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A case study of maximum depositional ages from terrestrial sandstones near the Cretaceous—Paleogene transition, western Williston Basin, USA

January 1, 2025

We present a new Bayesian method for deriving maximum depositional ages from detrital K-feldspar using total-fusion 40Ar/39Ar data. Individual analyses weighted by K/Ca ratio, age uncertainty, and percent radiogenic argon prioritize a result to come from accurately measured volcanic sources. Results from this method applied to sandstones from the Hell Creek region of northeastern Montana show that detrital K-feldspar maximum depositional ages align closely with detrital U-Pb zircon ages as well as tephra based chronostratigraphic constraints from both 40Ar/39Ar and U-Pb data. An age model informed by maximum depositional ages and available tephra data provides an estimate of 1.74 ± 1.04 Ma for the duration of deposition for the Hell Creek Formation. Combined age model and maximum depositional age data suggest ≤ 1.84 Ma of missing time is represented by the Hell Creek and Fox Hills formational disconformity, coinciding with the final regression of the Western Interior seaway.

Publication Year 2025
Title A case study of maximum depositional ages from terrestrial sandstones near the Cretaceous—Paleogene transition, western Williston Basin, USA
Authors Andrew Tholt, Jack N. Carter, Neil Patrick Griffis, Roland Mundil, Gregory Wilson-Mantilla, Laura Pianowski, Anthony Fuentes, Paul R. Renne
Publication Type Article
Publication Subtype Journal Article
Series Title Geochronology, Thermochronology and Time Scale Research
Index ID 70279680
Record Source USGS Publications Warehouse
USGS Organization Geology, Geophysics, and Geochemistry Science Center
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