Early uplift and orogenic deformation in the Neuquén Basin: Constraints on the Andean uplift from U-Pb and Hf isotopic data of detrital zircons

Provenance of detrital sediments of the Neuquén Basin in Central Argentina was investigated using U-Pb and Lu-Hf isotopic composition of zircon grains in order to evaluate the timing of uplift of the southern Andes at these latitudes (36°-39°S). Samples of fluvial synorogenic deposits of the Candele...

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Detalles Bibliográficos
Autores principales: Tunik, Maísa Andrea, Folguera, Andrés, Naipauer, Maximiliano, Ramos, Victor Alberto
Publicado: 2010
Materias:
Acceso en línea:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00401951_v489_n1-4_p258_Tunik
http://hdl.handle.net/20.500.12110/paper_00401951_v489_n1-4_p258_Tunik
Aporte de:
id paper:paper_00401951_v489_n1-4_p258_Tunik
record_format dspace
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-134
collection Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA)
topic Andes
Foreland basin
Juvenile rocks
Retroarc basin
Uplift
Andes
Angular unconformity
Argentina
Cambrians
Cenomanian
Central Andes
Continental crusts
Detrital zircon
Early Cretaceous
Fission track
Foreland basin
Island arc
Isotopic composition
Isotopic data
Isotopic values
Late cretaceous
Lower Cretaceous
Magmatic arcs
Negative values
Neoproterozoic
Ordovician
Paleoproterozoic
Permian
Plutons
Triassic
Upper Cretaceous
Buildings
Deformation
Deposits
Geochronology
Hafnium
Isotopes
Lead
Silicate minerals
Time measurement
Zircon
Stratigraphy
continental crust
Cretaceous
deformation
exhumation
fission track dating
foreland basin
Grenvillian orogeny
hafnium
island arc
isotopic composition
orogeny
unconformity
uplift
uranium-lead dating
zircon
Andes
Argentina
Neuquen
Neuquen Basin
spellingShingle Andes
Foreland basin
Juvenile rocks
Retroarc basin
Uplift
Andes
Angular unconformity
Argentina
Cambrians
Cenomanian
Central Andes
Continental crusts
Detrital zircon
Early Cretaceous
Fission track
Foreland basin
Island arc
Isotopic composition
Isotopic data
Isotopic values
Late cretaceous
Lower Cretaceous
Magmatic arcs
Negative values
Neoproterozoic
Ordovician
Paleoproterozoic
Permian
Plutons
Triassic
Upper Cretaceous
Buildings
Deformation
Deposits
Geochronology
Hafnium
Isotopes
Lead
Silicate minerals
Time measurement
Zircon
Stratigraphy
continental crust
Cretaceous
deformation
exhumation
fission track dating
foreland basin
Grenvillian orogeny
hafnium
island arc
isotopic composition
orogeny
unconformity
uplift
uranium-lead dating
zircon
Andes
Argentina
Neuquen
Neuquen Basin
Tunik, Maísa Andrea
Folguera, Andrés
Naipauer, Maximiliano
Ramos, Victor Alberto
Early uplift and orogenic deformation in the Neuquén Basin: Constraints on the Andean uplift from U-Pb and Hf isotopic data of detrital zircons
topic_facet Andes
Foreland basin
Juvenile rocks
Retroarc basin
Uplift
Andes
Angular unconformity
Argentina
Cambrians
Cenomanian
Central Andes
Continental crusts
Detrital zircon
Early Cretaceous
Fission track
Foreland basin
Island arc
Isotopic composition
Isotopic data
Isotopic values
Late cretaceous
Lower Cretaceous
Magmatic arcs
Negative values
Neoproterozoic
Ordovician
Paleoproterozoic
Permian
Plutons
Triassic
Upper Cretaceous
Buildings
Deformation
Deposits
Geochronology
Hafnium
Isotopes
Lead
Silicate minerals
Time measurement
Zircon
Stratigraphy
continental crust
Cretaceous
deformation
exhumation
fission track dating
foreland basin
Grenvillian orogeny
hafnium
island arc
isotopic composition
orogeny
unconformity
uplift
uranium-lead dating
zircon
Andes
Argentina
Neuquen
Neuquen Basin
description Provenance of detrital sediments of the Neuquén Basin in Central Argentina was investigated using U-Pb and Lu-Hf isotopic composition of zircon grains in order to evaluate the timing of uplift of the southern Andes at these latitudes (36°-39°S). Samples of fluvial synorogenic deposits of the Candeleros Formation, at the base of the Neuquén Group (Upper Cretaceous), as well as from older deposits of the Rayoso and Agrio Formations (Lower Cretaceous) were investigated. A regional angular unconformity separates the Upper from the Lower Cretaceous units and is generally attributed to the onset of the foreland basin stage. The evident differences between these suites (above and below the unconformity) are clearly shown by their distinct provenance patterns, which correspond to different bedrock sources and patterns of dispersal. Detrital zircons of the Rayoso and Agrio Formations beneath the unconformity indicate provenance from the eastern foreland basement, presently exposed along the Sierras Pampeanas of central Argentina. Detrital zircon ages correspond to the Permian and Triassic Choiyoi province, the Ordovician Famatinian orogen, the Lower Cambrian-Neoproterozoic Pampean orogen, the Grenvillian age Mesoproterozoic basement and some other older sources. In contrast, detrital zircons above the unconformity, from the Candeleros Formation, have striking different prominent peaks. The pattern indicates direct derivation from the Early Cretaceous magmatic arc, probably from plutons exhumed during the Late Cretaceous deformation along the western Chilean slope of the Andean cordillera. The contrasting dispersal patterns are interpreted as a result of the uplift of the southern Central Andes at these latitudes. The youngest detrital zircons constrain the timing of uplift as being younger than 99. Ma, supporting the assumed Cenomanian age for the synorogenic deposits. This age is further constrained by fission-track data from zircons from an ash-tuff layer of the lowest parts of the Neuquén Group, which yielded ages of about 88. Ma. The Hf isotopic data indicate derivation from a juvenile mantle for the Grenvillian age zircons, which corroborates the previously assumed island arc setting. The intermediate Hf isotopic values for the Pampean age zircons indicate a transition to the extensive recycling of the continental crust for the oldest Paleoproterozoic zircons with negative values that characterize the foreland basement. © 2010 Elsevier B.V.
author Tunik, Maísa Andrea
Folguera, Andrés
Naipauer, Maximiliano
Ramos, Victor Alberto
author_facet Tunik, Maísa Andrea
Folguera, Andrés
Naipauer, Maximiliano
Ramos, Victor Alberto
author_sort Tunik, Maísa Andrea
title Early uplift and orogenic deformation in the Neuquén Basin: Constraints on the Andean uplift from U-Pb and Hf isotopic data of detrital zircons
title_short Early uplift and orogenic deformation in the Neuquén Basin: Constraints on the Andean uplift from U-Pb and Hf isotopic data of detrital zircons
title_full Early uplift and orogenic deformation in the Neuquén Basin: Constraints on the Andean uplift from U-Pb and Hf isotopic data of detrital zircons
title_fullStr Early uplift and orogenic deformation in the Neuquén Basin: Constraints on the Andean uplift from U-Pb and Hf isotopic data of detrital zircons
title_full_unstemmed Early uplift and orogenic deformation in the Neuquén Basin: Constraints on the Andean uplift from U-Pb and Hf isotopic data of detrital zircons
title_sort early uplift and orogenic deformation in the neuquén basin: constraints on the andean uplift from u-pb and hf isotopic data of detrital zircons
publishDate 2010
url https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00401951_v489_n1-4_p258_Tunik
http://hdl.handle.net/20.500.12110/paper_00401951_v489_n1-4_p258_Tunik
work_keys_str_mv AT tunikmaisaandrea earlyupliftandorogenicdeformationintheneuquenbasinconstraintsontheandeanupliftfromupbandhfisotopicdataofdetritalzircons
AT folgueraandres earlyupliftandorogenicdeformationintheneuquenbasinconstraintsontheandeanupliftfromupbandhfisotopicdataofdetritalzircons
AT naipauermaximiliano earlyupliftandorogenicdeformationintheneuquenbasinconstraintsontheandeanupliftfromupbandhfisotopicdataofdetritalzircons
AT ramosvictoralberto earlyupliftandorogenicdeformationintheneuquenbasinconstraintsontheandeanupliftfromupbandhfisotopicdataofdetritalzircons
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spelling paper:paper_00401951_v489_n1-4_p258_Tunik2023-06-08T15:03:55Z Early uplift and orogenic deformation in the Neuquén Basin: Constraints on the Andean uplift from U-Pb and Hf isotopic data of detrital zircons Tunik, Maísa Andrea Folguera, Andrés Naipauer, Maximiliano Ramos, Victor Alberto Andes Foreland basin Juvenile rocks Retroarc basin Uplift Andes Angular unconformity Argentina Cambrians Cenomanian Central Andes Continental crusts Detrital zircon Early Cretaceous Fission track Foreland basin Island arc Isotopic composition Isotopic data Isotopic values Late cretaceous Lower Cretaceous Magmatic arcs Negative values Neoproterozoic Ordovician Paleoproterozoic Permian Plutons Triassic Upper Cretaceous Buildings Deformation Deposits Geochronology Hafnium Isotopes Lead Silicate minerals Time measurement Zircon Stratigraphy continental crust Cretaceous deformation exhumation fission track dating foreland basin Grenvillian orogeny hafnium island arc isotopic composition orogeny unconformity uplift uranium-lead dating zircon Andes Argentina Neuquen Neuquen Basin Provenance of detrital sediments of the Neuquén Basin in Central Argentina was investigated using U-Pb and Lu-Hf isotopic composition of zircon grains in order to evaluate the timing of uplift of the southern Andes at these latitudes (36°-39°S). Samples of fluvial synorogenic deposits of the Candeleros Formation, at the base of the Neuquén Group (Upper Cretaceous), as well as from older deposits of the Rayoso and Agrio Formations (Lower Cretaceous) were investigated. A regional angular unconformity separates the Upper from the Lower Cretaceous units and is generally attributed to the onset of the foreland basin stage. The evident differences between these suites (above and below the unconformity) are clearly shown by their distinct provenance patterns, which correspond to different bedrock sources and patterns of dispersal. Detrital zircons of the Rayoso and Agrio Formations beneath the unconformity indicate provenance from the eastern foreland basement, presently exposed along the Sierras Pampeanas of central Argentina. Detrital zircon ages correspond to the Permian and Triassic Choiyoi province, the Ordovician Famatinian orogen, the Lower Cambrian-Neoproterozoic Pampean orogen, the Grenvillian age Mesoproterozoic basement and some other older sources. In contrast, detrital zircons above the unconformity, from the Candeleros Formation, have striking different prominent peaks. The pattern indicates direct derivation from the Early Cretaceous magmatic arc, probably from plutons exhumed during the Late Cretaceous deformation along the western Chilean slope of the Andean cordillera. The contrasting dispersal patterns are interpreted as a result of the uplift of the southern Central Andes at these latitudes. The youngest detrital zircons constrain the timing of uplift as being younger than 99. Ma, supporting the assumed Cenomanian age for the synorogenic deposits. This age is further constrained by fission-track data from zircons from an ash-tuff layer of the lowest parts of the Neuquén Group, which yielded ages of about 88. Ma. The Hf isotopic data indicate derivation from a juvenile mantle for the Grenvillian age zircons, which corroborates the previously assumed island arc setting. The intermediate Hf isotopic values for the Pampean age zircons indicate a transition to the extensive recycling of the continental crust for the oldest Paleoproterozoic zircons with negative values that characterize the foreland basement. © 2010 Elsevier B.V. Fil:Tunik, M. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. Fil:Folguera, A. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. Fil:Naipauer, M. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. Fil:Ramos, V.A. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. 2010 https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00401951_v489_n1-4_p258_Tunik http://hdl.handle.net/20.500.12110/paper_00401951_v489_n1-4_p258_Tunik