Tropical Warming and Intensification of the West African Monsoon During the Miocene Climatic Optimum

Publication date

2024-05

Authors

Wubben, E.ISNI 0000000512658982
Spiering, BiancaORCID 0009-0007-8561-0922ISNI 000000052756433X
Veenstra, TjerkISNI 0000000443784554
Bos, RemcoORCID 0000-0002-3664-3265ISNI 0000000506337752
Wang, Zongyi
van Dijk, Joost
Raffi, Isabella
Witkowski, Jakub
Hilgen, F.J.ORCID 0000-0002-5683-259XISNI 0000000385598525
Peterse, FrancienORCID 0000-0001-8781-2826ISNI 0000000492917456

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Article
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cc_by_nc

Abstract

Studying monsoon dynamics during past warm time periods such as the Miocene Climatic Optimum (MCO; ∼16.9–14.5 Ma) could greatly aid in better projecting monsoon intensity, in the context of future greenhouse warming. However, studies on regional MCO temperature change and its effect on the monsoons during this time period are lacking. Here, we present the first high-resolution, low-latitude record of sea surface temperature (SST) and paleoceanographic change covering the Miocene Climatic Optimum, in the eastern equatorial Atlantic, at Ocean Drilling Program Site 959, based on TEX86 paleothermometry. SSTs were ∼1.5°C warmer at the onset of the MCO (16.9 Ma) relative to the pre-MCO (∼18.3–17.7 Ma). This warming was accompanied by a transient increase in %total organic carbon. Prior to the MCO, sediment composition, geochemical proxy data as well as dinoflagellate cyst assemblages imply a productive surface ocean at Site 959. Immediately following the MCO onset (∼16.9–16.5 Ma), we record an intensification of the West African Monsoon (WAM) characterized by higher amplitude variability in all proxy records on precession to obliquity timescales. We interpret increased orbital-scale SST, biogenic Ba and dinocyst assemblage variability to represent intensification of equatorial upwelling, forced by the WAM strength. Furthermore, higher SSTs during eccentricity maxima correlate to increased relative abundances of the warm and stratification-favoring dinocyst Polysphaeridium zoharyi, during periods of low WAM intensity. Finally, while long-term SSTs decline toward the middle Miocene, maximum SSTs and Polysphaeridium zoharyi abundances occur during MCO peak warming at ∼15.6 Ma.

Keywords

dinoflagellate cysts, Miocene Climatic Optimum, orbital climate variability, tropical sea surface temperature warming, West African Monsoon, Oceanography, Atmospheric Science, Palaeontology, SDG 13 - Climate Action

Citation

Wubben, E, Spiering, B R, Veenstra, T, Bos, R, Wang, Z, van Dijk, J, Raffi, I, Witkowski, J, Hilgen, F J, Peterse, F, Sangiorgi, F & Sluijs, A 2024, 'Tropical Warming and Intensification of the West African Monsoon During the Miocene Climatic Optimum', Paleoceanography and Paleoclimatology, vol. 39, no. 5, e2023PA004767. https://doi.org/10.1029/2023PA004767