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Loginova, Alexandra; Kowalczuk, Piotr (2024): Sediment Dissolved Organic Carbon Release in the Baltic Sea [dataset]. PANGAEA, https://doi.pangaea.de/10.1594/PANGAEA.967081 (DOI registration in progress)

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Abstract:
Dissolved organic carbon (DOC) flux evaluated by Fick's first law of diffusion. The values were evaluated using the pore water dissolved organic matter, average weighted apparent molecular weight of DOM measured in samples collected by Rhizon samplers from the water 2 cm above the sediment and the top 10 cm of the sediment cores at 2 cm intervals. The porosity was evaluated as sediment water content was obtained from sediment samples collected via slicing of the upper 10 cm of sediment cores over 2 cm intervals. The sediment cores were recovered using GeMax sediment corer. These samples were collected between 2020 and 2021 during cruises onboard RV Oceania (Institute of Oceanology of the Polish Academy of Sciences), which took place in spring, autumn, and winter, to the Central and Southern Baltic Sea, i.e., Eastern Gotland Basin, Bornholm Basin, and Gdansk Basin. The reported DOC sediment fluxes are the final product.
Keyword(s):
Baltic Sea; Dissolved Organic Carbon; Sediment release
Supplement to:
Terzić, Elena; Zabłocka, Monika; Loginova, Alexandra N.; Borzycka, Karolina; Kowalczuk, Piotr (2024): Estimation of net accumulation and removal of fluorescent dissolved organic matter in different Baltic Sea water masses. Frontiers in Marine Science, 11, 1379604, https://doi.org/10.3389/fmars.2024.1379604
Funding:
EEA and Norway Grants, grant/award no. 2020/37/K/ST10/03018: Microbial Dissolved Organic Matter utilisation at the near-sediment waters in the Baltic Sea Deeps
National Science Center - Poland (NCN), grant/award no. 2019/33/B/ST10/01232: Estimation of the diffusion coefficient of dissolved organic matter from sediments to overlying waters through relationships between its optical and chromatographic characteristics and dissolved iron in Baltic Sea deeps
Coverage:
Median Latitude: 55.197504 * Median Longitude: 18.025178 * South-bound Latitude: 54.440000 * West-bound Longitude: 15.299300 * North-bound Latitude: 57.334000 * East-bound Longitude: 20.050400
Date/Time Start: 2020-09-11T00:09:00 * Date/Time End: 2021-04-20T06:04:00
Minimum Elevation: -230.0 m * Maximum Elevation: -39.0 m
Event(s):
2020_Oct_opt_Ferry3  * Latitude: 54.770000 * Longitude: 18.970000 * Date/Time: 2020-10-25T15:10:00 * Elevation: -91.0 m * Location: Baltic Sea * Method/Device: Core (CORE)
2020_Oct_opt_P115  * Latitude: 54.440000 * Longitude: 19.040000 * Date/Time: 2020-10-24T07:10:00 * Elevation: -51.0 m * Location: Baltic Sea * Method/Device: Core (CORE)
2020_Sept_chem_78M  * Latitude: 55.260800 * Longitude: 15.797200 * Date/Time: 2020-09-11T10:09:00 * Elevation: -92.0 m * Location: Baltic Sea * Method/Device: Core (CORE)
Comment:
DOC diffusive flux calculations, DOC concentrations in the near-sediment waters and pore water DOC concentrations, porosity and average weighted molecular weight (AMW) of the dissolved organic matter from the near bottom waters (~2cm above sediment surface) and the uppermost slice of the sediment core (0 to 2 cm depth) were used. The fluxes (JDOC) were evaluated according to the Fick's first law of diffusion: J_DOC=-ϕ×Ds×ⅆC/ⅆz; where ϕ is the sediment porosity, ⅆC/ⅆz is the gradient of DOC concentration over the investigated depth interval (0 to 2 cm) and Ds is a bulk sediment diffusion coefficient. Ds was previously demonstrated to be dependent on the sediment formation resistivity factor (F). Ds was calculated using F which equals ϕ^(−3). AMW was calculated from Size Exclusion chromatograms for each sample, and the AMW evaluated for the pore water at 0-2 cm at each station was incorporated into Ds:\nDs=1.1×10^(-3) AMW^(-0.81)/ϕF.
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
Event labelEventLoginova, Alexandra
Latitude of eventLatitudeLoginova, Alexandra
Longitude of eventLongitudeLoginova, Alexandra
Date/Time of eventDate/TimeLoginova, Alexandra
Elevation of eventElevationmLoginova, Alexandra
Station labelStationLoginova, Alexandra
Cruise/expeditionExpeditionLoginova, Alexandra
Carbon, organic, dissolved, fluxDOC fluxµmol/m2/dayLoginova, AlexandraCalculated, according to Fick's laws of diffusion
Status:
Curation Level: Enhanced curation (CurationLevelC)
Size:
68 data points

Data

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Event

Latitude

Longitude

Date/Time

Elevation [m]

Station

Expedition

DOC flux [µmol/m2/day]
2020_Sept_chem_IDEAL1 55.443815.29932020-09-11T00:09:00-86IDEAL12020_Sept_chem0.23
2020_Sept_chem_78M 55.260815.79722020-09-11T10:09:00-9278M'2020_Sept_chem0.03
2020_Sept_chem_P5 55.221316.00022020-09-11T14:09:00-86P5'2020_Sept_chem0.12
2020_Sept_chem_BY15 57.334020.05042020-09-15T08:09:00-230BY152020_Sept_chem0.17
2020_Sept_chem_P1 54.834619.31802020-09-18T06:09:00-105P12020_Sept_chem0.13
2020_Sept_chem_M1 54.748019.29552020-09-19T12:09:00-100M12020_Sept_chem0.84
2020_Sept_chem_P116 54.651919.29222020-09-19T16:09:00-86P1162020_Sept_chem1.06
2020_Sept_opt_Ferry2 54.919018.72342020-09-23T14:09:00-91Ferry22020_Sept_opt0.35
2020_Sept_opt_P1a 54.999219.23292020-09-24T19:09:00-103P1a2020_Sept_opt0.08
2020_Oct_opt_P115 54.440019.04002020-10-24T07:10:00-51P1152020_Oct_opt0.20
2020_Oct_opt_Ferry3 54.770018.97002020-10-25T15:10:00-91Ferry32020_Oct_opt0.56
2021_Jan_Chem_P116 54.650019.29002021-01-13T18:01:00-84P1162021_Jan_Chem0.27
2021_Jan_Chem_M1 54.750019.30002021-01-13T12:01:00-98M12021_Jan_Chem0.32
2021_Jan_Chem_P1 54.840019.32002021-01-12T21:01:00-103P12021_Jan_Chem0.13
2021_Jan_Chem_P1a 55.000019.23002021-01-17T08:01:00-101P1a2021_Jan_Chem0.12
2021_Feb_opt_MilPOM 54.640018.71002021-02-10T11:02:00-39MilPOM2021_Feb_opt
2021_Feb_opt_AKU27 55.000016.00002021-02-15T10:02:00-76AKU272021_Feb_opt0.08
2021_Feb_opt_P5 55.240016.05002021-02-15T16:02:00-84P5'2021_Feb_opt0.33
2021_Apr_chem_IDEAL1 55.440015.30002021-04-14T06:04:00-86IDEAL12021_Apr_chem0.74
2021_Apr_chem_BO1 55.330015.57002021-04-14T16:04:00-93BO12021_Apr_chem0.38
2021_Apr_chem_P5old 55.250015.99002021-04-18T08:04:00-87P5old2021_Apr_chem0.24
2021_Apr_chem_LO2 56.150019.22002021-04-19T20:04:00-123LO22021_Apr_chem0.36
2021_Apr_chem_BY10 56.630019.58002021-04-20T06:04:00-140BY102021_Apr_chem0.02