Glaciomarine sequence stratigraphy in the Mississippian Río Blanco Basin, Argentina, southwestern Gondwana. Basin analysis and palaeoclimatic implications for the Late Paleozoic Ice Age during the Tournaisian.

Author:

Ezpeleta Miguel12ORCID,Rustán Juan José12,Balseiro Diego1ORCID,Dávila Federico Miguel1,Dahlquist Juan Andrés1,Vaccari Norberto Emilio12,Sterren Andrea Fabiana1,Prestianni Cyrille3,Cisterna Gabriela Adriana12,Basei Miguel4ORCID

Affiliation:

1. CICTERRA-CONICET, Universidad Nacional de CórdobaAv. Haya de la Torre s/n, X5015GCA, Córdoba, Argentina

2. Universidad Nacional de La RiojaAv. Luis M. de la Fuente s/n, F5300, La Rioja, Argentina

3. Palaeontology Department, Royal Belgian Institute of Natural SciencesRue Vautier 29, 1000 Brussels, Belgium

4. Instituto de Geociências, Universidade de São Paulo, São Paulo, Brazil

Abstract

The Late Paleozoic Ice Age (LPIA) has been well recorded in the uppermost Mississippian–Pennsylvanian of Gondwana. Nevertheless, little is known about the temporal and geographic dynamics, particularly during the early Mississippian. We report on exceptional Tournaisian glaciomarine stratigraphic sections from central Argentina (Río Blanco Basin). Encompassing c. 1400 m, these successions contain conspicuous glacigenic strata with age constraints provided by palaeontological data and U/Pb detrital zircon age spectra. A variety of marine, glaciomarine and fan-deltaic environments indicate relative sea-level variations mainly associated with tectonism and repetitive cycles of glacial activity. Provenance analysis indicates a source from the Sierras Pampeanas basement located to the east. Fifteen sequences were grouped into three depositional models: (1) Transgressive Systems Tracts (TST) to Highstand Systems Tracts (HST) sequences unaffected by glacial ice; (2) Lowstand Systems Tracts (LST) to TST and then to HST with glacial influence; and (3) non-glacial Falling-Stage Systems Tracts (FSST) to TST and HST. The glacial evidence indicates that the oldest Mississippian glacial stage of the LPIA in southwestern Gondwana is constrained to the middle Tournaisian. In contrast with previous descriptions of Gondwanan coeval glacial records, our sequence analysis confirms complex hierarchical climate variability, rather than a single episode of ice advance and retreat.Supplementary material: Detailed stratigraphic sections, palaeocurrents and compositional analysis and U/Pb detrital Zr methodology and data are available at: https://doi.org/10.6084/m9.figshare.c.5011424

Funder

Fondo para la Investigación Científica y Tecnológica

Secretaria de Ciencia y Tecnica, Universidad Nacional de La Rioja

Fundação de Amparo à Pesquisa do Estado de São Paulo

Publisher

Geological Society of London

Subject

Geology

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