Iron fertilization–induced deoxygenation of eastern equatorial Pacific Ocean intermediate waters during the Paleocene–Eocene thermal maximum

Publication date

2024-02-05

Authors

Jiang, Xiaodong
Zhao, Xiangyu
Sun, Xiaoming
Roberts, Andrew P.
Sluijs, AppyORCID 0000-0003-2382-0215ISNI 0000000389163131
Chou, Yu Min
Yao, Weiqi
Xing, Jieqi
Zhang, Weijie
Liu, Qingsong

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Document Type

Article
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cc_by

Abstract

The Paleocene–Eocene thermal maximum (PETM), a transient period of global warming, is considered to be an important analog for future greenhouse conditions. It was accompanied by a significant carbon cycle perturbation. Although ocean deoxygenation across the PETM is reported widely, its mechanism in the open ocean remains uncertain. Here, we present magnetic and geochemical analyses of sediments from the eastern equatorial Pacific Ocean. We found that iron fertilization during the PETM by eolian dust and volcanic eruptions fueled eastern equatorial Pacific Ocean productivity. This process led to increased organic matter degradation and oxygen consumption in intermediate waters, leading to deoxygenation. Our findings suggest that iron fertilization could be an important driver of open-ocean oxygen loss, as a side effect of global warming.

Keywords

Geology

Citation

Jiang, X, Zhao, X, Sun, X, Roberts, A P, Sluijs, A, Chou, Y M, Yao, W, Xing, J, Zhang, W & Liu, Q 2024, 'Iron fertilization–induced deoxygenation of eastern equatorial Pacific Ocean intermediate waters during the Paleocene–Eocene thermal maximum', Geology, vol. 52, no. 4, pp. 276-281. https://doi.org/10.1130/G51770.1