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  • 2000-2004  (6)
  • 1995-1999  (2)
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  • 1
    ISSN: 1432-2056
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract Phytoplankton biomass and productivity were measured during two cruises in the Bransfield Strait in December 1991 (D91) and January/February 1993 (J93). Strong seasonal variability in productivity values was observed due to differences in the physiological response of phytoplankton. However, although the photosynthetic capacity of phytoplankton was markedly lower in D91 [P m B =0.61 ± 0.25 mg C (mg Chla)−1 h−1] than in J93 [P m B =2.18 ± 0.91 mg C (mg Chla)−1 h−1], average water column chlorophyll values in different areas of the strait were approximately similar in D91 (49–78 mg Chla m−2) and J93 (22–76 mg Chla m−2). The spatial distribution of chlorophyll was patchy and generally associated with the influence of the different water masses that meet together in the Bransfield Strait. No correlation was found between the mixed layer depth and either the integrated chlorophyll or the productivity. Our results suggest that major phytoplankton blooms in the Bransfield Strait are advected from the nearby Gerlache Strait or Bellingshausen Sea following the main eastward surface currents.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1573-868X
    Keywords: Plankton ; biomass ; metabolism ; northeast Central Atlantic
    Source: Springer Online Journal Archives 1860-2000
    Topics: Geosciences
    Notes: Abstract Plankton biomass and indices of metabolism and growth [electron transport system (ETS), glutamate dehydrogenase (GDH) and aspartate transcarbamylase (ATC) activities] were studied over a 2,800 km east-west section of the tropical North Atlantic Ocean (21°N) in 〈200, 200–500 and 〉;500 µm size classes. On the large-scale, zooplankton (〉;200 µm) enzymatic activities increased westward in the study section, where large cyanobacteria chains (Trichodesmium spp.) were observed. Parallel to it, an increase in medium calanoids (1–2 mm length) was observed towards the western part of the transect, whereas small calanoids (〈1 mm) were dominant throughout the boundary area of the subtropical gyre. Microplankton ETS and mesoplankton ETS and ATC activities seemed to match the wave length of low frequency waves. Our results suggest that such waves are related to the observed enhancement of metabolic activity of micro- and mesoplankton. The large-scale and mesoscale variability observed give evidence of the inadequacy of assuming a steady-state picture of the euphotic zone of tropical and subtropical waters.
    Type of Medium: Electronic Resource
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  • 3
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    In:  Supplement to: Arístegui, Javier; Duarte, Carlos Manuel; Agustí, Susana; Doval, María Dolores; Alvarez-Salgado, Xose Anton; Hansell, Dennis A (2002): Dissolved organic carbon support of respiration in the dark ocean. Science, 298(5600), 1967, https://doi.org/10.1126/science.1076746
    Publication Date: 2024-02-01
    Description: Recent evidence that dissolved organic carbon (DOC) is a significant component of the organic carbon flux below the photic layer of the ocean (1), together with verification of high respiration rates in the dark ocean (2), suggests that the downward flux of DOC may play a major role in supporting respiration there. Here we show, on the basis of examination of the relation between DOC and apparent oxygen utilization (AOU), that the DOC flux supports ~10% of the respiration in the dark ocean. The contribution of DOC to pelagic respiration below the surface mixed layer can be inferred from the relation between DOC and apparent oxygen utilization (AOU, µM O2), a variable quantifying the cumulative oxygen consumption since a water parcel was last in contact with the atmosphere. However, assessments of DOC/AOU relations have been limited to specific regions of the ocean (3, 4) and have not considered the global ocean. We assembled a large data set (N = 9824) of concurrent DOC and AOU observations collected in cruises conducted throughout the world's oceans (fig. S1, table S1) to examine the relative contribution of DOC to AOU and, therefore, respiration in the dark ocean. AOU increased from an average (±SE) 96.3 ± 2.0 µM at the base of the surface mixed layer (100 m) to 165.5 ± 4.3 µM at the bottom of the main thermocline (1000 m), with a parallel decline in the average DOC from 53.5 ± 0.2 to 43.4 ± 0.3 µM C (Fig. 1). In contrast, there is no significant decline in DOC with increasing depth beyond 1000 m depth (Fig. 1), indicating that DOC exported with overturning circulation plays a minor role in supporting respiration in the ocean interior (5). Assuming a molar respiratory quotient of 0.69, the decline in DOC accounts for 19.6 ± 0.4% of the AOU within the top 1000 m (Fig. 1). This estimate represents, however, an upper limit, because the correlation between DOC and AOU is partly due to mixing of DOC-rich warm surface waters with DOC-poor cold thermocline waters (6). Removal of this effect by regressing DOC against AOU and water temperature indicates that DOC supports only 8.4 ± 0.3% of the respiration in the mesopelagic waters.
    Keywords: JGOFS; Joint Global Ocean Flux Study
    Type: Dataset
    Format: application/zip, 5 datasets
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  • 4
    Publication Date: 2024-02-01
    Keywords: Carbon, organic, dissolved; DEPTH, water; Event label; FAX9908-1-1; FAX9908-12-18; FAX9908-15-22; FAX9908-17-25; FAX9908-18-26; FAX9908-19-28; FAX9908-21-31; FAX9908-22-32; FAX9908-23-34; FAX9908-3-4; FAX9908-5-8; FAX9908-8-12; JGOFS; JGOFS_not_specified; Joint Global Ocean Flux Study; Latitude of event; Longitude of event; NE Atlantic - Canary region; Oxygen, apparent utilization; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 291 data points
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  • 5
    Publication Date: 2024-02-01
    Keywords: 00000119; 01120557; 01160840; 01180152; 01191530; 01251237; 01261526; 01281101; Bottle, Niskin; Bottle number; Carbon, organic, dissolved; CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Event label; GOFLO; Go-Flo bottles; JGOFS; Joint Global Ocean Flux Study; KIWI-8; KIWI-8/2-2; KIWI-8/3-3; KIWI-8/4-4; KIWI-8/5-3; KIWI-8/5-6; KIWI-8/6-4; KIWI-8/7-4; KIWI-8/8-4; Latitude of event; Longitude of event; Net; NET; NIS; Oxygen, apparent utilization; Roger A. Revelle; Southern Ocean; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 388 data points
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  • 6
    Publication Date: 2024-02-01
    Keywords: 02152039; 02160140; 02161003; 02181436; 02181757; 02182028; 02201612; 02210332; 02211304; 02211653; 02230413; 02231338; 02240121; 02241437; 02260736; 02262146; 02270121; 02281905; 03010517; 03020507; 03021410; 03030004; 03041012; 03050246; 03051418; 03081254; 03081413; 03091535; 03100952; 03101352; 03101603; 03121325; 03131403; 03152000; Antarctic Polar Front; BONGO; Bongo net; Bottle, Niskin; Bottle number; Carbon, organic, dissolved; CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; DRIFT; Drifter; Event label; JGOFS; JGOFS_not_specified; Joint Global Ocean Flux Study; KIWI-9; KIWI-9/10-1; KIWI-9/1-1; KIWI-9/1-10; KIWI-9/11-1; KIWI-9/13-15; KIWI-9/13-2; KIWI-9/13-8; KIWI-9/14-1; KIWI-9/1-5; KIWI-9/15-11; KIWI-9/15-2; KIWI-9/15-9; KIWI-9/16-2; KIWI-9/18-10; KIWI-9/18-9; KIWI-9/19-1; KIWI-9/20-11; KIWI-9/20-6; KIWI-9/20-9; KIWI-9/2-4; KIWI-9/26-1; KIWI-9/2-7; KIWI-9/28-1; KIWI-9/2-9; KIWI-9/30-1; KIWI-9/3-1; KIWI-9/4-11; KIWI-9/4-2; KIWI-9/4-9; KIWI-9/5-1; KIWI-9/6-1; KIWI-9/7-10; KIWI-9/7-13; KIWI-9/7-2; KIWI-9/8-1; KIWI-9/9-5; KIWI-9/9-9; Latitude of event; Longitude of event; Net; NET; NIS; OPT; Optical cast; Oxygen, apparent utilization; Roger A. Revelle; Southern Ocean; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 1336 data points
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  • 7
    Publication Date: 2024-02-01
    Keywords: 10231613; 10240017; 10251542; 10271600; 10272206; 10291354; 10300414; 10301632; 10310501; 10311620; 10312333; 11020539; 11030359; 11040340; 11060349; 11071026; 11121700; 11130107; 11131530; 11141406; 11142317; 11171735; 11172037; 11180307; Bottle, Niskin; Bottle number; Carbon, organic, dissolved; CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Event label; FISH; Fish undulating, recording system tow; GOFLO; Go-Flo bottles; JGOFS; Joint Global Ocean Flux Study; KIWI-6; KIWI-6/10-1; KIWI-6/1-1; KIWI-6/12-1; KIWI-6/1-4; KIWI-6/14-1; KIWI-6/16-1; KIWI-6/17-1; KIWI-6/18-1; KIWI-6/18-6; KIWI-6/19-1; KIWI-6/20-1; KIWI-6/2-1; KIWI-6/22-1; KIWI-6/23-1; KIWI-6/23-6; KIWI-6/3-1; KIWI-6/3-4; KIWI-6/4-1; KIWI-6/5-1; KIWI-6/6-1; KIWI-6/7-1; KIWI-6/8-1; KIWI-6/8-5; KIWI-6/9-1; Latitude of event; Longitude of event; NIS; Oxygen, apparent utilization; Roger A. Revelle; Southern Ocean; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 1716 data points
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  • 8
    Publication Date: 2024-02-01
    Keywords: 12041740; 12050244; 12062340; 12071445; 12082140; 12090801; 12091226; 12092329; 12120250; 12132043; 12140457; 12160734; 12161047; 12161933; 12171941; 12180202; 12190107; 12191250; 12211310; 12212010; 12231536; 12232024; 12240557; 12240843; 12241147; 12252326; Antarctic Polar Front; BONGO; Bongo net; Bottle, Niskin; Bottle number; Carbon, organic, dissolved; CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Event label; JGOFS; JGOFS_not_specified; Joint Global Ocean Flux Study; KIWI-7; KIWI-7/10-2; KIWI-7/10-5; KIWI-7/1-1; KIWI-7/11-1; KIWI-7/12-1; KIWI-7/14-1; KIWI-7/1-5; KIWI-7/15-1; KIWI-7/16-1; KIWI-7/17-5; KIWI-7/2-1; KIWI-7/2-9; KIWI-7/3-1; KIWI-7/4-1; KIWI-7/4-3; KIWI-7/4-8; KIWI-7/5-1; KIWI-7/5-6; KIWI-7/6-1; KIWI-7/6-8; KIWI-7/7-1; KIWI-7/7-4; KIWI-7/7-8; KIWI-7/8-1; KIWI-7/8-6; KIWI-7/9-1; KIWI-7/9-7; Latitude of event; Longitude of event; Net; NET; NIS; Oxygen, apparent utilization; PUMP; Roger A. Revelle; Southern Ocean; Temperature, water; Water pump
    Type: Dataset
    Format: text/tab-separated-values, 800 data points
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