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  • 1
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    Unknown
    PANGAEA
    In:  Supplement to: Pichevin, Laetitia; Bard, Edouard; Martinez, Philippe; Billy, Isabelle (2007): Evidence of ventilation changes in the Arabian Sea during the late Quaternary: Implication for denitrification and nitrous oxide emission. Global Biogeochemical Cycles, 21, GB4008, https://doi.org/10.1029/2006GB002852
    Publication Date: 2023-06-27
    Description: Modern seawater profiles of oxygen, nitrate deficit, and nitrogen isotopes reveal the spatial decoupling of summer monsoon-related productivity and denitrification maxima in the Arabian Sea (AS) and raise the possibility that winter monsoon and/or ventilation play a crucial role in modulating denitrification in the northeastern AS, both today and through the past. A new high-resolution 50-ka record of d15N from the Pakistan margin is compared to five other denitrification records distributed across the AS. This regional comparison unveils the persistence of east-west heterogeneities in denitrification intensity across millennial-scale climate shifts and throughout the Holocene. The oxygen minimum zone (OMZ) experienced east-west swings across Termination I and throughout the Holocene. Probable causes are (1) changes in ventilation due to millennial-scale variations in Antarctic Intermediate Water formation and (2) postglacial reorganization of intermediate circulation in the northeastern AS following sea level rise. Whereas denitrification in the world's OMZs, including the western AS, gradually declined following the deglacial maximum (10-9 ka BP), the northeastern AS record clearly witnesses increasing denitrification from about 8 ka BP. This would have impacted the global Holocene climate through sustained N2O production and marine nitrogen loss.
    Keywords: CALYPSO; Calypso Corer; CHAMAK; Marion Dufresne (1995); MD04-2876; MD143; Pakistan continental margin
    Type: Dataset
    Format: application/zip, 3 datasets
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  • 2
    Publication Date: 2023-06-27
    Description: Relative contribution of the “marginal ice zone”, “drift-ice/pack-ice” and “summer subsurface” diatom indicator groups, diatom valve and Chaetoceros resting spore concentrations (valves or spores/g), diatom valve and Chaetoceros resting spore fluxes (valves or spores/unit surface area/yr), and total diatom fluxes (valves and spores/unit surface area/yr) from the marine sediment core AMD14-204 that was retrieved from the West Greenland shelf, offshore Upernavik, and which spans the last ca. 9,000 years.
    Keywords: AGE; Age, error; AMD14_1b; AMD14-204_CASQ; ArcticNet; Baffin Bay; Calculated; Calypso square corer; CASQ; CCGS Amundsen; Chaetoceros, spores, flux; Chaetoceros spp. resting spores per unit sediment mass; DEPTH, sediment/rock; diatoms; Diatoms; Diatoms, pelagic; Diatoms, sea-ice; Diatoms, total, flux; Diatoms, valves, flux; Diatom valves, per unit sediment mass; Geochemistry; Highly branched isoprenoid (HBI) biomarkers
    Type: Dataset
    Format: text/tab-separated-values, 749 data points
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  • 3
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    Unknown
    PANGAEA
    In:  Supplement to: Knies, Jochen; Martinez, Philippe (2009): Organic matter sedimentation in the western Barents Sea region: Terrestrial and marine contribution based on isotopic composition and organic nitrogen content. Norwegian Journal of Geology, 89, 79-89, https://njg.geologi.no/images/NJG_articles/Knies_print.pdf
    Publication Date: 2023-06-27
    Description: Here, we present bulk organic geochemical data from a spatial grid of surface samples from the western Barents Sea region. The results show that the distribution of organic carbon in surface sediments is predominantly controlled by input from land-derived terrigenous and in-situ produced marine organic matter. Inferred from various nitrogenous fractions and stable isotopes of bulk organic carbon we show that the spatial distribution of terrigenous organic carbon is independent of water depth, organic carbon mineralization and variable sedimentation rates. Instead, the pattern is predominantly controlled by sea ice-induced lateral transport and subsequent release in the Marginal Ice Zone (MIZ) as well as the distance to shore. Consistent with the observation of high vertical flux of particulate organic material in the MIZ, are amounts of marine organic carbon significantly enhanced in sediments below the winter ice margin. This is in accordance with modern observations suggesting that Arctic shelves with seasonal ice zones can be hot spots of vertical carbon export and thus a potential CO2 sink.
    Keywords: ARK-XIII/2; Barents Sea; Calculated; Carbon, organic, total; Carbon/Nitrogen ratio; DEPTH, sediment/rock; East Greenland continental slope; Element analyser, Carlo Erba NC2500; Element analyser CHN, LECO CS 244; Element analyser isotope ratio mass spectrometer (EA-IRMS); Elevation of event; Event label; Giant box corer; GKG; HM_St01; HM_St02; HM_St03; HM_St04; HM_St06; HM_St07; HM_St09; HM_St11; HM_St12; HM_St1239; HM_St1240; HM_St1241; HM_St1242; HM_St1243; HM_St1244; HM_St1245; HM_St1246; HM_St1249; HM_St1250; HM_St1251; HM_St1254; HM_St1255; HM_St1258; HM_St1260; HM_St1261; HM_St1262; HM_St1263; HM_St1264; HM_St1265; HM_St1266; HM_St1267; HM_St1269; HM_St1270; HM_St1272; HM_St1273; HM_St1274; HM_St1275; HM_St1276; HM_St1277; HM_St1278; HM_St1279; HM_St1280; HM_St1281; HM_St1282; HM_St1283; HM_St1285; HM_St1286; HM_St1287; HM_St1288; HM_St1289; HM_St1290; HM_St1292; HM_St13; HM_St14; HM_St15; HM_St16; HM_St17; HM_St18; HM_St19; HM_St20; HM_St21; HM_St22; HM_St23; HM_St24; HM_St25; HM_St26; HM_St27; HM_St28; HM_St29; HM_St30; HM_St31; HM_St32; HM_St33; HM_St34; HM_St35; HM_St36; HM_St37; HM_St39; HM_St40; HM_St41; HM_St42; HM_St44; HM_St627; HM_St629; HM_St633; HM_St635; HM_St639; HM_St643; HM_St645; HM_St651; HM_St653; HM_St655; HM_St661; HM_St665; HM_St669; HM_St673; HM_St677; HM_St679; HM_St690; Latitude of event; Longitude of event; MUC; MultiCorer; Nitrogen, inorganic; Nitrogen, organic; Nitrogen, organic/Carbon, organic ratio; Nitrogen, total; North Greenland Sea; Norwegian Sea; Polarstern; PS2824-6; PS2827-5; PS2831-9; PS2832-13; PS2834-7; PS2835-1; PS2837-8; PS2839-7; PS2847-4; PS2853-11; PS2855-9; PS2856-9; PS2857-12; PS2860-8; PS2862-7; PS2865-2; PS44; PS44/047; PS44/052; PS44/058; PS44/059; PS44/062; PS44/063; PS44/065; PS44/068; PS44/076; PS44/084; PS44/087; PS44/088; PS44/089; PS44/092; PS44/094; PS44/097; Sample ID; W Spitzbergen; Yermak Plateau; δ13C, organic carbon
    Type: Dataset
    Format: text/tab-separated-values, 1150 data points
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  • 4
    Publication Date: 2023-06-27
    Keywords: AGE; CALYPSO; Calypso Corer; Carbon, organic, total; CHAMAK; DEPTH, sediment/rock; Marion Dufresne (1995); MD04-2876; MD143; Nitrogen, total; Pakistan continental margin; δ15N
    Type: Dataset
    Format: text/tab-separated-values, 916 data points
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  • 5
    Publication Date: 2023-06-27
    Keywords: AGE; CALYPSO; Calypso Corer; CHAMAK; DEPTH, sediment/rock; Isotope ratio mass spectrometry; Marion Dufresne (1995); MD04-2876; MD143; Pakistan continental margin; δ13C, organic carbon
    Type: Dataset
    Format: text/tab-separated-values, 10 data points
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  • 6
    Publication Date: 2023-06-27
    Keywords: Age, calculated calendar years; Age model; CALYPSO; Calypso Corer; CHAMAK; DEPTH, sediment/rock; Marion Dufresne (1995); MD04-2876; MD143; Pakistan continental margin
    Type: Dataset
    Format: text/tab-separated-values, 15 data points
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  • 7
    Publication Date: 2023-07-09
    Description: Raw counts of fossil diatom taxa from the marine sediment core AMD14-204 that was retrieved from the West Greenland shelf, offshore Upernavik, and which spans the last ca. 9,000 years. Quantification was done using a light microscope (Olympus BX53, University of New Brunswick) with phase contrast optics, at 1000x magnification.
    Keywords: Achnanthes groenlandica; Actinocyclus curvatulus; AGE; AMD14_1b; AMD14-204_CASQ; ArcticNet; Asteromphalus spp.; Bacterosira bathyomphala; Bacterosira bathyomphala, resting spores; Baffin Bay; Calypso square corer; CASQ; CCGS Amundsen; Chaetoceros affinis, resting spores; Chaetoceros debilis, resting spores; Chaetoceros diadema, resting spores; Chaetoceros radicans, resting spores; Chaetoceros spp. resting spores; Cocconeis californica; Cocconeis costata; Cocconeis scutellum; Cocconeis spp.; Coscinodiscus spp.; Counting, diatoms; Cymatotheca spp.; DEPTH, sediment/rock; diatoms; Diatoms, centrales; Diatoms, pennales; Diatoms, pennales indeterminata; Diploneis spp.; Fields; Fossula arctica; Fragilariopsis atlantica; Fragilariopsis cylindrus; Fragilariopsis nana; Fragilariopsis oceanica; Fragilariopsis reginae-jahniae; Fragilariopsis spp.; Geochemistry; Gomphonemopsis littoralis; Grammatophora angulosa var. islandica; Highly branched isoprenoid (HBI) biomarkers; Mass; Melosira arctica; Melosira setosa; Navicula spp.; Nitzschia spp.; Odontella aurita; Paralia sulcata; Pauliella taeniata; Podosira cf. stelligera; Porosira glacialis; Pseudogomphonema cf. kamtschaticum; Rhizosolenia hebetata forma hebetata; Rhizosolenia hebetata forma semispina; Rhizosolenia spp.; Shionodiscus oestrupii; Shionodiscus trifultus; Synedropsis recta; Tabularia tabulata; Thalassiosira anguste-lineata; Thalassiosira antarctica var. borealis; Thalassiosira antarctica var. borealis, resting spores; Thalassiosira bulbosa; Thalassiosira constricta; Thalassiosira eccentrica; Thalassiosira gravida; Thalassiosira hyalina; Thalassiosira hyperborea; Thalassiosira nordenskioldii; Thalassiosira spp.; Thalassiothrix longissima
    Type: Dataset
    Format: text/tab-separated-values, 4799 data points
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  • 8
    Publication Date: 2023-06-27
    Description: Concentrations of the sea-ice biomarker IP25 and highly branched isoprenoid triene (HBI III) (ng/g), total organic carbon content (TOC; %), IP25 and HBI III concentrations normalized to TOC (ng/gTOC), and fluxes of IP25 and HBI III (ng/unit surface area/yr) from the marine sediment core AMD14-204_CASQ that was retrieved from the West Greenland shelf, offshore Upernavik, and which spans the last ca. 9,000 years.
    Keywords: 2,6,10,14-Tetramethyl-7-(3-methylpent-4-enyl)pentadecane, flux; 2,6,10,14-Tetramethyl-7-(3-methylpent-4-enyl)pentadecane, per unit mass total organic carbon; 2,6,10,14-Tetramethyl-7-(3-methylpent-4-enyl)pentadecane per unit sediment mass; AGE; AMD14_1b; AMD14-204_CASQ; ArcticNet; Baffin Bay; Calculated; Calypso square corer; Carbon, organic, total; CASQ; CCGS Amundsen; DEPTH, sediment/rock; diatoms; Gas chromatography - Mass spectrometry (GC-MS); Geochemistry; Highly branched isoprenoid (HBI) biomarkers; Highly branched isoprenoids, triunsatured; Highly branched isoprenoids, triunsatured, flux; Highly branched isoprenoids, triunsatured, per unit mass total organic carbon
    Type: Dataset
    Format: text/tab-separated-values, 1925 data points
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  • 9
    Publication Date: 2023-06-27
    Description: Total sedimentary organic carbon contents (TOC; %), total nitrogen (TN; %), ratio TOC to TN, carbon and nitrogen isotopic compositions (‰) from the marine sediment core AMD14-204 that was retrieved from the West Greenland shelf, offshore Upernavik, and which spans the last ca. 9,000 years.
    Keywords: AGE; AMD14_1b; AMD14-204_CASQ; ArcticNet; Baffin Bay; Calculated; Calypso square corer; Carbon, organic, total; Carbon, organic, total/Nitrogen, total ratio; CASQ; CCGS Amundsen; DEPTH, sediment/rock; diatoms; Element analyser CHN, LECO CS 125; Geochemistry; Highly branched isoprenoid (HBI) biomarkers; Nitrogen, total; Thermo Scientific Flash 2000-Delta V Plus IRMS; δ13C, organic carbon; δ15N, bulk sediment
    Type: Dataset
    Format: text/tab-separated-values, 409 data points
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  • 10
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    Unknown
    PANGAEA
    In:  Supplement to: Mollier-Vogel, Elfi; Ryabenko, Evgenia; Martinez, Philippe; Wallace, Douglas WR; Altabet, Mark A; Schneider, Ralph R (2012): Nitrogen isotope gradients off Peru and Ecuador related to upwelling, productivity, nutrient uptake and oxygen deficiency. Deep Sea Research Part I: Oceanographic Research Papers, 70, 14-25, https://doi.org/10.1016/j.dsr.2012.06.003
    Publication Date: 2023-10-28
    Description: We present new nitrogen isotope data from the water column and surface sediments for paleo-proxy validation collected along the Peruvian and Ecuadorian margins between 1°N and 18°S. Productivity proxies in the bulk sediment (organic carbon, total nitrogen, biogenic opal, C37 alkenone concentrations) and 15N/14N ratios were measured at more than 80 locations within and outside the present-day Peruvian oxygen minimum zone (OMZ). Microbial N-loss to N2 in subsurface waters under O2 deficient conditions leaves a characteristic 15N-enriched signal in underlying sediments. We find that phytoplankton nutrient uptake in surface waters within the high nutrient, low chlorophyll (HNLC) regions of the Peruvian upwelling system influences the sedimentary signal as well. How the d15Nsed signal is linked to these processes is studied by comparing core-top values to the 15N/14N of nitrate and nitrite (d15N[NOx]) in the upper 200 m of the water column. Between 1°N and 10°S, subsurface O2 is still high enough to suppress N-loss keeping d15NNOx values relatively low in the subsurface waters. However d15N[NOx] values increase toward the surface due to partial nitrate utilization in the photic zone in this HNLC portion of the system. d15N[sed] is consistently lower than the isotopic signature of upwelled [NO3]-, likely due to the corresponding production of 15N depleted organic matter. Between 10°S and 15°S, the current position of perennial upwelling cells, HNLC conditions are relaxed and biological production and near-surface phytoplankton uptake of upwelled [NO3]- are most intense. In addition, subsurface O2 concentration decreases to levels sufficient for N-loss by denitrification and/or anammox, resulting in elevated subsurface d15N[NOx] values in the source waters for coastal upwelling. Increasingly higher production southward is reflected by various productivity proxies in the sediments, while the north-south gradient towards stronger surface [NO3]- utilization and subsurface N-loss is reflected in the surface sediment 15N/14N ratios. South of 10°S, d15N[sed] is lower than maximum water column d15N[NOx] values most likely because only a portion of the upwelled water originates from the depths where highest d15N[NOx] values prevail. Though the enrichment of d15N[NOx] in the subsurface waters is unambiguously reflected in d15N[sed] values, the magnitude of d15N[sed] enrichment depends on both the depth of upwelled waters and high subsurface d15N[NOx] values produce by N-loss. Overall, the degree of N-loss influencing subsurface d15N[NOx] values, the depth origin of upwelled waters, and the degree of near-surface nitrate utilization under HNLC conditions should be considered for the interpretation of paleo d15N[sed] records from the Peruvian oxygen minimum zone.
    Keywords: Climate - Biogeochemistry Interactions in the Tropical Ocean; SFB754
    Type: Dataset
    Format: application/zip, 3 datasets
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