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  • 1
    Publication Date: 2024-04-18
    Keywords: Chloroplastic pigment equivalents, standard deviation; Chloroplastic pigment equivalents per area; DEPTH, sediment/rock; Electron transport system activity of oyxgen; Electron transport system activity of oyxgen, standard deviation; Elevation of event; Event label; Giant box corer; GKG; Latitude of event; Longitude of event; M53; M53_155-4; M53_158-4; M53_162-4; M53_164-4; M53_166-4; M53_168-1; M53_169-2; M53_170-1; M53_173-2; M53_KG-804; M53_KG-808; M53_KG-812; M53_KG-816; M53_KG-820; M53_KG-822; M53_KG-824; M53_KG-827; M53_KG-833; Meteor (1964); off West Africa; Oxygen demand, total; Oxygen demand, total, standard deviation; Temperature, in rock/sediment
    Type: Dataset
    Format: text/tab-separated-values, 52 data points
    Location Call Number Expected Availability
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  • 2
    Publication Date: 2024-04-18
    Keywords: Counting 〉42 µm fraction; Counting 〉500 µm fraction; DEPTH, sediment/rock; Elevation of event; Event label; Giant box corer; GIK15672-2; GKG; Latitude of event; Longitude of event; M53; M53_155-4; M53_158-4; M53_162-4; M53_164-4; M53_166-4; M53_168-1; M53_169-2; M53_170-1; M53_172-1; M53_173-2; M53_KG-804; M53_KG-808; M53_KG-812; M53_KG-816; M53_KG-820; M53_KG-822; M53_KG-824; M53_KG-827; M53_KG-833; Macrofauna, abundance; Macrofauna, abundance, standard deviation; Macrofauna, biomass, wet mass; Meiofauna, abundance; Meiofauna, abundance, standard deviation; Meiofauna biomass, ash free dry mass; Meiofauna biomass, ash free dry mass, standard deviation; Meteor (1964); off West Africa; Polychaeta, biomass, wet mass
    Type: Dataset
    Format: text/tab-separated-values, 66 data points
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  • 3
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    Unknown
    PANGAEA
    In:  Supplement to: Pfannkuche, Olaf; Theeg, R; Thiel, Hjalmar (1983): Benthos activity, abundance and biomass under an area of low upwelling off Morocco, Northwest Africa. Meteor Forschungsergebnisse, Deutsche Forschungsgemeinschaft, Reihe D Biologie, Gebrüder Bornträger, Berlin, Stuttgart, D36, 85-96
    Publication Date: 2024-04-18
    Description: Macro- and meiobenthic abundance and biomass as well as metabolic activity (respiration, ETS activity) have been studied along a transect ranging from 130 to 3000 m water depth off northern Morocco (35° N) during "Meteor" cruise No. 53 (1980). The distribution of chloroplastic pigment concentration (chlorophyll a, pheophytins) in the sediment has been investigated as a measure of sedimented primary organic matter. High chloroplastic pigment concentrations were found on the shelf and around the shelf break, but values declined rapidly between 200 and 600 m depth. Below 1200 m pigment concentrations remained at a relatively uniform low level. Macrobenthic abundance and biomass (wet weight) decreased with increasing water depth and with distance from the shore. Significant changes occurred between the shelf and upper slope and below 2000 m depth. Meiobenthic abundance and biomass (ash free dry weight) followed the same general pattern, but changes were found below 400 and 800 m depth. In the depth range of 1200 to 3000 m values differ only slightly. Meiofauna abundance and biomass show a good correlation with the sedimentary chloroplastic pigment concentrations. Respiratory activity of sediment cores, measured by a shipboard technique at ambient temperatures, decreased with water depth and shows a good correlation with the pigment concentrations. ETS activity was highest on the shelf and decreased with water depth, with significant changes between 200 and 400 m, and below 1200 m depth, respectively. Activity was generally highest in the top 5 cm of the sediment and was measurable, at all stations, down to 15 cm sediment depth. Shelf and upper slope stations exhibited a vertical distribution pattern of ETS activity in the sediment column, different from that of deeper stations. The importance of biological activity measurements as an estimate of productivity is discussed. To prove the thesis that differences in benthic abundance, biomass and activity reflect differences in pelagic surface primary production, in the case of the NW-African coast caused by different upwelling intensities, the values from 35° N were compared with data from 21° N (permanent upwelling activity) and 17° N (ca. 9 months upwelling per year). On the shelf and upper slope (〈 500 m) hydrographical conditions (currents, internal waves) influence the deposition of organic matter and cause a biomass minimum between 200 and 400 m depth in some regions. But, in general, macrobenthic abundance and biomass increases with enhanced upwelling activity and reaches a maximum in the area off Cape Blanc (21° N). On the shelf and in the shelf break region meiofauna densities are higher at 35° N in comparison to 21° N; but in contrast to the decreasing meiofauna abundance with increasing water depth at 35° N, an abundance maximum between 400 and 1200 m depth is formed in the Cape Blanc region; this maximum coincides with the maximum of sedimentary chloroplastic pigment equivalents. The comparison of ETS activities between 35° N and 21° N shows on the shelf activity at 21° N is up to 14 times higher and on the slope 4-9 times higher, which demonstrates that benthic activity responds to the surface productivity regime.
    Keywords: Giant box corer; GIK15672-2; GKG; M53; M53_155-4; M53_158-4; M53_162-4; M53_164-4; M53_166-4; M53_168-1; M53_169-2; M53_170-1; M53_172-1; M53_173-2; M53_KG-804; M53_KG-808; M53_KG-812; M53_KG-816; M53_KG-820; M53_KG-822; M53_KG-824; M53_KG-827; M53_KG-833; Meteor (1964); off West Africa
    Type: Dataset
    Format: application/zip, 2 datasets
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  • 4
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    Unknown
    Wiley-Blackwell
    In:  Marine Ecology, 8 . pp. 1-20.
    Publication Date: 2017-10-05
    Description: Benthic metabolism and standing stocks were investigated in the deep Red Sea between 21o and 27oN, Activity was assessed by the determination of respiration rates with a shipboard method and by calculating oxygen consumption from the activity in the electron transport system. We attempted to compare results from different latitudes within the warm Red Sea and with data from cold Atlantic environments. Our investigations were part of an environmental risk assessment to evaluate future mining of metalliferous sediments from the Atlantis II Deep.
    Type: Article , PeerReviewed
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