Decoupling of Neogene seawater lithium isotopes from uplift-driven weathering
Abstract
Abstract 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.
Article Details
Authors (15)
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
Zhejiang Key Laboratory of Precise Synthesis of Functional Molecules, Department of Chemistry, School of Science and Research Center for Industries of the Future, Westlake University, 600 Dunyu Road, Hangzhou 310030, P. R. China
Weilin Zhang
Andreas Koutsodendris
Jörg Pross
Xiaomin Fang