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Charrieau, Laurie M; Filipsson, Helena L; Ljung, Karl; Chierici, Melissa; Knudsen, Karen Luise; Kritzberg, Emma (2023): Seawater carbonate chemistry and distribution of coastal benthic foraminifera [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.958714

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Abstract:
Coastal ecosystems are subjected to both large natural variability and increasing anthropogenic impact on environmental parameters such as changes in salinity, temperature, and pH. This study documents the distribution of living benthic foraminifera under the influence of multiple environmental stressors in the Skagerrak-Baltic Sea region. Sediment core tops were studied at five sites along a transect from the Skagerrak to the Baltic Sea, with strong environmental gradients, especially in terms of salinity, pH, calcium carbonate saturation and dissolved oxygen concentration in the bottom water and pore water. We found that living foraminiferal densities and species richness were higher at the Skagerrak station, where the general living conditions were relatively beneficial for Foraminifera, with higher salinity and Ωcalc in the water column and higher pH and oxygen concentration in the bottom and pore water. The most common species reported at each station reflect the differences in the environmental conditions between the stations. The dominant species were Cassidulina laevigata and Hyalinea balthica in the Skagerrak, Stainforthia fusiformis, Nonionella aff. stella and Nonionoides turgida in the Kattegat and N. aff. stella and Nonionellina labradorica in the Öresund. The most adverse conditions, such as low salinity, low Ωcalc, low dissolved oxygen concentrations and low pH, were noted at the Baltic Sea stations, where the calcareous tests of the dominant living taxa Ammonia spp. and Elphidium spp. were partially to completely dissolved, probably due to a combination of different stressors affecting the required energy for biomineralization. Even though Foraminifera are able to live in extremely varying environmental conditions, the present results suggest that the benthic coastal ecosystems in the studied region, which are apparently affected by an increase in the range of environmental variability, will probably be even more influenced by a future increase in anthropogenic impacts, including coastal ocean acidification and deoxygenation.
Keyword(s):
Baltic Sea; Benthos; Coast and continental shelf; Community composition and diversity; Entire community; Field observation; Soft-bottom community; Temperate
Supplement to:
Charrieau, Laurie M; Filipsson, Helena L; Ljung, Karl; Chierici, Melissa; Knudsen, Karen Luise; Kritzberg, Emma (2018): The effects of multiple stressors on the distribution of coastal benthic foraminifera: A case study from the Skagerrak-Baltic Sea region. Marine Micropaleontology, 139, 42-56, https://doi.org/10.1016/j.marmicro.2017.11.004
Documentation:
Gattuso, Jean-Pierre; Epitalon, Jean-Marie; Lavigne, Héloïse; Orr, James; Gentili, Bernard; Hagens, Mathilde; Hofmann, Andreas; Mueller, Jens-Daniel; Proye, Aurélien; Rae, James; Soetaert, Karline (2022): seacarb: seawater carbonate chemistry with R. R package version 3.3.1. https://cran.r-project.org/web/packages/seacarb/index.html
Coverage:
Median Latitude: 56.098612 * Median Longitude: 13.160487 * South-bound Latitude: 55.000000 * West-bound Longitude: 10.508100 * North-bound Latitude: 58.271600 * East-bound Longitude: 14.833300
Minimum DEPTH, water: 45 m * Maximum DEPTH, water: 328 m
Comment:
In order to allow full comparability with other ocean acidification data sets, the R package seacarb (Gattuso et al, 2022) was used to compute a complete and consistent set of carbonate system variables, as described by Nisumaa et al. (2010). In this dataset the original values were archived in addition with the recalculated parameters (see related PI). The date of carbonate chemistry calculation by seacarb is 2023-05-08.
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
1Type of studyStudy typeCharrieau, Laurie M
2Station labelStationCharrieau, Laurie M
3Foraminifera, benthicForam bent#/10 cm3Charrieau, Laurie M
4Species richnessSCharrieau, Laurie M
5Shannon Diversity IndexH'Charrieau, Laurie M
6Foraminifera, benthicForam bent#/10 cm3Charrieau, Laurie MSoft shell
7SpeciesSpeciesCharrieau, Laurie M
8AbundanceAbund%Charrieau, Laurie M
9LATITUDELatitudeCharrieau, Laurie MGeocode
10LONGITUDELongitudeCharrieau, Laurie MGeocode
11DEPTH, waterDepth watermCharrieau, Laurie MGeocode
12Temperature, waterTemp°CCharrieau, Laurie M
13SalinitySalCharrieau, Laurie M
14OxygenO2µmol/lCharrieau, Laurie M
15Oxygen penetration depthOPD depthmmCharrieau, Laurie M
16pHpHCharrieau, Laurie MSpectrophotometric
17Alkalinity, totalATµmol/kgCharrieau, Laurie MPotentiometric titration
18Calcite saturation stateOmega CalCharrieau, Laurie MCalculated using CO2SYS
19Carbonate system computation flagCSC flagYang, YanCalculated using seacarb after Nisumaa et al. (2010)
20Carbon dioxideCO2µmol/kgYang, YanCalculated using seacarb after Nisumaa et al. (2010)
21Fugacity of carbon dioxide (water) at sea surface temperature (wet air)fCO2water_SST_wetµatmYang, YanCalculated using seacarb after Nisumaa et al. (2010)
22Partial pressure of carbon dioxide (water) at sea surface temperature (wet air)pCO2water_SST_wetµatmYang, YanCalculated using seacarb after Nisumaa et al. (2010)
23Bicarbonate ion[HCO3]-µmol/kgYang, YanCalculated using seacarb after Nisumaa et al. (2010)
24Carbonate ion[CO3]2-µmol/kgYang, YanCalculated using seacarb after Nisumaa et al. (2010)
25Carbon, inorganic, dissolvedDICµmol/kgYang, YanCalculated using seacarb after Nisumaa et al. (2010)
26Aragonite saturation stateOmega ArgYang, YanCalculated using seacarb after Nisumaa et al. (2010)
27Calcite saturation stateOmega CalYang, YanCalculated using seacarb after Nisumaa et al. (2010)
Status:
Curation Level: Enhanced curation (CurationLevelC)
Size:
4016 data points

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