Euphotic Zone Residence Time of Antarctic Bottom Water

Author:

Xie Yinghuan1ORCID,Spence Paul123ORCID,Corney Stuart13ORCID,Tamsitt Veronica4ORCID,Dawson Hannah R. S.256ORCID,Schmidt Christina256ORCID,Bach Lennart T.1ORCID

Affiliation:

1. Institute for Marine and Antarctic Studies University of Tasmania Hobart TAS Australia

2. Australian Centre of Excellence for Antarctic Science University of New South Wales Sydney NSW Australia

3. Australian Antarctic Partnership Program University of Tasmania Hobart TAS Australia

4. College of Marine Science University of South Florida St. Petersberg FL USA

5. Climate Change Research Centre University of New South Wales Sydney NSW Australia

6. ARC Centre of Excellence for Climate Extremes University of New South Wales Sydney NSW Australia

Abstract

AbstractAntarctic Bottom Water (AABW) transports surface nutrients deep into the ocean, sequestering them for centuries. Enhancing its biological carbon fixation could augment carbon sinks and reduce atmospheric CO2. Yet, it is uncertain if AABW receives enough light for significant photosynthesis before subducting. Using Lagrangian particle tracking in an ocean sea‐ice model, we found: (a) 70% (66%–73%, depending on euphotic zone (Zeu) criteria) nutrient rich circumpolar deep water never enters the Zeu before becoming AABW. This percentage varies from 70% to 91%, depending on the mixed layer (ML) parameterization adjustments; (b) The remaining particles in the euphotic zone have 39 (34–49, depending on Zeu criteria) days average residence time. The time is not sensitive to ML parameterization strength but turning it off doubles the time; and (c) AABW is mainly exposed to enough light on the Antarctic continental shelf during spring and summer. We conclude that the potential of biotic carbon sequestration in AABW is highly limited by light energy.

Funder

China Scholarship Council

Australian Research Council

Publisher

American Geophysical Union (AGU)

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Euphotic Zone Residence Time of Antarctic Bottom Water;Geophysical Research Letters;2024-05-23

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