127 / 2024-09-09 10:51:53
Shelf-basin carbonate partitioning shapes Cenozoic carbon cycle on eccentricity timescales
Eccentricity cycle,Carbon cycle,Hydrological cycle,Ocean Drilling Project
Abstract Accepted
Fenghao Liu / Tongji University
Enqing Huang / Tongji University
Jinlong Du / Tongji University
Wentao Ma / Second Institute of Oceanography
Jun Tian / Tongji University
Cenozoic global climate and the marine carbon cycle exhibit synchronized variations on the astronomical rhythms of 405,000- and 100,000-year eccentricity cycles. Here, we explore the in-phase interactions between climate and the carbon cycle through a multi-proxy reconstruction that includes benthic foraminiferal stable oxygen and carbon isotopes, carbonate ion saturation inferred from boron-to-calcium ratios, and calcium carbonate content. We report a discrepancy between the eccentricity pacing of carbonate dissolution cycles and deep-water carbonate ion saturation. To reconcile this, we argue, based on biogeochemical modelling, that carbonate burial along continental shelves plays a dominant role in altering carbonate ion concentrations and is sufficient to drive changes in seawater carbon isotope on eccentricity timescales. This mechanism is intimately linked to the transport of dissolved inorganic carbon and alkalinity via monsoon rainfall and chemical weathering, suggesting that low-latitude climate processes amplify the influence of eccentricity on the oceanic carbon cycle, particularly in an ice-free, unipolar glacial world.
Important Date
  • Conference Date

    Jan 13

    2025

    to

    Jan 17

    2025

  • Sep 27 2024

    Draft paper submission deadline

  • Feb 17 2025

    Registration deadline

Sponsored By
State Key Laboratory of Marine Environmental Science, Xiamen University
Organized By
State Key Laboratory of Marine Environmental Science, Xiamen University
Department of Earth Sciences, National Natural Science Foundation of China
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