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Alkalinity and elemental cycles in present and past ocean: Insight from geochemical modeling and alkali and alkaline earth metal isotopes

  • Juraj Farkaš
  • , Klaus Wallmann
  • , Luke Mosley
  • , Philip Staudigel
  • , Xin Yuan Zheng
  • , Emily Leyden
  • , Yuexiao Shao
  • , Jiří Frýda
  • , Chris Holmden
  • , Anton Eisenhauer

Research output: Chapter in Book/Report/Conference proceedingChapter

Abstract

This chapter provides an overview of near-surface geochemical processes operating on Earth, with special emphasis placed on (i) marine weathering such as alteration and dissolution of silicates, carbonates and terrigenous riverine particles in the ocean, complemented by (ii) reverse weathering reactions leading to marine authigenic clay formation, and the impact of these phenomena on ocean alkalinity budget and the chemical and isotope composition of seawater. Model simulations of the above processes provide estimates of the global marine fluxes of major cations (Na+, K+, Mg2+, Ca2+) and alkalinity in the ocean induced by silicate weathering and dissolution of terrigenous material in seawater. Additional constraints on silicate vs. carbonate weathering, oceanic/coastal CaCO3 cycling, and paleo-seawater reconstructions are provided via the stable and radiogenic isotope systems of alkali and alkaline earth metals (Li, K, Mg, Ca, and Sr isotopes) that are discussed within the context of marine and reverse weathering in the present and past ocean.

Original languageEnglish (US)
Title of host publicationTreatise on Geochemistry, Third Edition, 8 Volume Set
PublisherElsevier
PagesV5:33-V5:87
Volume5
ISBN (Electronic)9780323997638
ISBN (Print)9780323997621
DOIs
StatePublished - Jan 1 2024

Bibliographical note

Publisher Copyright:
© 2025 Elsevier Inc. All rights are reserved, including those for text and data mining, AI training, and similar technologies.

Keywords

  • Alkali and alkaline earth metals
  • Carbonates
  • Earth system evolution
  • Elemental cycles
  • Isotopes
  • MATLAB
  • Numerical modeling
  • Ocean alkalinity
  • PHREEQC
  • Silicates
  • Weathering

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