Geochemical fingerprints and tectonic setting of the Late Palaeozoic marginal basin of the Bariloche Complex (SW Gondwana), North Patagonian Andes of Argentina

The understanding of the Late Palaeozoic evolution of the south-western Gondwana margin is limited due to a lack of outcrops and data. New insights were achieved by fieldwork, petrographic characterization and geochemical fingerprinting on metasedimentary and interlayered metabasic rocks of the Bariloche Complex exposed in the North Patagonian Andes (~41°S). The surveyed areas were the Jakob-Témpanos lakes (JKB), Cerro Catedral (CAT), and the western foothills of the Ventana Range (VR). The basin was primarily supplied with immature detritus, which formed lithic sandstones, greywackes, pelites and, to a lesser extent, quartzose arenites. The metabasites in the JKB area derived from N-MORB tholeiites produced by low-pressure melting of a depleted mantle with a subduction component. In contrast, metabasites in the VR and CAT area can be traced back to OIB alkaline and E-MORB alkaline/tholeiitic transitional deeper magma sources. A micaschist of the VR yielded a U-Pb detrital zircon maximum depositional age of 358 ± 4 Ma (2σ). Moreover, a 206Pb/238U preferred age of 330 ± 6 Ma is likely explained by a mixed isotopic signal resulting from a late metamorphic/thermal overprint, or Pb loss in the metasediment zircons. These results, compared with neighbouring Late Palaeozoic regions, constrain the lifetime of a back-arc basin until its closure at the beginning of the Gondwanide orogeny.

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Journal
International Geology Review
Published
2026-09-18
DOI
https://doi.org/10.1080/00206814.2026.2727596
Primary Topic
Geological and Geochemical Analysis
Type
article
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article

Geochemical fingerprints and tectonic setting of the Late Palaeozoic marginal basin of the Bariloche Complex (SW Gondwana), North Patagonian Andes of Argentina

Juan Cruz Martínez, Juan I. Falco, Franco D. Bianchi, Ivana A. Urraza et al.
International Geology Review
Geological and Geochemical Analysis
article

Geochemical fingerprints and tectonic setting of the Late Palaeozoic marginal basin of the Bariloche Complex (SW Gondwana), North Patagonian Andes of Argentina

Juan Cruz Martínez, Juan I. Falco, Franco D. Bianchi, Ivana A. Urraza, Jorge A. Dristas, Renato Moraes
article en

Abstract

The understanding of the Late Palaeozoic evolution of the south-western Gondwana margin is limited due to a lack of outcrops and data. New insights were achieved by fieldwork, petrographic characterization and geochemical fingerprinting on metasedimentary and interlayered metabasic rocks of the Bariloche Complex exposed in the North Patagonian Andes (~41°S). The surveyed areas were the Jakob-Témpanos lakes (JKB), Cerro Catedral (CAT), and the western foothills of the Ventana Range (VR). The basin was primarily supplied with immature detritus, which formed lithic sandstones, greywackes, pelites and, to a lesser extent, quartzose arenites. The metabasites in the JKB area derived from N-MORB tholeiites produced by low-pressure melting of a depleted mantle with a subduction component. In contrast, metabasites in the VR and CAT area can be traced back to OIB alkaline and E-MORB alkaline/tholeiitic transitional deeper magma sources. A micaschist of the VR yielded a U-Pb detrital zircon maximum depositional age of 358 ± 4 Ma (2σ). Moreover, a 206Pb/238U preferred age of 330 ± 6 Ma is likely explained by a mixed isotopic signal resulting from a late metamorphic/thermal overprint, or Pb loss in the metasediment zircons. These results, compared with neighbouring Late Palaeozoic regions, constrain the lifetime of a back-arc basin until its closure at the beginning of the Gondwanide orogeny.

International Geology Review
Universidade de São Paulo (BR), Centro Científico Tecnológico - Patagonia Norte (AR), Instituto de Geociencias (ES), Instituto Geológico (BR), Universidad Nacional del Sur (AR)
Universidad Nacional del Sur, Consejo Nacional para Investigaciones Científicas y Tecnológicas
Life below water
Openalex Percentile: Top 13%
Geological and Geochemical Analysis
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