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  • Schussler  (3)
  • 70-506; 70-506B; 70-506C; 70-506G; 70-507B; 70-507D; 70-507F; 70-508B; 70-509B; 70-510; Deep Sea Drilling Project; DRILL; Drilling/drill rig; DSDP; Glomar Challenger; Leg70; NOAA and MMS Marine Minerals Geochemical Database; NOAA-MMS; North Pacific; North Pacific/MOUND  (2)
  • -; 69-504; Calculated; Counting, silicoflagellates; Deep Sea Drilling Project; DEPTH, sediment/rock; Dictyocha aculeata; Dictyocha angulata; Dictyocha aspera; Dictyocha aspera aspera; Dictyocha aspera clinata s. ampl.; Dictyocha brevispina; Dictyocha calida ampliata; Dictyocha calida calida; Dictyocha concavata; Dictyocha concinna; Dictyocha delicata; Dictyocha delicata var. bisecta; Dictyocha fibula s. ampl.; Dictyocha helix; Dictyocha longa; Dictyocha longa var. paxilla; Dictyocha neonautica var. cocosensis; Dictyocha ornata africana; Dictyocha perfecta; Dictyocha perlaevis; Dictyocha perlaevis flexatella; Dictyocha perlaevis perlaevis; Dictyocha perlaevis perlaevis s. ampl.; Dictyocha pulchella; Dictyocha sp.; Dictyocha spp.; Dictyocha stapedia aspinosa; Dictyocha stapedia stapedia; Dictyocha subaculeata; Dictyocha tamarae; Dictyocha transenna; Dictyocha varia; Dictyocha vexativa; Distephanus boliviensis; Distephanus crux bispinosus; Distephanus crux carolae; Distephanus crux crux s. ampl.; Distephanus major; Distephanus mesophthalmus; Distephanus polyactis; Distephanus quinquangellus; Distephanus sp.; Distephanus speculum bispicatus; Distephanus speculum elongatus; Distephanus speculum forma coronata; Distephanus speculum minutus; Distephanus speculum speculum; Distephanus speculum tenuis; Distephanus spp.; DRILL; Drilling/drill rig; DSDP; DSDP/ODP/IODP sample designation; Epoch; Glomar Challenger; Leg69; Mesocena circulus; Mesocena diodon nodosa; Mesocena quadrangula; Mesocena sp.; Mesocena triodon; Octactis pulchra; Sample code/label; Silicoflagellate zone; Specimen count
  • Elsevier  (3)
  • PANGAEA  (3)
  • 1980-1984  (6)
Collection
Keywords
Publisher
Years
  • 1980-1984  (6)
Year
  • 1
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    Unknown
    PANGAEA
    In:  Supplement to: Bukry, David (1983): Upper Cenozoic silicoflagellates from offshore Ecuador, Deep Sea Drilling Project Site 504. In: Cann, JR; Langseth, MG; Honnorez, J; Von Herzen, RP; White, SM; et al. (eds.), Initial Reports of the Deep Sea Drilling Project (U.S. Govt. Printing Office), 69, 321-342, https://doi.org/10.2973/dsdp.proc.69.113.1983
    Publication Date: 2023-07-09
    Description: Diverse and abundant late Miocene to Pleistocene silicoflagellates at DSDP Site 504 can be correlated by tropical biostratigraphic zones and relative paleotemperature values to eastern tropical Pacific reference site DSDP 503A farther to the west. Early Pliocene assemblages, which were poorly known until now, are present and can be correlated locally between DSDP Holes 504, 503A, and 495, using species events associated with the new Dictyocha pulchella Subzone and Dictyocha angulata Subzone. Silicoflagellate relative paleotemperature values show major warming at 4.7 to 5.0 Ma (Cores 45-48), 3.4 to 3.8 Ma (Cores 32-33), 1.5 to 1.7 Ma (Cores 12-16), and 0.5 to 0.8 Ma (Cores 3-6). Major coolings occurred at 5.0 to 5.1 Ma (Core 51), 3.9 to 4.4 Ma (Cores 38-44), and 1.0 to 1.3 Ma (Cores 8-10). The appearance of Dictyocha longa is proposed to replace the asperoid/fibuloid ratio reversal as the bottom of the Dictyocha fibula Zone, because the non-evolutionary ratio reverses several times in the upper Miocene of Hole 503A, and at least once in Hole 504. Three new Pliocene silicoflagellates are defined: Dictyocha concinna Bukry, n. sp., D. helix Bukry, n. sp., and D. tamarae Bukry, n. sp.
    Keywords: -; 69-504; Calculated; Counting, silicoflagellates; Deep Sea Drilling Project; DEPTH, sediment/rock; Dictyocha aculeata; Dictyocha angulata; Dictyocha aspera; Dictyocha aspera aspera; Dictyocha aspera clinata s. ampl.; Dictyocha brevispina; Dictyocha calida ampliata; Dictyocha calida calida; Dictyocha concavata; Dictyocha concinna; Dictyocha delicata; Dictyocha delicata var. bisecta; Dictyocha fibula s. ampl.; Dictyocha helix; Dictyocha longa; Dictyocha longa var. paxilla; Dictyocha neonautica var. cocosensis; Dictyocha ornata africana; Dictyocha perfecta; Dictyocha perlaevis; Dictyocha perlaevis flexatella; Dictyocha perlaevis perlaevis; Dictyocha perlaevis perlaevis s. ampl.; Dictyocha pulchella; Dictyocha sp.; Dictyocha spp.; Dictyocha stapedia aspinosa; Dictyocha stapedia stapedia; Dictyocha subaculeata; Dictyocha tamarae; Dictyocha transenna; Dictyocha varia; Dictyocha vexativa; Distephanus boliviensis; Distephanus crux bispinosus; Distephanus crux carolae; Distephanus crux crux s. ampl.; Distephanus major; Distephanus mesophthalmus; Distephanus polyactis; Distephanus quinquangellus; Distephanus sp.; Distephanus speculum bispicatus; Distephanus speculum elongatus; Distephanus speculum forma coronata; Distephanus speculum minutus; Distephanus speculum speculum; Distephanus speculum tenuis; Distephanus spp.; DRILL; Drilling/drill rig; DSDP; DSDP/ODP/IODP sample designation; Epoch; Glomar Challenger; Leg69; Mesocena circulus; Mesocena diodon nodosa; Mesocena quadrangula; Mesocena sp.; Mesocena triodon; Octactis pulchra; Sample code/label; Silicoflagellate zone; Specimen count
    Type: Dataset
    Format: text/tab-separated-values, 3974 data points
    Location Call Number Expected Availability
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  • 2
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    PANGAEA
    In:  Supplement to: Barrett, T J; Friedrichsen, Hans (1982): Elemental and isotopic compositions of some metalliferous and pelagic sediments from the Galapagos mounds area, DSDP Leg 70. Chemical Geology, 36(3-4), 275-298, https://doi.org/10.1016/0009-2541(82)90052-3
    Publication Date: 2023-08-28
    Description: Nontronite, the main metalliferous phase of the Galapagos mounds, occurs at a subsurface depth of ~2–20 m; Mn-oxide material is limited to the upper 2 m of these mounds. The nontronite forms intervals of up to a few metres thickness, consisting essentially of 100% nontronite granules, which alternate with intervals of normal pelagic sediment. The metalliferous phases represent essentially authigenic precipitates, apparently formed in the presence of upwelling basement-derived hydrothermal solutions which dissolved pre-existent pelagic sediment. Electron microprobe analyses of nontronite granules from different core samples indicate that: (1) there is little difference in major-element composition between nontronitic material from varying locations within the mounds; and (2) adjacent granules from a given sample have very similar compositions and are internally homogeneous. This indicates that the granules are composed of a single mineral of essentially constant composition, consistent with relatively uniform conditions of solution Eh and composition during nontronite formation. The Pb-isotopic composition of the nontronite and Mn-oxide sediments indicates that they were formed from solutions which contained variable proportions of basaltic Pb, introduced into pore waters by basement-derived solutions, and of normal-seawater Pb. However, the Sr-isotopic composition of these sediments is essentially indistinguishable from the value for modern seawater. On the basis of 18O/16O ratios, formation temperatures of ~20–30°C have been estimated for the nontronites. By comparison, temperatures of up to 11.5°C at 9 m depth have been directly measured within the mounds and heat flow data suggest present basement-sediment interface temperatures of 15–25°C.
    Keywords: 70-506; 70-506B; 70-506C; 70-506G; 70-507B; 70-507D; 70-507F; 70-508B; 70-509B; 70-510; Deep Sea Drilling Project; DRILL; Drilling/drill rig; DSDP; Glomar Challenger; Leg70; NOAA and MMS Marine Minerals Geochemical Database; NOAA-MMS; North Pacific; North Pacific/MOUND
    Type: Dataset
    Format: application/zip, 7 datasets
    Location Call Number Expected Availability
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  • 3
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    PANGAEA
    In:  Supplement to: Barrett, T J (1983): Lead and strontium isotopic composition of some metalliferous and pelagic sediments and basalts from the Galapagos Mounds area, Deep Sea Drilling Project Leg 70. In: Honnorez, J; Von Herzen, RP; et al. (eds.), Initial Reports of the Deep Sea Drilling Project (U.S. Govt. Printing Office), 70, 325-332, https://doi.org/10.2973/dsdp.proc.70.117.1983
    Publication Date: 2023-08-28
    Description: In recent years, metalliferous sediments have been discovered overlying newly generated oceanic crust in the East Pacific, North Atlantic, Indian Ocean, Red Sea, Gulf of Aden, and elsewhere (e.g., Boström, 1973; Lalou et al., 1977; Bischoff, 1969; Boström and Fisher, 1971; Cann et al., 1977, respectively). Such material has also been recovered by drilling from sediments lying upon older oceanic crust (Boström et al., 1972, 1976; Horowitz and Cronan, 1976). Hydrothermal circulation of seawater at a spreading ridge results in the leaching of Fe, Mn, and possibly other elements from the basaltic volcanic layer and their transport and discharge into ocean bottom waters, whereupon fine-grained Fe-Mn-rich precipitates form and settle into the ambient sediment (cf. Corliss, 1971; Dasch et al., 1971; Spooner and Fyfe, 1973; Bischoff and Dickson, 1975; Heath and Dymond, 1977; Corliss et al., 1979, Edmond et al., 1979). Mn-rich crusts have also been recovered from active ridges and are inferred to have formed in the vicinity of hydrothermal discharge areas (Scott et al., 1974; Moore and Vogt, 1976; Corliss et al., 1978; Hoffert et al., 1978). The source of the trace elements in the metalliferous deposits is generally not clear. They may be derived from seawater by adsorption onto the precipitates or crusts, or from hydrothermal solutions which have leached them from the basalts. Pb, however, can be used as a geochemical tracer because of the known isotopic compositional differences between oceanic basalts and seawater. Isotopic investigations of Pb in ferruginous sediments from the East Pacific have shown that it has been derived partly or mostly from a basaltic source (Bender et al., 1971; Dasch et al., 1971; Dymond et al., 1973). In the present study, Pb isotopic analyses have been made of a suite of metalliferous sediments (nontronite, Mn-oxide crust, Mn-Fe-oxide mud), pelagic sediments, and basalts from the Galapagos mounds area. The main purposes of the Pb study were to determine the source or sources of Pb in the metalliferous sediments, and whether or not stratigraphic variations exist in the isòtopic composition of Pb in the sediments.
    Keywords: 70-506; 70-506B; 70-506C; 70-506G; 70-507B; 70-507D; 70-507F; 70-508B; 70-509B; 70-510; Deep Sea Drilling Project; DRILL; Drilling/drill rig; DSDP; Glomar Challenger; Leg70; NOAA and MMS Marine Minerals Geochemical Database; NOAA-MMS; North Pacific; North Pacific/MOUND
    Type: Dataset
    Format: application/zip, 2 datasets
    Location Call Number Expected Availability
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  • 4
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    Unknown
    Elsevier
    In:  Bull., Polar Proj. OP-O3A4, Signal Processing II: Theories and Applications, Bath, Elsevier, vol. 186, no. XVI:, pp. 689-692, (ISBN: 3-540-23712-7)
    Publication Date: 1983
    Keywords: Seismology ; Seismic arrays ; Spectrum ; Broad-band ; Data analysis / ~ processing ; f-k-Analysis ; Schuessler ; Schussler
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  • 5
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    Unknown
    Elsevier
    In:  Bull., Polar Proj. OP-O3A4, Signal Processing II: Theories and Applications, Leiden, Elsevier, vol. 11, no. XVI:, pp. 673-680, (ISBN: 3-540-23712-7)
    Publication Date: 1983
    Keywords: Seismology ; Seismics (controlled source seismology) ; Filter- ; Data analysis / ~ processing ; Schuessler ; Schussler
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  • 6
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    Unknown
    Elsevier
    In:  Bull., Open-File Rept., Signal Processing II: Theories and Applications, Orlando, Elsevier, vol. 37, no. 16, pp. 681-684, (ISBN 1-86239-165-3, vi + 330 pp.)
    Publication Date: 1983
    Keywords: Detectors ; Seismic arrays ; Seismology ; Schuessler ; Schussler
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