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  • 1
    Electronic Resource
    Electronic Resource
    [s.l.] : Nature Publishing Group
    Nature 227 (1970), S. 478-479 
    ISSN: 1476-4687
    Source: Nature Archives 1869 - 2009
    Topics: Biology , Chemistry and Pharmacology , Medicine , Natural Sciences in General , Physics
    Notes: [Auszug] We have determined the abundances (Table 1) of twenty-eight chemical elements, including eight elements previously reported. Abundances of Al, Ca, V, Mn, Na, Sc, Cr, Fc and Co were analysed in two grams of an interior sample by instrumental neutron activation analysis2. In another interior specimen ...
    Type of Medium: Electronic Resource
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  • 2
    Publication Date: 2023-06-27
    Keywords: 72-516; 72-516F; Aluminium oxide; Deep Sea Drilling Project; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSDP; DSDP/ODP/IODP sample designation; Event label; Glomar Challenger; Instrumental neutron activation analysis (INAA); Leg72; Sample code/label; South Atlantic/CONT RISE
    Type: Dataset
    Format: text/tab-separated-values, 87 data points
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  • 3
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    PANGAEA
    In:  Supplement to: Hu, X; Wang, Yan-Long; Schmitt, Roman A (1988): Geochemistry of sediments on the Rio Grande Rise and the redox evolution of the South Atlantic Ocean. Geochimica et Cosmochimica Acta, 52(1), 201-207, https://doi.org/10.1016/0016-7037(88)90068-3
    Publication Date: 2023-06-27
    Description: Sediment samples (32) from DSDP Holes 516 and 516F, Leg 72 were subjected to INAA (instrumental neutron activation analysis). Thirty-two major, minor and trace elements were determined. Ce anomalies, Ce_a = Ce (obs.)/Ce* (interpolated between La and Nd and relative to the NASC (North American Shale Composite)) = Ce (obs.)/[1.44 La (obs.) + 0.66 Nd (obs.)], in the carbonate phase were obtained. Calculations indicate that the Ce anomaly changed from 0.80 (80 My), 0.68 (67 My) to 0.30 (56 My), 0.27 (39 My) and 0.12–0.43 (avg. 0.26) (15?0.3 My). The Ce anomaly change observed at ~55 My coincides with the Ce anomaly change at ~58 My in marine carbonates from the Walvis Ridge, Hole 525A. These changes are attributed to improved water circulation caused by either the widening of the north-south Atlantic passage, subsidence of the Rio Grande Rise or subsidence of the Romanche Fracture Zone. The ultimate driving force behind the Ce anomaly changes is related to the pH and pO2 of the seawater and also related to global circulation of bottom ocean water and transport of the external terrestrial input from riverine or/and aeolian sources.
    Keywords: 72-516; 72-516F; Deep Sea Drilling Project; DRILL; Drilling/drill rig; DSDP; Glomar Challenger; Leg72; South Atlantic/CONT RISE
    Type: Dataset
    Format: application/zip, 3 datasets
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  • 4
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    PANGAEA
    In:  Supplement to: Liu, Yun-Gang; Schmitt, Roman A (1984): Chemical profiles in sediment and basalt samples from Deep Sea Drilling Project Leg 74, Hole 525A, Walvis Ridge. In: Moore, TC Jr; Rabinowitz, PD; et al. (eds.), Initial Reports of the Deep Sea Drilling Project (U.S. Govt. Printing Office), 74, 713-730, https://doi.org/10.2973/dsdp.proc.74.123.1984
    Publication Date: 2023-06-27
    Description: Forty sediment and four basement basalt samples from DSDP Hole 525A, Leg 74, as well as nine basalt samples from southern and offshore Brazil, were subjected to instrumental neutron activation analysis. Thirty-two major, minor, and trace elements were determined. The downcore element concentration profiles and regression analyses show that the rare earth elements (REE) are present in significant amounts in both the carbonate and noncarbonate phases in sediments; Sr is concentrated in the carbonate phase, and most of the other elements determined exist mainly in the noncarbonate phase. The calculated partition coefficients of the REE between the carbonate phase and the free ion concentrations in seawater are high and increase with decreasing REE ionic radii from 3.9 x 10**6 for La to 15 x 10**6 for Lu. Calculations show that the lanthanide concentrations in South Atlantic seawater have not been changed significantly over the past 70 Ma. The Ce anomaly observed in the carbonate phase is a redox indicator of ancient seawater. Study of the Ce anomaly reveals that seawater was anoxic over the Walvis Ridge during the late Campanian. As the gap between South America and West Africa widened and the Walvis Ridge subsided from late Campanian to late Paleocene times, the water circulation of the South Atlantic improved and achieved oxidation conditions about 54 Ma that are similar to present seawater redox conditions in the world oceans. The chemical compositions of the basement rocks correspond to alkalic basalts, not mid-ocean ridge basalts (MORBs). The results add more evidence to support the hypothesis that the Walvis Ridge was formed by a series of volcanos moving over a "hot spot" near the Mid-Atlantic Ridge. From the chemical composition and REE pattern, one 112 Ma old basalt on the Brazilian continental shelf has been identified as an early stage MORB. To date, this is the oldest oceanic tholeiite recovered from the South Atlantic. This direct evidence indicates that the continental split between South America and Africa commenced 〉 112 Ma.
    Keywords: 74-525A; Deep Sea Drilling Project; DRILL; Drilling/drill rig; DSDP; Glomar Challenger; Leg74; South Atlantic/CREST
    Type: Dataset
    Format: application/zip, 2 datasets
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  • 5
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    PANGAEA
    In:  Supplement to: Wang, Yan-Long; Liu, Yun-Gang; Schmitt, Roman A (1986): Rare earth element geochemistry of South Atlantic deep sea sediments: Ce anomaly change at ~54 My. Geochimica et Cosmochimica Acta, 50(7), 1337-1355, https://doi.org/10.1016/0016-7037(86)90310-8
    Publication Date: 2023-07-10
    Description: The geochemistry of the REE (rare earth elements) in oceanic sediments is discussed, based mainly on samples from DSDP Holes 530A and 530B, Leg 75, and Hole 525A, Leg 74. The proposed mechanisms for incorporation of the REE into the marine carbonate phases are adsorption, chiefly onto the carbonate minerals and on Sc, Hf, and Ta-rich Fe-Mn hydroxide flocs as carbonate coatings. The Ce anomaly of marine carbonate was used as an indicator of paleo-ocean water redox conditions: the bottom water of the Angola Basin was in a reducing condition in the Cretaceous. At ca. 54 My, the South Atlantic water condition became oxidizing, similar to the present seawater redox condition. This change was related to the improvement of circulation due to the widening of South Atlantic and the subsidence of water circulation barriers such as the Walvis Ridge and perhaps the Romanche Fracture Zone. The younger (Eocene-Recent) and older (Albian-Santonian) argillaceous sedimentary rocks from 530A (denoted as YSAB and OSAB respectively) show different degrees of Eu depletion with a transition period in between. The REE patterns of OSAB suggest a basaltic origin. The possible sources are Kaoko basalt in Southwest Africa or Namibia and the basaltic Walvis Ridge itself. The decrease in the area covered by Kaoko basalt due to erosion, the subsidence of the Walvis Ridge, and the improvement of water circulation led to changes in the Eu anomaly from Campanian to Paleocene, and resulted in the YSAB REE pattern. Changes in the Sm/Eu, La/Th, Th/Yb, Ti/Al2O3, FeO/Al2O3, and Hf/Al2O3 ratios suggest changes of average source rock composition from and esite to granodiorite. The REE abundances and patterns of younger sediments in the Angola Basin (YSAB) are very similar to those observed in NASC, PAAS, and ES sediments. The YSAB REE abundances and patterns may represent the average REE distribution of the exposed African continental crust. The strong resemblance of REE distributions of YSAB, NASC, PAAS and ES suggests thorough REE mixing from different sources and the uniformity of the average crustal compositions of different continents: Africa, North America, Australia, and Europe.
    Keywords: 75-530A; 75-530B; Aluminium oxide; Barium; Bromine; Caesium; Calcium carbonate; Calcium oxide; Cerium; Chlorine; Chromium; Cobalt; Deep Sea Drilling Project; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSDP; DSDP/ODP/IODP sample designation; Dysprosium; Epoch; Europium; Event label; Glomar Challenger; Hafnium; Instrumental neutron activation analysis (INAA); Iron oxide, FeO; Lanthanum; Leg75; Lutetium; Magnesium oxide; Manganese oxide; Neodymium; Nickel; Potassium oxide; Rock type; Rubidium; Samarium; Sample code/label; Scandium; Silicon dioxide; Sodium oxide; South Atlantic/RIDGE; Strontium; Tantalum; Terbium; Thorium; Titanium dioxide; Uranium; Vanadium; Ytterbium; Zinc; Zirconium
    Type: Dataset
    Format: text/tab-separated-values, 3598 data points
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  • 6
    Publication Date: 2023-07-10
    Keywords: 74-525A; Aluminium oxide; Barium; Calcium oxide; Cerium; Chromium; Cobalt; Deep Sea Drilling Project; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSDP; DSDP/ODP/IODP sample designation; Dysprosium; Europium; Glomar Challenger; Hafnium; Iron oxide, FeO; Lanthanum; Leg74; Lutetium; Magnesium oxide; Manganese oxide; Neodymium; Nickel; Piece; Potassium oxide; Rubidium; Samarium; Sample code/label; Scandium; see reference(s); Sodium oxide; South Atlantic/CREST; Strontium; Tantalum; Terbium; Thorium; Titanium dioxide; Uranium; Vanadium; Ytterbium; Zinc; Zirconium
    Type: Dataset
    Format: text/tab-separated-values, 132 data points
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  • 7
    Publication Date: 2023-07-10
    Keywords: 72-516F; Aluminium; Arsenic; Barium; Bromine; Caesium; Calcium; Cerium; Chlorine; Chromium; Cobalt; Deep Sea Drilling Project; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSDP; DSDP/ODP/IODP sample designation; Dysprosium; Epoch; Europium; Fraction; Glomar Challenger; Hafnium; Instrumental neutron activation analysis (INAA); Iron; Lanthanum; Leg72; Lutetium; Magnesium; Manganese; Neodymium; Potassium; Rubidium; Samarium; Sample code/label; Scandium; Sodium; South Atlantic/CONT RISE; Tantalum; Terbium; Thorium; Titanium; Uranium; Vanadium; Ytterbium; Zirconium
    Type: Dataset
    Format: text/tab-separated-values, 913 data points
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  • 8
    Publication Date: 2023-07-10
    Keywords: 72-516; Aluminium; Arsenic; Barium; Bromine; Caesium; Calcium; Cerium; Chlorine; Chromium; Cobalt; Deep Sea Drilling Project; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSDP; DSDP/ODP/IODP sample designation; Dysprosium; Epoch; Europium; Fraction; Glomar Challenger; Hafnium; Instrumental neutron activation analysis (INAA); Iron; Lanthanum; Leg72; Lutetium; Magnesium; Manganese; Neodymium; Potassium; Rubidium; Samarium; Sample code/label; Scandium; Sodium; South Atlantic/CONT RISE; Tantalum; Terbium; Thorium; Titanium; Uranium; Vanadium; Ytterbium; Zirconium
    Type: Dataset
    Format: text/tab-separated-values, 209 data points
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  • 9
    Publication Date: 2023-07-10
    Keywords: 74-525A; Aluminium; Arsenic; Barium; Bromine; Calcium; Cerium; Chlorine; Chromium; Cobalt; Deep Sea Drilling Project; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSDP; DSDP/ODP/IODP sample designation; Dysprosium; Europium; Fraction, non-carbonate; Glomar Challenger; Hafnium; Iron; Lanthanum; Leg74; Lutetium; Magnesium; Manganese; Neodymium; Potassium; Rubidium; Samarium; Sample code/label; Scandium; see reference(s); Sodium; South Atlantic/CREST; Strontium; Tantalum; Terbium; Thorium; Titanium; Uranium; Vanadium; Ytterbium; Zinc
    Type: Dataset
    Format: text/tab-separated-values, 1671 data points
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  • 10
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    PANGAEA
    In:  Supplement to: Corfield, Richard M; Sliter, William V; Premoli Silva, Isabella; Tarduno, John A; Schmitt, Roman A; Liu, Yun-Gang; Wise, Sherwood W; Mao, Shaozhi; Cartlidge, Julie E; Berger, Wolfgang H (1993): Synthesis of Cretaceous/Tertiary boundary studies at Hole 807C. In: Berger, WH; Kroenke, LW; Mayer, LA; et al. (eds.), Proceedings of the Ocean Drilling Program, Scientific Results, College Station, TX (Ocean Drilling Program), 130, 745-751, https://doi.org/10.2973/odp.proc.sr.130.059.1993
    Publication Date: 2024-01-09
    Description: Paleontological, stable isotopic, trace elemental abundance, and magnetostratigraphic studies have been performed on limestones spanning the Cretaceous/Tertiary boundary transition at Ocean Drilling Program (ODP) Hole 807C. Paleontological evidence exists for considerable resedimentation, which we attribute to the fact that Hole 807C is located in a basement graben. Age estimates based on planktonic foraminiferal biostratigraphy, as well as magnetostratigraphy, indicate that sedimentation rates could have been on the order of 12-14 m/m.y. This is significantly higher than those documented in other important Deep Sea Drilling Project (DSDP) and ODP Cretaceous/Tertiary boundary sections using the same age control points (e.g., DSDP Hole 577 and ODP Hole 690B), although not as high as those documented from DSDP Hole 524. The expanded nature of this succession has resulted in the Cretaceous/Tertiary boundary d13C decrease occurring over approximately a 9-m interval. Ir analysis of these sediments do not show a single large anomaly, as has been found in other Cretaceous/Tertiary boundary sections, but trivial background levels instead. Ce data support the hypothesis that this section has been expanded by secondary sedimentological processes.
    Keywords: 130-807C; Barium; Caesium; Calcium; Calcium carbonate; Cerium; Cerium anomaly; Chromium; Cobalt; Detritus; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Europium; Hafnium; Instrumental neutron activation analysis (INAA) (Reimann et al., 1998); Iridium; Iridium, standard deviation; Iron; Joides Resolution; Lanthanum; Leg130; Lutetium; Neodymium; Nickel; North Pacific Ocean; Ocean Drilling Program; ODP; Potassium; Rubidium; Samarium; Sample code/label; Sample code/label 2; Sample mass; Scandium; Sodium; Strontium; Tantalum; Terbium; Thorium; Ytterbium; Zinc
    Type: Dataset
    Format: text/tab-separated-values, 538 data points
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