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  • 17KL; 1KL; 21KL; 42KL; 82KL; 83KL; 92KL; Atlantic Ocean; BCR; Bottle, Niskin; Box corer (Reineck); East Atlantic; FBG; FGGE-Equator 79 - First GARP Global Experiment; Giant box corer; GIK/IfG; GIK12301-5; GIK12302-3; GIK12303-3; GIK12304-3; GIK12305-2; GIK12306-2; GIK12307-3; GIK12308-2; GIK12309-1; GIK12310-1; GIK12313-2; GIK12314-2; GIK12315-1; GIK12316-1; GIK12317-1; GIK12322-2; GIK12323-1; GIK12324-1; GIK12325-4; GIK12326-2; GIK12327-2; GIK12328-1; GIK12329-2; GIK12338-1; GIK12339-2; GIK12340-3; GIK12341-2; GIK12342-1; GIK12343-1; GIK12344-2; GIK12345-3; GIK12346-1; GIK12347-1; GIK12349-3; GIK13220-1; GIK13221-1; GIK13222-1; GIK13223-3; GIK13224-2; GIK13225-2; GIK13230-1; GIK13231-1; GIK13232-1; GIK13233-1; GIK13234-1; GIK13235-2; GIK13236-1; GIK13237-1; GIK13238-1; GIK13273-1; GIK13274-1; GIK13275-1; GIK13276-1; GIK13279-3; GIK13280-1; GIK13282-1; GIK13283-2; GIK13289-1; GIK13290-1; GIK13526-4; GIK13527-1; GIK13528-2; GIK13529-1; GIK13530-1; GIK13532-2; GIK13533-1; GIK13534-1; GIK13536-2; GIK13557-1; GIK13583-1; GIK13584-2; GIK13585-1; GIK13586-3; GIK13587-1; GIK13588-2; GIK15626-1; GIK15627-2; GIK15627-5; GIK15628-4; GIK15629-1; GIK15630-1; GIK15631-1; GIK15632-1; GIK15634-1; GIK15635-2; GIK15637-3; GIK15638-2; GIK15639-1; GIK15640-1; GIK15641-2; GIK15642-1; GIK15643-1; GIK15644-1; GIK15645-1; GIK15646-1; GIK15647-1; GIK15648-1; GIK15651-3; GIK15651-4; GIK15652-2; GIK15654-1; GIK15657-1; GIK15658-1; GIK15658-2; GIK15659-1; GIK15660-1; GIK15663-1; GIK15664-1; GIK15666-8; GIK15666-9; GIK15667-1; GIK15669-2; GIK15670-1; GIK15672-2; GIK15673-2; GIK15676-2; GIK15677-1; GIK15678-1; GIK15678-3; GIK15679-2; GIK16002-1; GIK16003-1; GIK16005-1; GIK16012-3; GIK16024-1; GIK16032-1; GKG; Grab (Shipek); Institute for Geosciences, Christian Albrechts University, Kiel; M25; M51; M51-13; M53; M53_005; M53_006; M53_008; M53_009; M53_010; M53_011; M53_014; M53_020; M53_022; M53_158; M53_164; M53_166; M53_167; M53_169; M53_170-1; M53_172-1; M53_173-2; M60; Meteor (1964); MG; MSN; Multiboxcorer; Multiple opening/closing net; NIS; Northeast Atlantic; off West Africa; Photo grab; PLA; Plankton net; SHIPEK; SPC; Sphincter corer; SUBTROPEX 82; VA-10/3; VA-28/2; VA79-10NET; VA79-17KLa; VA79-1KLa; VA79-21KLa; VA79-42KLa; VA79-82KLa; VA79-83KLa; VA79-92KLa; Valdivia (1961); van Veen Grab; VGRAB  (1)
  • 2P-50; 2P-51; 2P-52; Atomic absorption spectrometry (AAS); Cobalt; Copper; Date/Time of event; Density; DEPTH, sediment/rock; DOWNWIND-H; Dredge; DRG; DWHD16; Elevation of event; Event label; Horizon; HRS1; Iron; Latitude of event; Longitude of event; Manganese; Nickel; NOAA and MMS Marine Minerals Geochemical Database; NOAA-MMS; Pacific Ocean; Porosity; Prospector; Prospector-63; Sample ID; SAN_JUAN_1963; SNJ-DH2; Specific surface area; Spencer F. Baird; Water in rock  (1)
  • 36-330; Alisporites grandis; Alisporites lowoodensis; Alisporites similis; Anapiculatisporites dawsonensis; Antulsporites saevus; Antulsporites varigranulatus; Araucariacites australis; Auritulinasporites intrastriatus; Baculatisporites comaumensis; Calialasporites dampieri; Calialasporites segmentatus; Calialasporites trilobatus; Calialasporites turbatus; Callialasporites sp.; Cibotiumspora sp.; Cicatricosisporites sp.; Classopollis spp.; Clavatisporites sp.; Conbaculatisporites sp.; Concavissimisporites sp.; Concavissimisporites variverrucatus; Contignisporites cooksonii; Contignisporites sp.; Converrucosisporites utriculosus; Coronatispora perforata; Crybelosporites berberioides; Cyathidites australis; Cyathidites minor; Cyclocrystella sp.; Deep Sea Drilling Project; Densoisporites velatus; Dictyophyllidites sp.; Dictyotosporites complex; Disaccites; DRILL; Drilling/drill rig; DSDP; DSDP/ODP/IODP sample designation; Ephedripites sp.; Exesipollenites sp.; Foveosporites aff. moretonensis; Foveosporites subtriangularis; Gleicheniidites spp.; Glomar Challenger; Granulatisporites sp.; Indusispora sp.; Interulobites algoensis; Interulobites sinuosus; Interulobites sp.; Interulobites triangularis; Ischyosporites crateris; Ischyosporites marburgensis; Ischyosporites sp.; Ischyosporites volkheimeri; Klukisporites lacunus; Kuylisporites aff. lunaris; Laevigatosporites sp.; Leg36; Leptolepidites macroverrucosus; Leptolepidites sp.; Leptolepidites verrucatus; Lycopodiumsporites sp.; Marattisporites scabratus; Matonisporites crassiangulatus; Microcachryidites antarcticus; Monosaccites sp.; Monosulcites sp.; Neoraistrickia sp.; Neoraistrickia suratensis; Nevesisporites sp.; Osmundacidites wellmanii; Peromonolites sp.; Podocarpidites sp.; Podosporites sp.; Pollen, gymnosperms; Polycingulatisporites crenulatus; Polycingulatisporites sp.; Polycingulatisporites striatus; Polypodiaceoisporites neuquenensis; Retitriletes sp.; Rugubivesiculites sp.; Sample code/label; South Atlantic/CONT RISE; Specimen count; Spores; Staplinisporites caminus; Stereisporites antiquasporites; Sulcosaccispora sp.; Todisporites rotundiformis; Trilites sp.; Trilobosporites antiquus; Tripartina variabilis; Trisaccites sp.; Verrucosisporites sp.; Vitreisporites pallidus  (1)
  • PANGAEA  (3)
  • 1980-1984  (3)
  • 1983  (3)
Collection
Keywords
Publisher
  • PANGAEA  (3)
Years
  • 1980-1984  (3)
Year
  • 1983  (3)
  • 1
    Publication Date: 2023-07-10
    Keywords: 36-330; Alisporites grandis; Alisporites lowoodensis; Alisporites similis; Anapiculatisporites dawsonensis; Antulsporites saevus; Antulsporites varigranulatus; Araucariacites australis; Auritulinasporites intrastriatus; Baculatisporites comaumensis; Calialasporites dampieri; Calialasporites segmentatus; Calialasporites trilobatus; Calialasporites turbatus; Callialasporites sp.; Cibotiumspora sp.; Cicatricosisporites sp.; Classopollis spp.; Clavatisporites sp.; Conbaculatisporites sp.; Concavissimisporites sp.; Concavissimisporites variverrucatus; Contignisporites cooksonii; Contignisporites sp.; Converrucosisporites utriculosus; Coronatispora perforata; Crybelosporites berberioides; Cyathidites australis; Cyathidites minor; Cyclocrystella sp.; Deep Sea Drilling Project; Densoisporites velatus; Dictyophyllidites sp.; Dictyotosporites complex; Disaccites; DRILL; Drilling/drill rig; DSDP; DSDP/ODP/IODP sample designation; Ephedripites sp.; Exesipollenites sp.; Foveosporites aff. moretonensis; Foveosporites subtriangularis; Gleicheniidites spp.; Glomar Challenger; Granulatisporites sp.; Indusispora sp.; Interulobites algoensis; Interulobites sinuosus; Interulobites sp.; Interulobites triangularis; Ischyosporites crateris; Ischyosporites marburgensis; Ischyosporites sp.; Ischyosporites volkheimeri; Klukisporites lacunus; Kuylisporites aff. lunaris; Laevigatosporites sp.; Leg36; Leptolepidites macroverrucosus; Leptolepidites sp.; Leptolepidites verrucatus; Lycopodiumsporites sp.; Marattisporites scabratus; Matonisporites crassiangulatus; Microcachryidites antarcticus; Monosaccites sp.; Monosulcites sp.; Neoraistrickia sp.; Neoraistrickia suratensis; Nevesisporites sp.; Osmundacidites wellmanii; Peromonolites sp.; Podocarpidites sp.; Podosporites sp.; Pollen, gymnosperms; Polycingulatisporites crenulatus; Polycingulatisporites sp.; Polycingulatisporites striatus; Polypodiaceoisporites neuquenensis; Retitriletes sp.; Rugubivesiculites sp.; Sample code/label; South Atlantic/CONT RISE; Specimen count; Spores; Staplinisporites caminus; Stereisporites antiquasporites; Sulcosaccispora sp.; Todisporites rotundiformis; Trilites sp.; Trilobosporites antiquus; Tripartina variabilis; Trisaccites sp.; Verrucosisporites sp.; Vitreisporites pallidus
    Type: Dataset
    Format: text/tab-separated-values, 2232 data points
    Location Call Number Expected Availability
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  • 2
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    Unknown
    PANGAEA
    In:  Supplement to: Fuerstenau, D W; Han, K N (1983): Metallurgy and processing of marine manganese nodules. Mineral Processing and Extractive Metallurgy Review, 1(1-2), 1-83, https://doi.org/10.1080/08827508308952589
    Publication Date: 2023-08-28
    Description: This paper reviews the state of the art in processing and extraction of ocean floor manganese nodules. It briefly reviews the mining sites where the abundant rich nodules occur and also discusses the metal distribution in nodules in view of economical processing and extraction of these metal values. The paper discloses in a detailed manner the physical and chemical characteristics of nodules, including porosity, surface area, water content and the effect of temperature on crystal structure of major constituents of nodules. In the extraction aspect of nodules, the paper reviews two different extraction schemes revealed in the literature, namely hydrometallurgical treatment and pyrometallurgical treatment. The hydrometallurgical treatments include acid leaching, ammonia leaching, leaching with reducing agents and leaching after high temperature pre-treatments such as in sulfating rousting, while the pyrometallurgical processes include smelting, chlorination-vaporization and segregation. The paper also covers metal recovery processes from leach liquor. An economic survey of processing nodules has been made in terms of problems associated with metal-marketing, and impact of metal production from nodules on mineral industries.
    Keywords: 2P-50; 2P-51; 2P-52; Atomic absorption spectrometry (AAS); Cobalt; Copper; Date/Time of event; Density; DEPTH, sediment/rock; DOWNWIND-H; Dredge; DRG; DWHD16; Elevation of event; Event label; Horizon; HRS1; Iron; Latitude of event; Longitude of event; Manganese; Nickel; NOAA and MMS Marine Minerals Geochemical Database; NOAA-MMS; Pacific Ocean; Porosity; Prospector; Prospector-63; Sample ID; SAN_JUAN_1963; SNJ-DH2; Specific surface area; Spencer F. Baird; Water in rock
    Type: Dataset
    Format: text/tab-separated-values, 66 data points
    Location Call Number Expected Availability
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  • 3
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Ganssen, Gerald M (1983): Dokumentation von küstennahmen Auftrieb anhand stabiler Isotope in rezenten Foraminiferen vor Nordwest-Afrika. Meteor Forschungsergebnisse, Deutsche Forschungsgemeinschaft, Reihe C Geologie und Geophysik, Gebrüder Bornträger, Berlin, Stuttgart, C37, 1-46
    Publication Date: 2024-02-03
    Description: Foraminifera shells from modern sediments document the hydrography of the coastal upwelling region off Northwest-Africa (12-35° N) through the stable isotopic composition of their shells. Oxygen isotopes in planktonic foraminifers reflect sea surface temperatures (SST) during the main growing season of the differnt species: Globigerinoides ruber (pink and white) and G. sacculifer delineate the temperatures of the summer, Globorotalia inflata and Pulleniatina obliquiloculata those of the winter. Oxygen isotopes on Globigerina bulloides document temperature ranges of the upwelling seasons. d18O values in planktonic foraminifera from plankton hauls resemble those from the surface sediment samples, if the time of the plankton collection is identical with that of the main growing season of the species. The combined isotopic record of G. ruber (white) and G. inflata clearly reveals the latitudinal variations of the annual mean SST. The deviation of the d18O values from both species from their common mean is a scale for the seasonality, i.e. the maximum temperature range within one year. Thus in the summer upwelling region (north of 25° N) seasonality is relatively low, while it becomes high in the winter upwelling region south of 20° N. Furthermore, the winter upwelling region is characterized by relatively high d18O values - indicating low temperatures - in G. bulloides, the region of summer upwelling by relatively low d180 values compared with the constructed annual mean SST. Generally, carbon isotopes from the plankton hauls coincide with those from sediment surface samples. The enrichment of 13C isotopes in foraminifers from areas with high primary production can be caused by the removal of 12C from the total dissolved inorganic carbon during phytoplankton blooms. It is found that carbon isotopes from plankton hauls off Northwest-Africa are relatively enriched in 13C compared with samples from the western Atlantic Ocean. Also shells of G. ruber (pink and white) from upwelling regions are enriched in the heavier isotope compared with regions without upwelling. In the sediment, the enrichement of 13C due to high primary production can only be seen in G. bulloides from the high fertile upwelling region south of 20° N. North of this latitude values are relatively low. An enrichment of 12C is observed in shells of G. ruber (pink), G. inflata and P. obliquiloculata from summer-winter- and perennial upwelling regions respectively. Northern water masses can be distinguished from their southern counterparts by relatively high oxygen and carbon values in the „living“ (=stained) benthic foraminifera Uvigerina sp. and Hoeglundina elegans. A tongue of the Mediterranean Outflow water can be identified far to the south (20° N) by 13C-enriched shells of these benthic foraminifera. A zone of erosion (15-25° N, 300-600 m) with a subrecent sediment surface can be mapped with the help of oxygen isotopes in „dead“ benthic specimens. Comparison of d18O values in aragonitic and calcitic benthic foraminifers does not show a differential influence of temperature on the isotopic composition in the carbonate. However, carbon isotopes reflect slightly differences under the influence of temperature.
    Keywords: 17KL; 1KL; 21KL; 42KL; 82KL; 83KL; 92KL; Atlantic Ocean; BCR; Bottle, Niskin; Box corer (Reineck); East Atlantic; FBG; FGGE-Equator 79 - First GARP Global Experiment; Giant box corer; GIK/IfG; GIK12301-5; GIK12302-3; GIK12303-3; GIK12304-3; GIK12305-2; GIK12306-2; GIK12307-3; GIK12308-2; GIK12309-1; GIK12310-1; GIK12313-2; GIK12314-2; GIK12315-1; GIK12316-1; GIK12317-1; GIK12322-2; GIK12323-1; GIK12324-1; GIK12325-4; GIK12326-2; GIK12327-2; GIK12328-1; GIK12329-2; GIK12338-1; GIK12339-2; GIK12340-3; GIK12341-2; GIK12342-1; GIK12343-1; GIK12344-2; GIK12345-3; GIK12346-1; GIK12347-1; GIK12349-3; GIK13220-1; GIK13221-1; GIK13222-1; GIK13223-3; GIK13224-2; GIK13225-2; GIK13230-1; GIK13231-1; GIK13232-1; GIK13233-1; GIK13234-1; GIK13235-2; GIK13236-1; GIK13237-1; GIK13238-1; GIK13273-1; GIK13274-1; GIK13275-1; GIK13276-1; GIK13279-3; GIK13280-1; GIK13282-1; GIK13283-2; GIK13289-1; GIK13290-1; GIK13526-4; GIK13527-1; GIK13528-2; GIK13529-1; GIK13530-1; GIK13532-2; GIK13533-1; GIK13534-1; GIK13536-2; GIK13557-1; GIK13583-1; GIK13584-2; GIK13585-1; GIK13586-3; GIK13587-1; GIK13588-2; GIK15626-1; GIK15627-2; GIK15627-5; GIK15628-4; GIK15629-1; GIK15630-1; GIK15631-1; GIK15632-1; GIK15634-1; GIK15635-2; GIK15637-3; GIK15638-2; GIK15639-1; GIK15640-1; GIK15641-2; GIK15642-1; GIK15643-1; GIK15644-1; GIK15645-1; GIK15646-1; GIK15647-1; GIK15648-1; GIK15651-3; GIK15651-4; GIK15652-2; GIK15654-1; GIK15657-1; GIK15658-1; GIK15658-2; GIK15659-1; GIK15660-1; GIK15663-1; GIK15664-1; GIK15666-8; GIK15666-9; GIK15667-1; GIK15669-2; GIK15670-1; GIK15672-2; GIK15673-2; GIK15676-2; GIK15677-1; GIK15678-1; GIK15678-3; GIK15679-2; GIK16002-1; GIK16003-1; GIK16005-1; GIK16012-3; GIK16024-1; GIK16032-1; GKG; Grab (Shipek); Institute for Geosciences, Christian Albrechts University, Kiel; M25; M51; M51-13; M53; M53_005; M53_006; M53_008; M53_009; M53_010; M53_011; M53_014; M53_020; M53_022; M53_158; M53_164; M53_166; M53_167; M53_169; M53_170-1; M53_172-1; M53_173-2; M60; Meteor (1964); MG; MSN; Multiboxcorer; Multiple opening/closing net; NIS; Northeast Atlantic; off West Africa; Photo grab; PLA; Plankton net; SHIPEK; SPC; Sphincter corer; SUBTROPEX 82; VA-10/3; VA-28/2; VA79-10NET; VA79-17KLa; VA79-1KLa; VA79-21KLa; VA79-42KLa; VA79-82KLa; VA79-83KLa; VA79-92KLa; Valdivia (1961); van Veen Grab; VGRAB
    Type: Dataset
    Format: application/zip, 11 datasets
    Location Call Number Expected Availability
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