Enhanced phosphorus recycling during past oceanic anoxia amplified by low rates of apatite authigenesis

Publication date

2022-07-01

Authors

Papadomanolaki, NinaISNI 0000000492613348
Lenstra, Wytze KISNI 0000000492798709
Wolthers, MarietteORCID 0000-0003-3908-5622ISNI 0000000074482066
Slomp, C.P.ISNI 0000000353313441

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Advisors

Supervisors

Document Type

Article
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License

cc_by

Abstract

Enhanced recycling of phosphorus as ocean deoxygenation expanded under past greenhouse climates contributed to widespread organic carbon burial and drawdown of atmospheric CO2. Redox-dependent phosphorus recycling was more efficient in such ancient anoxic marine environments, compared to modern anoxic settings, for reasons that remain unclear. Here, we show that low rates of apatite authigenesis in organic-rich sediments can explain the amplified phosphorus recycling in ancient settings as reflected in highly elevated ratios of organic carbon to total phosphorus. We argue that the low rates may be partly the result of the reduced saturation state of sediment porewaters with respect to apatite linked to ocean warming and acidification and/or a decreased availability of calcium carbonate, which acts as a template for apatite formation. Future changes in temperature and ocean biogeochemistry, induced by elevated atmospheric CO2, may similarly increase phosphorus availability and accelerate ocean deoxygenation and organic carbon burial.

Keywords

SDG 14 - Life Below Water

Citation

Papadomanolaki, N M, Lenstra, W K, Wolthers, M & Slomp, C P 2022, 'Enhanced phosphorus recycling during past oceanic anoxia amplified by low rates of apatite authigenesis', Science advances, vol. 8, no. 26, pp. eabn2370. https://doi.org/10.1126/sciadv.abn2370