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October 16, 2025Geophysical Research Letters2 citationsOpen Access

Investigating the Timescale of Weathering Signals Preserved in Marine Sediments—Insights From the Holocene Mediterranean

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JWJiawang WuSYShengnan YaoYGYulong Guo

Key Points

  • Weathering signals in marine sediments exhibit a time lag of approximately 3,000–5,000 years.
  • Geochemical analyses of 18 dated eastern Mediterranean cores showed distinct provenance-controlled signals.
  • Sediment transit from nearshore to abyssal environments may require up to 2,000 years.
  • Deep-sea archives preserve climate-driven weathering changes only on timescales exceeding sediment residence time.

Abstract

Abstract The climate–weathering feedback exerts a vital role in long‐term planetary habitability. However, its operational timescales remain unclear due to challenges in quantifying past weathering intensity, especially in marine sediments—the final sink of continental weathering fluxes. Using Holocene Mediterranean sediments as a test case, we examine climate‐driven weathering responses recorded in deep‐sea archives. Geochemical analyses of 18 well‐dated eastern Mediterranean cores reveal distinct provenance‐controlled weathering signals. After accounting for provenance and grain‐size effects using fixed‐effects models, we identify a consistent pattern between climate changes and weathering responses, with a time lag of ∼3,000–5,000 years. The observed lag varies by depositional setting, requiring up to 2,000 years for marine sediment transit from nearshore to abyssal environments. Catchment erosion and transport introduce another ∼3,000‐year delay, reflecting hydroclimate instability influences on weathering dynamics. Consequently, deep‐sea archives effectively preserve climate‐driven weathering changes only on timescales exceeding sediment residence time (generally >10 3 years).

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Cite This Study

Wu et al. (2025) studied this question.

synapsesocial.com/papers/68f0492fe559138a1a06df5chttps://doi.org/10.1029/2025gl117335
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