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Hellemann, Dana; Tallberg, Petra; Hietanen, Susanna (2017): Benthic N2 production rates, Si cycling and environmental characteristics from the Öre estuary on the Swedish coast [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.884256, Supplement to: Hellemann, Dana; Tallberg, Petra; Bartl, Ines; Voss, Maren; Hietanen, Susanna (2017): Denitrification in an oligotrophic estuary: a delayed sink for riverine nitrate. Marine Ecology Progress Series, 583, 63-80, https://doi.org/10.3354/meps12359

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Published: 2017-12-19DOI registered: 2017-12-20

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Abstract:
Sediment samples for measuring N2 production and for the characterization of the sediment system were taken in spring and summer 2015 in the Öre Estuary at the Swedish coast of the Quark Strait, northern Baltic Sea. Sediment was sampled with a HAPS bottom corer (sand) and with a GEMINI twin corer (mud). The grain size of the sand sediment was analyzed via wet sieving from the sediment layers 0-1, 1-2, 2-3 cm (spring campaign) and 0-0.5, 0.5-1.0, 1.0-1.5 cm (summer campaign); due to vertical homogeneity, these surface sediments were subsequently pooled and the sediment type was classified after Wentworth (1922). Porosity and water content were analyzed both from sediment slices and from entire core subsamples, which means that sediment in a sampling core (heights 20 cm, iD 2.3 cm) was mixed and sub sampled, assuming vertical homogeneity; sediment was dried overnight at 105°C and calculations followed Burdige (2006). Sediment organic matter content was analyzed as loss on ignition (LOI), for which dried sediment was combusted at 550°C for 4h. Sediment permeability was measured from pooled surface sediments (~1-2 cm homogeneous surface layer) with a permeameter cell following the constant head method for laminar flow of water through granular soil; calculations were derived from Darcie's Law. The oxygen penetration depth (OPD) was determined by manual (spring) and automated (summer) profiling at bottom water temperature (electrode tip 100 µm). Denitrification rates were measured with the revised isotope pairing technique (r-IPT; Risgaard-Petersen et al. 2003, 2004) that accounts for the potential contribution of anammox (anaerobic ammonium oxidation) to total N2 production. Incubations were done in acrylic cores (heights 20 cm, iD 2.3 cm) in a concentration series of 30, 60, 90, 120 µM 15NO3- (n=3) for 4-5h at in situ bottom water temperature and darkness. Dw gives denitrification of nitrate from the water column; Dn gives denitrification of nitrate from sediment nitrification (coupled nitrification-denitrification). If no contribution of anammox to total N2 production was found, columns hold a zero (0).
Related to:
Burdige, David (2006): Geochemistry of marine sediments. Princeton University Press, Princeton, NJ
Risgaard-Petersen, Nils; Meyer, Rikke Louise; Schmid, M C; Jetten, Mike S M; Enrich-Prast, Alex; Rysgaard, Søren; Revsbech, Niels Peter (2004): Anaerobic ammonium oxidation in an estuarine sediment. Aquatic Microbial Ecology, 36, 293-304, https://doi.org/10.3354/ame036293
Risgaard-Petersen, Nils; Nielsen, Lars Peter; Rysgaard, Søren; Dalsgaard, Tage; Meyer, Rikke Louise (2003): Application of the isotope pairing technique in sediments where anammox and denitrification coexist. Limnology and Oceanography-Methods, 1(1), 63-73, https://doi.org/10.4319/lom.2003.1.63
Risgaard-Petersen, Nils; Nielsen, Lars Peter; Rysgaard, Søren; Dalsgaard, Tage; Meyer, Rikke Louise (2004): Erratum: Application of the isotope pairing technique in sediments where anammox and denitrification co-exist. Limnology and Oceanography-Methods, 2(9), 315-315, https://doi.org/10.4319/lom.2004.2.315
Coverage:
Median Latitude: 63.489437 * Median Longitude: 19.797650 * South-bound Latitude: 63.451000 * West-bound Longitude: 19.759000 * North-bound Latitude: 63.522767 * East-bound Longitude: 19.856300
Date/Time Start: 2015-04-21T00:00:00 * Date/Time End: 2015-08-08T00:00:00
Minimum DEPTH, water: 15.60 m * Maximum DEPTH, water: 37.00 m
Event(s):
Ore_estuary_20150421_N3 * Latitude: 63.519667 * Longitude: 19.856300 * Date/Time: 2015-04-21T00:00:00 * Location: Ore Estuary * Method/Device: Multiple investigations (MULT)
Ore_estuary_20150421_NB1 * Latitude: 63.505900 * Longitude: 19.791600 * Date/Time: 2015-04-21T00:00:00 * Location: Ore Estuary * Method/Device: Multiple investigations (MULT)
Ore_estuary_20150422_N6_1 * Latitude: 63.506330 * Longitude: 19.761160 * Date/Time: 2015-04-22T00:00:00 * Location: Ore Estuary * Method/Device: Multiple investigations (MULT)
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
1Event labelEventHellemann, Dana
2Latitude of eventLatitudeHellemann, Dana
3Longitude of eventLongitudeHellemann, Dana
4Date/Time of eventDate/TimeHellemann, Dana
5Cruise/expeditionExpeditionHellemann, Dana
6Station labelStationHellemann, Dana
7DEPTH, waterDepth watermHellemann, DanaGeocode
8Depth, top/minDepth topmHellemann, Danaof sediment
9Depth, bottom/maxDepth botmHellemann, Danaof sediment
10Size fraction > 1 mm, gravel>1 mm%Hellemann, Dana
11Size fraction 1.000-0.500 mm, 0.0-1.0 phi, coarse sand1-0.5 mm%Hellemann, Dana
12Size fraction 0.500-0.250 mm, 1.0-2.0 phi, medium sand500-250 µm%Hellemann, Dana
13Size fraction 0.250-0.125 mm, 2.0-3.0 phi, fine sand250-125 µm%Hellemann, Dana
14Size fraction 0.125-0.063 mm, 3.0-4.0 phi, very fine sand125-63 µm%Hellemann, Dana
15Size fraction < 0.063 mm, mud, silt+clay<63 µm%Hellemann, Dana
16Sediment typeSedimentHellemann, Dana
17DescriptionDescriptionHellemann, DanaSediment layer description of sediment characteristics
18PorosityPoros% volHellemann, DanaCalculation according to Burdige 2006105°C, overnight
19CommentCommentHellemann, Danato porosity
20Water content, wet massWater wm%Hellemann, Danain water
21CommentCommentHellemann, Danato water content
22Loss on ignitionLOI%Hellemann, Dana550°C, 4h
23Permeability (earth science)k10-12 m2Hellemann, Dana
24CommentCommentHellemann, Danato oxygen penetration depth (OPD)
25Oxygen penetration depthOPD depthmmHellemann, Dana
26Nitrate denitrification, totalNO3 denitrifi tµmol/m2/dayHellemann, Danaafter Risgaard-Petersen et al. 2003 (r-IPT)(D-total), #-9999 = not significant
27Nitrate denitrification from water columnNO3 denitrifi wµmol/m2/dayHellemann, Danaafter Risgaard-Petersen et al. 2003 (r-IPT)(Dw), #-9999 = not significant
28Nitrate denitrification from sediment nitrificationNO3 denitrifi sµmol/m2/dayHellemann, Danaafter Risgaard-Petersen et al. 2003 (r-IPT)(Dn), #-9999 = not significant
29Anammox ratesAnammoxHellemann, Dana0 = no contribution of anammox to total N2 production found, #-9999 = not significant
30Depth, descriptionDepth descHellemann, DanaSediment layer of silicate
31Amorphous, biogenic silicate, per dry massaSi/dmµmol/gHellemann, DanaNa2CO3-extractable
32Calcium extractable silicate, per dry massCa-Si/dmµmol/gHellemann, DanaCaCl2-extractable
33Oxide bound silicate, per dry massOx-Si/dmµmol/gHellemann, DanaAcid oxalate extractable
Change history:
2021-01-14T10:17:46 – Event label: added the date to the event labels
Size:
1763 data points

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