic arc, being these hybrid magma interpreted as the source of the Montezuma granitoids. The Corrego Tinguí Complex host rocks are akin to a syn- to late-collisional volcanic arc granitoids originated from the partial melting of ancient crustal rocks. The results presented in this study have revealed the occurrence of juvenile rocks, probably related to an island arc environment, that are exotic in relation to the Paleo- to Neoarchean crust from the S~ao Francisco paleocontinent’s core.2021-03-23T08:34:18Z2021-03-23T08:34:18Z2020info:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/articleapplication/pdfBERSAN, S. M. et al. Paleoproterozoic juvenile magmatism within the northeastern sector of the São Francisco paleocontinent : insights from the shoshonitic high Ba–Sr Montezuma granitoids. Geoscience Frontiers, v. 11, n. 5, p. 1821-1840, set. 2020. Disponível em: <https://www.sciencedirect.com/science/article/pii/S1674987120300414>. Acesso em: 19 fev 2021.1674-9871http://www.repositorio.ufop.br/handle/123456789/13162https://doi.org/10.1016/j.gsf.2020.01.017This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/). Fonte: o próprio artigo.info:eu-repo/semantics/openAccessBersan, Samuel MoreiraCosta, Alice Fernanda de OliveiraDanderfer Filho, AndréAbreu, Francisco Robério deLana, Cristiano de CarvalhoQueiroga, Gláucia NascimentoStorey, Craig DarrylMoreira, Hugo Souzaengreponame:Repositório Institucional da UFOPinstname:Universidade Federal de Ouro Preto (UFOP)instacron:UFOP2021-03-23T08:34:18Zoai:repositorio.ufop.br:123456789/13162Repositório InstitucionalPUBhttp://www.repositorio.ufop.br/oai/requestrepositorio@ufop.edu.bropendoar:32332021-03-23T08:34:18Repositório Institucional da UFOP - Universidade Federal de Ouro Preto (UFOP)false
dc.title.none.fl_str_mv Paleoproterozoic juvenile magmatism within the northeastern sector of the São Francisco paleocontinent : insights from the shoshonitic high Ba–Sr Montezuma granitoids.
title Paleoproterozoic juvenile magmatism within the northeastern sector of the São Francisco paleocontinent : insights from the shoshonitic high Ba–Sr Montezuma granitoids.
spellingShingle Paleoproterozoic juvenile magmatism within the northeastern sector of the São Francisco paleocontinent : insights from the shoshonitic high Ba–Sr Montezuma granitoids.
Bersan, Samuel Moreira
Zircon U–Pb-Hf
Titanite U–Pb
Late- to post-collisional
title_short Paleoproterozoic juvenile magmatism within the northeastern sector of the São Francisco paleocontinent : insights from the shoshonitic high Ba–Sr Montezuma granitoids.
title_full Paleoproterozoic juvenile magmatism within the northeastern sector of the São Francisco paleocontinent : insights from the shoshonitic high Ba–Sr Montezuma granitoids.
title_fullStr Paleoproterozoic juvenile magmatism within the northeastern sector of the São Francisco paleocontinent : insights from the shoshonitic high Ba–Sr Montezuma granitoids.
title_full_unstemmed Paleoproterozoic juvenile magmatism within the northeastern sector of the São Francisco paleocontinent : insights from the shoshonitic high Ba–Sr Montezuma granitoids.
title_sort Paleoproterozoic juvenile magmatism within the northeastern sector of the São Francisco paleocontinent : insights from the shoshonitic high Ba–Sr Montezuma granitoids.
author Bersan, Samuel Moreira
author_facet Bersan, Samuel Moreira
Costa, Alice Fernanda de Oliveira
Danderfer Filho, André
Abreu, Francisco Robério de
Lana, Cristiano de Carvalho
Queiroga, Gláucia Nascimento
Storey, Craig Darryl
Moreira, Hugo Souza
author_role author
author2 Costa, Alice Fernanda de Oliveira
Danderfer Filho, André
Abreu, Francisco Robério de
Lana, Cristiano de Carvalho
Queiroga, Gláucia Nascimento
Storey, Craig Darryl
Moreira, Hugo Souza
author2_role author
author
author
author
author
author
author
dc.contributor.author.fl_str_mv Bersan, Samuel Moreira
Costa, Alice Fernanda de Oliveira
Danderfer Filho, André
Abreu, Francisco Robério de
Lana, Cristiano de Carvalho
Queiroga, Gláucia Nascimento
Storey, Craig Darryl
Moreira, Hugo Souza
dc.subject.por.fl_str_mv Zircon U–Pb-Hf
Titanite U–Pb
Late- to post-collisional
topic Zircon U–Pb-Hf
Titanite U–Pb
Late- to post-collisional
description New, integrated petrographic, mineral chemistry, whole rock geochemical, zircon and titanite U–Pb geochronology, and zircon Hf isotopic data from the Montezuma granitoids, as well as new geochemical results for its host rocks represented by the Corrego Tingui Complex, provides new insights into the late- to post-collisional evolution of the northeastern S~ao Francisco paleocontinent. U–Pb zircon dates from the Montezuma granitoids spread along the Concordia between ca. 2.2 Ga to 1.8 Ga and comprise distinct groups. Group I have crystallization ages between ca. 2.15 Ga and 2.05 Ga and are interpreted as inherited grains. Group II zircon dates vary from 2.04 Ga to 1.9 Ga and corresponds to the crystallization of the Montezuma granitoids, which were constrained at ca. 2.03 Ga by the titanite U–Pb age. Inverse age zoning is common within the ca. 1.8 Ga Group III zircon ages, being related to fluid isotopic re-setting during the Espinhaco rifiting event. Zircon εHf(t) analysis show dominantly positive values for both Group I ( 4 to þ9) and II ( 3 to þ8) zircons and TDM2 model ages of 2.7–2.1 Ga and 2.5–1.95 Ga, respectively. Geochemically, the Montezuma granitoids are weakly peraluminous to metaluminous magnesian granitoids, enriched in LILES and LREE, with high to moderate Mg# and depleted in some of the HFSE. Their lithochemical signature, added to the juvenile signature of both inherited and crystallized zircons, allowed its classification as a shoshonitic high Ba–Sr granitoid related to a late- to post-collisional lithosphere delamination followed by asthenospheric upwelling. In this scenario, the partial melting of the lithospheric mantle interacted with the roots of an accreted juvenile intra-oceanic arc, being these hybrid magma interpreted as the source of the Montezuma granitoids. The Corrego Tinguí Complex host rocks are akin to a syn- to late-collisional volcanic arc granitoids originated from the partial melting of ancient crustal rocks. The results presented in this study have revealed the occurrence of juvenile rocks, probably related to an island arc environment, that are exotic in relation to the Paleo- to Neoarchean crust from the S~ao Francisco paleocontinent’s core.
publishDate 2020
dc.date.none.fl_str_mv 2020
2021-03-23T08:34:18Z
2021-03-23T08:34:18Z
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 BERSAN, S. M. et al. Paleoproterozoic juvenile magmatism within the northeastern sector of the São Francisco paleocontinent : insights from the shoshonitic high Ba–Sr Montezuma granitoids. Geoscience Frontiers, v. 11, n. 5, p. 1821-1840, set. 2020. Disponível em: <https://www.sciencedirect.com/science/article/pii/S1674987120300414>. Acesso em: 19 fev 2021.
1674-9871
http://www.repositorio.ufop.br/handle/123456789/13162
https://doi.org/10.1016/j.gsf.2020.01.017
identifier_str_mv BERSAN, S. M. et al. Paleoproterozoic juvenile magmatism within the northeastern sector of the São Francisco paleocontinent : insights from the shoshonitic high Ba–Sr Montezuma granitoids. Geoscience Frontiers, v. 11, n. 5, p. 1821-1840, set. 2020. Disponível em: <https://www.sciencedirect.com/science/article/pii/S1674987120300414>. Acesso em: 19 fev 2021.
1674-9871
url http://www.repositorio.ufop.br/handle/123456789/13162
https://doi.org/10.1016/j.gsf.2020.01.017
dc.language.iso.fl_str_mv eng
language eng
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dc.format.none.fl_str_mv application/pdf
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instname:Universidade Federal de Ouro Preto (UFOP)
instacron:UFOP
instname_str Universidade Federal de Ouro Preto (UFOP)
instacron_str UFOP
institution UFOP
reponame_str Repositório Institucional da UFOP
collection Repositório Institucional da UFOP
repository.name.fl_str_mv Repositório Institucional da UFOP - Universidade Federal de Ouro Preto (UFOP)
repository.mail.fl_str_mv repositorio@ufop.edu.br
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