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Autonomous observations enhance our ability to observe the biological carbon pump across diverse carbon export regimes

Shawnee Traylor; David P. Nicholson; Samantha J. Clevenger; Ken O. Buesseler; Eric D'Asaro; Craig M. Lee
Limnology and Oceanography · Vol. 70, Issue S1 · 2025

Abstract

The expansion of autonomous observation platforms offers vast opportunities for analyzing ocean ecosystems and their role in carbon export. As part of the EXport Processes in the Ocean from RemoTe Sensing campaign, we autonomously measured the productivity regimes in two contrasting end‐member ecosystem states. The first campaign occurred in the subpolar North Pacific near Ocean Station Papa (Site 1), characterized by iron limitation and a highly regenerative regime. The second captured a springtime bloom in the North Atlantic (Site 2), which typically drives efficient export of productivity. Using a combination of floats and gliders carrying biogeochemical sensors, we quantified gross primary productivity, net community production, and organic carbon export potential ( f C org ) to assess biological carbon pump strength. Site 2 demonstrated higher cruise‐period productivity, with roughly 5× the gross primary productivity and 13× the euphotic zone net community production seen at Site 1. Greater export efficiency at Site 2 was reflected in numerous indices, such as the ratio of new production to net primary productivity ( ef ‐ratio; Site 1: 0.33; Site 2: 0.73), the ratio of sinking particulate organic carbon to net primary productivity ( ez ‐ratio; Site 1: 0.24; Site 2: 0.69), and mean daily f C org (Site 1: 3.4 ± 0.7; Site 2: 20.3 ± 2.3 mmol C m −2 d −1 ). Together with particulate organic carbon flux derived from thorium‐234 measurements, we infer that observed low net community production was almost entirely routed to sinking particulate organic carbon at Site 1, while the much higher net community production at Site 2 resulted in near‐equal proportions routed to dissolved organic carbon production and sinking particulate organic carbon.

Bibliographic Information

JournalLimnology and Oceanography
PublisherWiley
Publication Date2025-07-01
Publication Year2025
Volume70
IssueS1
Document TypeJournal Article
Print ISSN0024-3590
eISSN1939-5590
DOI10.1002/lno.70002
SubjectAquatic Science

Access Information

NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://aslopubs.onlinelibrary.wiley.com/loi/19395590
Publisher PageOpen Publisher Page
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