Rhenium isotopes reveal enhanced rock organic carbon oxidation over the Toarcian Oceanic Anoxic Event

M Madeleine Stow A Alexander J. Dickson J Julie Prytulak M Mathieu Dellinger (Laboratoire Environnements, Dynamiques et Territoires de Montagne (EDYTEM), CNRS, Université Savoie Mont-Blanc) V Victoria Alcock S Stephen P. Hesselbo G Geoff M. Nowell (Department of Earth Sciences, Durham University, Durham, UK.) R Robert G. Hilton

Abstract

Abstract Weathering plays a central role in the geological carbon cycle. Silicate mineral weathering is invoked as a stabilizing feedback on CO 2 emissions, for example from volcanism during the emplacement of Large Igneous Provinces. However, modern-day studies show weathering can emit CO 2 during oxidation of rock organic carbon (OC petro ) in sedimentary rocks and function as a positive feedback on climate warming. Here we measure the rhenium isotope composition (δ 187 Re) of Early Jurassic marine sediments to explore how OC petro oxidation rates changed during warming across the Toarcian Ocean Anoxic Event (T-OAE). We find a 0.22 ± 0.10‰ decrease in δ 187 Re values during the T-OAE, with mass balance modeling showing this can be explained by increased OC petro weathering intensity on land associated with 6–7 °C of global warming. We estimate this could have delivered 7600–20,490 PgC to the oceans and atmosphere, demonstrating that chemical weathering does not simply act as a stabilizing feedback during hyperthermal events.

Article Details

Volume / Issue Vol. 17, Issue 1
Published April 16, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (8)

M

Madeleine Stow

A

Alexander J. Dickson

J

Julie Prytulak

M

Mathieu Dellinger

Laboratoire Environnements, Dynamiques et Territoires de Montagne (EDYTEM), CNRS, Université Savoie Mont-Blanc

V

Victoria Alcock

S

Stephen P. Hesselbo

G

Geoff M. Nowell

Department of Earth Sciences, Durham University, Durham, UK.

R

Robert G. Hilton