4.5 Article

U-Pb zircon ages from the northern Austral basin and their correlation with the Early Cretaceous exhumation and volcanism of Patagonia

期刊

CRETACEOUS RESEARCH
卷 55, 期 -, 页码 116-128

出版社

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.cretres.2015.02.006

关键词

Patagonia; Early Cretaceous; Patagonian Andes; Austral basin; Magallanes basin; Opening of the Atlantic Ocean; U-Pb geochronology; Detrital zircons

资金

  1. project Agencia [PICT-2013-1291]
  2. project CONICET [PIP 2011-2013 0048]

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The end of the Early Cretaceous sag stage along the Southern Patagonian Andes is indicated by the sudden appearance of shallow marine to deltaic sandstones on top of deep marine facies. We studied the detrital and volcanic zircon U-Pb geochronology from the coarse-grained deposits represented by the Rio Belgrano and Rio Tarde formations at the northern end of the Austral or Magallanes basin. The maximum depositional age of the basal green sandstones of Rio Belgrano Formation is marked by a similar to 122 Ma age peak. The youngest single zircon of the overlaying lower Rio Tarde Formation yields an age of 118 +/- 2 Ma, however the similar to 122 Ma age peak is equally present. The upper Rio Tarde Formation yielded a 112 +/- 2 Ma U-Pb zircon age for a volcanic tuff. The similar to 122 Ma significant peak and 112 +/- 2 Ma tuff represent volcanic ash fall coeval with plutonic activity dated between 125 and 110 Ma in the North Patagonian Batholith. An abundant detrital Mesozoic population is present in both units, including a 189-170 Ma peak corresponding to the V1 Jurassic volcanic stage cropping out in the North Patagonian Massif. However, zircons of 153-157 Ma representing the age of Jurassic volcanism along the Patagonian basement domain to the west are scarce. Our data indicate a similar to 122 Ma age for the studied samples, during which the Southern Patagonian Andes received mixed basement and V1 Jurassic volcanic stage detritus. These combined sources are an outstanding characteristic of the North Patagonian and Deseado massifs, in agreement with the previously proposed Aptian uplift and exhumation of Patagonia. (C) 2015 Elsevier Ltd. All rights reserved.

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