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Refining 2 km of Ordovician chronostratigraphy beneath Anticosti Island utilizing integrated chemostratigraphy

Authors :
Esther Asselin
Aicha Achab
M. Matthew Emmons
John F. Riva
Carlton E. Brett
Patrick I. McLaughlin
Wayne R. Premo
Alyssa M. Bancroft
Poul Emsbo
André Desrochers
Leonid A. Neymark
Source :
Canadian Journal of Earth Sciences. 53:865-874
Publication Year :
2016
Publisher :
Canadian Science Publishing, 2016.

Abstract

New high-resolution chemostratigraphy, in combination with updated biostratigraphy, refines the chronostratigraphic resolution of the nearly 2 km thick Ordovician section below Anticosti Island. A total of 1414 horizons, spaced at 1.0–1.5 m intervals, were sampled from the New Associated Consolidated Paper (NACP) drill core and analyzed for major and trace elemental composition by portable X-ray fluorescence analyzer (pXRF). Select micrite and calcareous shale powders were then analyzed for δ13Ccarb (number of samples, N = 364) and 87Sr/86Sr (N = 25). Our results indicate a Floian to early Darriwilian (F3–Dw1) age for the Romaine Formation, a middle Darriwilian to Sandbian (Dw2–Sa1) age for the Mingan Formation, a lower to mid-Katian (Ka1–Ka2) age for the Macasty Formation, an upper Katian (Ka3) age for the lower Vauréal Formation, an uppermost Katian (Ka4) age for the upper Vauréal, and a Hirnantian (H1) age for the Ellis Bay Formation. This integrated chemostratigraphic and biostratigraphic synthesis establishes the position of numerous unconformities, the duration of the intervening depositional sequences, and rates of sedimentation.

Details

ISSN :
14803313 and 00084077
Volume :
53
Database :
OpenAIRE
Journal :
Canadian Journal of Earth Sciences
Accession number :
edsair.doi...........4e5c9fb76e9992c0123ed7801207778b
Full Text :
https://doi.org/10.1139/cjes-2015-0242