Published

Dataset belonging to "Identifying Saharan dust driven export of biogenic material in the ultraoligotrophic eastern Mediterranean Sea" Version 1

Anouk van Boxtel (Royal Netherlands Institute for Sea Research) Royal Netherlands Institute for Sea Research https://doi.org/10.25850/nioz/7b.b.cj

To assess the effects of dust deposition on the strength of the biological pump in the Mediterranean Sea by acting as fertilizer and/or ballasting agent, we analyzed fluxes of mineral dust, particulate organic carbon (POC) and inorganic carbon (PIC), and source-specific lipid biomarkers (i.e., higher plant-derived long-chain fatty acids and phytoplankton-derived alkenones, C30 1,15 diols, and sterols) in sinking particles. Sinking particles were collected at ten-day intervals by a sediment-trap mooring deployed in the Ionian Basin from April 2017 to May 2018 at 2340 m water depth. High POC fluxes occur during summer, when surface ocean primary production is lowest due to thermal stratification. Notably, these high POC fluxes coincide with pulses of substantial dust deposition, suggesting that POC export is primarily driven by dust deposition and subsequent ballasting. However, the lipid composition, and thereby that of the phytoplankton community, differs between dust events. (Seasonal) variations in the properties of the deposited dust, presumably associated with its provenance, likely control the effect of dust deposition on phytoplankton response and export in the Ionian Basin. Although POC export is associated with dust deposition, the net effect of dust deposition on the biological pump is more ambiguous as not all dust events are associated with an increase in POC export, and most dust events are also associated with PIC export that has a counteracting effect on the biological pump. Multi-year time series of dust deposition and biogenic export are required to validate the seasonal variations in dust-driven export of biogenic material observed here, and to account for effects of interannual variations in dust fluxes and phytoplankton production on the strength of the biological pump.

Data and Resources

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Additional Info

Field Value
Subject Earth and Environmental Sciences
DAS Code 7b.b.cj
Source https://doi.org/10.25850/nioz/7b.b.cj
Version 1
Creator(s)
van Boxtel, Anouk (Royal Netherlands Institute for Sea Research)
Contact the corresponding author
Depositor Anouk van Boxtel (anouk.van.boxtel@nioz.nl)
Publication Date 2025-02-24T20:29:56.7838996
Deposit Date 2025-02-24
Dataset Persistent Identifier DOI:10.25850/nioz/7b.b.cj
Alternate identifier
Related identifier
Contributor Royal Netherlands Institute for Sea Research (NIOZ)
Distributor Research Data Management(NIOZ Royal Netherlands Institute for Sea Research)
Distribution Date 2025-02-24
Production Date 2025-02-24
Dates
Collected
2017-04-14 until 2018-05-19
Sediment-trap deployment
Funding References
Geographic Coverage
North Bound: 34.96
South Bound: 34.96
West Bound: 18.04
East Bound: 18.04