Anthropogenic Iodine‐129 Traces Complex Inflows of Atlantic and Pacific Waters Into the Western Arctic

Author:

Qi Yuanzhi1ORCID,Xu Xinru2,Yang Qiuyu2,Yamagata Takeyasu1ORCID,Matsuzaki Hiroyuki12,Nagai Hisao13,Kumamoto Yuichiro4

Affiliation:

1. Micro Analysis Laboratory Tandem Accelerator The University Museum The University of Tokyo Bunkyo City Tokyo Japan

2. Department of Nuclear Engineering and Management The University of Tokyo Bunkyo City Tokyo Japan

3. The Institute of Natural Sciences College of Humanities and Sciences Nihon University Setagaya City Tokyo Japan

4. Research Institute for Global Change Japan Agency for Marine‐Earth Science and Technology Yokosuka Kanagawa Japan

Abstract

AbstractChanges in Atlantic and Pacific inflows into the Arctic are contributing to Arctic warming and reshaping water circulation. However, knowledge gaps remain regarding circulation pathways in the western Arctic Ocean, where Arctic Atlantic Water (AAW) and Pacific Water interact. Here, we report iodine‐129 (129I) concentrations in seawater collected from the western Arctic Ocean and Bering Sea in 2021. The wide range of 129I concentrations (1–355 × 107 atoms/L) highlights its value as a tracer for identifying water masses and deciphering circulation patterns. Depth profiles of 129I reveal that AAW enters the western Arctic via multiple pathways, with the top layer potentially diverging from the boundary flow and dispersing throughout the region. This previously unreported feature suggests a broader AAW influence on the western Arctic. Additionally, 129I concentrations provide direct evidence that the cold halocline effectively limits the upward transfer of matter from AAW to the Arctic surface.

Funder

Ministry of Education, Culture, Sports, Science and Technology

Publisher

American Geophysical Union (AGU)

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