4.1 Article

Sr-isotope chronostratigraphy of Paleogene-Neogene marine deposits: Austral Basin, southern Patagonia (Argentina)

期刊

JOURNAL OF SOUTH AMERICAN EARTH SCIENCES
卷 37, 期 -, 页码 122-135

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jsames.2012.02.007

关键词

Sr-isotope analysis; San Julian Formation; Monte Leon Formation; Paleogene-Neogene boundary; Austral Basin; Patagonia

资金

  1. CONICET [PIP11420080100503]
  2. CONICET external fellowship
  3. SECyT [PI188 FCEyN-UNLPam]
  4. NSERC

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The Paleogene to Neogene San Julian and Monte Leon formations underlie the central and eastern parts of the Austral Basin (Patagonia, Argentina), and represent coastal plain to shallow shelf systems within a retroarc foreland basin east of the Andes. The formations are characterized by prominent occurrences of thin (<1 m) densely compacted fossil concentrations, including the large oyster Crassostrea? hatcheri. Formation ages have been problematic given macrofaunal provincialism effectively precluding precise extrabasinal correlations. A Sr-isotope chronostratigraphy based on fossil shell calcite from oysters, pectinids and brachiopods is presented for a regional NE-SW-oriented transect extending similar to 200 km along strike of the Austral Basin. The Paleogene-Neogene boundary (similar to 23 Ma) may occur within the uppermost San Julian Formation (22.68 Ma, with a range between 22.22 and 23.22 Ma), coincident with a prominent glauconitic interval, or in a meteorically altered erosional paleosurface that caps this formation and may correlate with an eustatic sea level fall coincident with the global boundary. The younger Monte Leon Formation is entirely of early Neogene (Aquitanian to early Burdigalian) age, with ages of 22.12 Ma (21.68-22.58) at the base to 17.91 Ma (17.51-18.29) at the top. The proposed new chronostratigraphic framework forms a foundation for future differentiation of local, regional, and global sedimentary patterns in the Austral Basin during the Paleogene/Neogene transition; in particular, with contemporaneous basins and tectonic blocks across the southern polar region, such as in Australia, New Zealand, and Antarctica. (C) 2012 Elsevier Ltd. All rights reserved.

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