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Rhenium Isotopes Record Oxidative Weathering Intensity in Sedimentary Rocks

Dickson, A. J.; Hilton, R. G.; Prytulak, J.; Minisini, D.; Eldrett, J. S.; Dellinger, M.; Stow, M.; Wang, W.

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Authors

A. J. Dickson

R. G. Hilton

D. Minisini

J. S. Eldrett

M. Dellinger

W. Wang



Abstract

Oxidative weathering of organic carbon in sedimentary rocks is a major source of CO2 to the atmosphere over geological timescales, but the size of this emission pathway in Earth's past has not been directly quantified due to a lack of available proxy approaches. We have measured the rhenium isotope composition of organic‐rich rocks sampled from unweathered drill cores and weathered outcrops in south Texas, whose stratigraphic successions can be tightly correlated. Oxidative weathering of more than 90% of the organic carbon and ∼85% of the rhenium is accompanied by a shift to lower rhenium isotope compositions in the weathered outcrops. The calculated isotope composition of rhenium weathered from the initial bedrock for individual samples varies systematically by ∼0.7‰ with different fractions of rhenium loss. This variation can be empirically modeled with isotope fractionation factors of α = 1.0002–1.0008. Our results indicate that the isotope composition of rhenium delivered to the oceans can be altered by weathering intensity of rock organic matter and that the rhenium isotope composition of seawater is sensitive to past oxidative weathering and associated CO2 emissions.

Citation

Dickson, A. J., Hilton, R. G., Prytulak, J., Minisini, D., Eldrett, J. S., Dellinger, M., Stow, M., & Wang, W. (2024). Rhenium Isotopes Record Oxidative Weathering Intensity in Sedimentary Rocks. Geochemistry, Geophysics, Geosystems, 25(10), Article e2024GC011795. https://doi.org/10.1029/2024gc011795

Journal Article Type Article
Acceptance Date Oct 4, 2024
Online Publication Date Oct 28, 2024
Publication Date Oct 1, 2024
Deposit Date Nov 8, 2024
Publicly Available Date Nov 8, 2024
Journal Geochemistry, Geophysics, Geosystems
Electronic ISSN 1525-2027
Publisher American Geophysical Union
Peer Reviewed Peer Reviewed
Volume 25
Issue 10
Article Number e2024GC011795
DOI https://doi.org/10.1029/2024gc011795
Keywords oxidative weathering, rhenium isotopes, carbon cycle, isotope fractionation, biogeochemical cycles, Eagle Ford Shale
Public URL https://durham-repository.worktribe.com/output/3043879

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