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High-resolution carbonate isotopic study of the Mural Formation (Cerro Pimas section), Sonora, México: Implications for early Albian oceanic anoxic events

Authors :
Carlos M. González-León
Yong I.L. Lee
Hugh C. Jenkyns
Jayagopal Madhavaraju
S. Ramasamy
Julio Cesar Saucedo-Samaniego
Robert W. Scott
Source :
Journal of South American Earth Sciences. 82:329-345
Publication Year :
2018
Publisher :
Elsevier BV, 2018.

Abstract

The 420-m thick stratigraphic section of the Mural Formation that is exposed in the Cerro Pimas area of northern Sonora, Mexico, is composed of limestone lithofacies ranging from bioclastic wackestone to boundstone, whose biota is characterized by low diversity. Prominent age-diagnostic fossils are benthic foraminifera and long-ranging calcareous algae that indicate the Aptian/Albian boundary is close to the base of the Los Coyotes Member. The carbonates of this formation have negative to positive δ13C values (−4.63 to +2.6‰) and highly depleted δ18O values that range from −12.74 to −8.34‰. The absence of correlation between δ13C and δ18O values supports a primary marine origin for the δ13C values of these limestones. The carbon-isotopic curve of the Cerro Pimas stratigraphic section has well-defined δ13C segments (C8 – C15) that compare with published curves of similar age. In the lower part of the early Albian Los Coyotes Member, the presence of OAE 1b is indicated by an increase followed by a decrease in δ13C values, suggesting correlation with the Kilian Event. The middle part of the Los Coyotes Member has a significant negative carbon-isotope excursion correlated with the globally recognizable early Albian Paquier event. Moreover, another significant negative carbon-isotope shift is observed in the upper part of the Los Coyotes Member, which can be correlated with the Leenhardt Event. The occurrence of the Kilian, Paquier and Leenhardt Events (OAE 1b cluster) in the Cerro Pimas stratigraphy confirms the global nature of these early Albian disturbances of the carbon cycle.

Details

ISSN :
08959811
Volume :
82
Database :
OpenAIRE
Journal :
Journal of South American Earth Sciences
Accession number :
edsair.doi...........418e50b2169050a832c7a24293f7bc13
Full Text :
https://doi.org/10.1016/j.jsames.2017.10.019