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Geologic evidence for an icehouse Earth before the Sturtian global glaciation

June 10, 2020

Snowball Earth episodes, times when the planet was covered in ice, represent the most extreme climate events in Earth’s history. Yet, the mechanisms that drive their initiation remain poorly constrained. Current climate models require a cool Earth to enter a Snowball state. However, existing geologic evidence suggests that Earth had a stable, warm, and ice-free climate before the Neoproterozoic Sturtian global glaciation [ca. 717 million years (Ma) ago]. Here, we present eruption ages for three felsic volcanic units interbedded with glaciolacustrine sedimentary rocks from southwest Virginia, USA, that demonstrate that glacially influenced sedimentation occurred at tropical latitudes ca. 751 Ma ago. Our findings are the first geologic evidence of a cool climate teetering on the edge of global glaciation several million years before the Sturtian Snowball Earth.

Publication Year 2020
Title Geologic evidence for an icehouse Earth before the Sturtian global glaciation
DOI 10.1126/sciadv.aay6647
Authors Scott A. MacLennan, Michael P. Eddy, Arthur J. Merschat, Akshay K. Mehra, Peter W. Crockford, Adam C. Maloof, C. Scott Southworth, Blair Schoene
Publication Type Article
Publication Subtype Journal Article
Series Title Science Advances
Index ID 70279274
Record Source USGS Publications Warehouse
USGS Organization Florence Bascom Geoscience Center
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