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Multi-Elemental Tracers in the Amerasian Basin Reveal Interlinked Biogeochemical and Physical Processes in the Arctic Ocean Upper Halocline

  • L. M. Whitmore
  • , L. Jensen
  • , J. Granger
  • , Y. Xiang
  • , L. Kipp
  • , A. Pasqualini
  • , R. Newton
  • , A. M. Agather
  • , R. F. Anderson
  • , E. E. Black
  • , K. L. Bowman
  • , A. Bourbonnais
  • , M. A. Brzezinski
  • , R. M. Bundy
  • , M. A. Charette
  • , R. L. Edwards
  • , J. N. Fitzsimmons
  • , D. A. Hansell
  • , P. J. Lam
  • , P. Morton
  • M. A. Saito, P. Schlosser, A. M. Shiller, W. M. Smethie, B. S. Twining, R. J. Woosley, R. Zhang

Research output: Contribution to journalArticlepeer-review

Abstract

The physical and biogeochemical properties of the western Arctic Ocean are rapidly changing, resulting in cascading shifts to the local ecosystems. The nutrient-rich Pacific water inflow to the Arctic through the Bering Strait is modified on the Chukchi and East Siberian shelves by brine rejection during sea ice formation, resulting in a strong halocline (called the Upper Halocline Layer (UHL)) that separates the cold and relatively fresh surface layer from the warmer and more saline (and nutrient-poor) Atlantic-derived water below. Biogeochemical signals entrained into the UHL result from Pacific Waters modified by sediment and river influence on the shelf. In this synthesis, we bring together data from the 2015 Arctic U.S. GEOTRACES program to implement a multi-tracer (dissolved and particulate trace elements, radioactive and stable isotopes, macronutrients, and dissolved gas/atmospheric tracers) approach to assess the relative influence of shelf sediments, rivers, and Pacific seawater contribution to the Amerasian Arctic halocline. For each element, we characterized their behavior as mixing dominated (e.g., dCu, dGa), shelf-influenced (e.g., dFe, dZn), or a combination of both (e.g., dBa, dNi). Leveraging this framework, we assessed sources and sinks contributing to elemental distributions: shelf sediments (e.g., dFe, dZn, dCd, dHg), riverine sources, (e.g., dCu, dBa, dissolved organic carbon), and scavenging by particles originating on the shelf (e.g., dFe, dMn, dV, etc.). Additionally, synthesized results from isotopic and atmospheric tracers yielded tracer age estimates for the Upper Halocline ranging between 1 and 2 decades on a spatial gradient consistent with cyclonic circulation.

Original languageEnglish (US)
Article numbere2024GB008342
JournalGlobal Biogeochemical Cycles
Volume39
Issue number4
DOIs
StatePublished - Apr 2025

Bibliographical note

Publisher Copyright:
© 2025. The Author(s).

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 14 - Life Below Water
    SDG 14 Life Below Water

Keywords

  • advection
  • biogeochemical cycles
  • geochemical tracers
  • water masses

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