218-6 Something Calcareous this Way Comes: Role of Mineralogy and Diagenesis in the Silurian-Devonian Klonk δ13C Event
Session: What is old is new again: Using traditional and novel geochemical proxies to reconstruct past environments and their links to changes in the Phanerozoic biosphere (Posters)
Poster Booth No.: 77
Presenting Author:
Kayleigh PhillipsAuthors:
Saltzman, Matthew R.1, Griffith, Elizabeth M.2, Phillips, Kayleigh3r> (1) School of Earth Sciences, Ohio State University, Columbus, OH, USA, (2) School of Earth Sciences, OSU, Columbus, OH, , (3) School of Earth Sciences, The Ohio State Univ, Earth Sciences, Columbus, OH, USA,Abstract:
The Silurian-Devonian transition (419.2 Ma) coincides with an up to 5‰ positive carbon isotope (δ13C) change in carbonates around the world, known as the Klonk Event. Though the Klonk Event is recorded globally, peak δ13C values vary by location up to 2.5‰, suggesting influence of water mass variations, differences in primary minerology, or post-depositional alteration. These local processes could decouple the recorded δ13C signal in carbonate sections from the global carbon cycle. Small differences in δ13C values aimed at calculating global organic carbon burial fluxes result in large changes in CO2 or O2 in isotope mass balance models. We utilize calcium isotope (δ44/40Ca) and minor-element geochemistry (Sr/Ca) paired with δ13C measurements in the Appalachian Basin of West Virginia (WV) and the Arbuckle Mountains of Oklahoma (OK) to investigate the impact of local variation in carbonate mineralogy and diagenesis on the records. The WV section contains open marine to peritidal carbonate facies overlain by sandstone in a rapidly subsiding foreland basin, while the OK section contains open marine to shallow subtidal limestone and shale in an aulacogen with lower sedimentation rates. The WV section’s peak δ13C is 1.85‰ higher. The OK section has stable δ44/40Ca (-1.03 to -0.88‰, n = 4), while the WV section demonstrates significant variation in δ44/40Ca (-1.57 to -1.00‰, n = 14). Since WV stratigraphic δ44/40Ca variation is too large to attribute to seawater changes on the timescale of the Klonk Event, diagenesis regimes (fluid- vs sediment-buffered), precipitation rate, or mineralogy are likely drivers. In contrast, lack of variation in δ44/40Ca in OK suggests little mineralogic or diagenetic changes in this section. Local process shifts may explain the higher δ13C peak in WV, which may have contained a greater percentage of original aragonitic skeletal grains (higher δ13C and lower δ44/40Ca) or more sediment-buffered diagenesis. Alternatively, lower δ13C peak value in OK could be a result of increased seawater-buffered diagenesis suggested by higher δ44/40Ca and low Sr/Ca. The Silurian-Devonian δ44/40Ca suggest that Klonk Event records are locally influenced by carbonate mineralogy and diagenesis, but still partially represent a primary signal of global organic carbon burial which coincides with the rapid spread and diversification of early land plants and a rise of atmospheric oxygen levels.
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Something Calcareous this Way Comes: Role of Mineralogy and Diagenesis in the Silurian-Devonian Klonk δ13C Event
Category
Topical Sessions
Description
Session Format: Poster
Presentation Date: 10/13/2026
Presentation Room: CCC, Hall F
Poster Booth No.: 77
Author Availability: 2:00 to 4:00 p.m.
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