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◆ Geophysical Research Letters2026-04-05· Geology

Fe–Mn Crust <i>δ</i> <sup>98</sup> Mo Decline Records Tectonic Forcing on Marine Oxide Sink Reduction During the Early Eocene–Early Oligocene

Limin Zhang, Jiangbo Ren, Hongjin Chen, Haozhe Wang, Zhen Sun, Yong Yang, Huodai Zhang, Zhenquan Wei, Liang Zhang, Yingzhi Ren, Gaowen He

原始摘要(英文原文)· Original abstract
Abstract S, Tl, and W isotope records document pronounced early Eocene shifts in marine redox, yet the absence of a Mo isotope record obscures its progression. Here, we present ∼80 Myr Mo–Os–Be–Nd isotope profiles from a Northwest Pacific hydrogenetic Fe–Mn crust, revealing a systematic δ 98 Mo decline from −0.24‰ (early Eocene) to −0.83‰ (early Oligocene). This trend challenges the notion of Cenozoic Mo isotope stability and mainly reflects a reduced isotopic fractionation during marine Mo removal (ΔSW‐sink) from a contracted oxic sink. Coupled Mo–S–Tl–W isotope records suggest that this contraction was primarily driven by the tectonically forced loss of extensive shelf environments during the initial India–Asia collision. We establish Fe–Mn crust δ 98 Mo as a reliable proxy for global seawater redox evolution, demonstrating that multi‐proxy integration resolves tectonic controls on Earth's long‐term oxygenation history.
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Fe–Mn Crust <i>δ</i> <sup>98</sup> Mo Decline Records Tectonic Forcing on Marine Oxide Sink Reduction During the Early Eocene–Early Oligocene — 科研速览 Science Skim