Abstract
Sulfur mass-independent fractionation (S-MIF) preserved in Archean sedimentary pyrite is interpreted to reflect atmospheric chemistry. Small ranges in Δ33S that expanded into larger fractionations leading up to the Great Oxygenation Event (GOE; 2.45–2.2 Ga) are disproportionately represented by sequences from the Kaapvaal and Pilbara Cratons. These patterns of S-MIF attenuation and enhancement may differ from the timing and magnitude of minor sulfur isotope fractionations reported from other cratons, thus obscuring local for global sulfur cycling dynamics. By expanding the Δ33S record to include the relatively underrepresented São Francisco Craton in Brazil, we suggest that marine biogeochemistry affected S-MIF preservation prior to the GOE. In an early Neoarchean sequence (2763–2730 Ma) from the Rio das Velhas Greenstone Belt, we propose that low δ13Corg (
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Bosco-Santos, A., Gilhooly, W. P., Melo-Silva, P. de, Fouskas, F., Bouyon, A., Motta, J. G., … Oliveira, E. P. (2022). Neoarchean atmospheric chemistry and the preservation of S-MIF in sediments from the São Francisco Craton. Geoscience Frontiers, 13(5). https://doi.org/10.1016/j.gsf.2021.101250
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