Decoupling of Neogene seawater lithium isotopes from uplift-driven weathering
- Yibo Yang
- Yudong Liu
- Philip A. E. Pogge von Strandmann
- Zhangdong Jin
- Albert Galy
- Chengcheng Ye
- Mebrahtu F. Weldeghebriel
- Zhongyi Yan
- Jiajun He
- Long-Fei Gou
- Li Deng
- Weilin Zhang
- Andreas Koutsodendris
- Jörg Pross
- Xiaomin Fang
2026-05-15
The 9‰ increase in seawater lithium isotope (δ 7 Li) during the Cenozoic is widely regarded as evidence for uplift-driven enhancement of continental silicate weathering. Yet, the absence of long-term direct riverine δ 7 Li records has left this hypothesis largely untested. Given that the Tibetan Plateau contributes 16% of the modern global riverine Li flux, we present δ 7 Li records of paleowater spanning the past 15 million years covering the southern humid and northern arid Tibetan Plateau. Paleowater δ 7 Li reveals long-term decreases for the northern plateau, and low values for the southern plateau, reflecting a decrease in silicate weathering intensity in response to climatic cooling and high exhumations. Integrating our δ 7 Li record into a global Li cycle model, our study indicates that continental silicate weathering from tectonically active mountains is unlikely to have accounted for the observed rise in seawater δ 7 Li. These findings urge reconsideration of how tectonic uplift affects the chemistry of the ocean and carbon cycle.