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  • Data  (1,070)
  • 2000-2004  (1,070)
  • 1980-1984
  • 1945-1949
  • 1940-1944
  • 2003  (906)
  • 2000  (164)
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  • 2000-2004  (1,070)
  • 1980-1984
  • 1945-1949
  • 1940-1944
Year
  • 1
    Publication Date: 2023-07-10
    Keywords: AGE; Aluminium oxide; Area/locality; Barium; Caesium; Calcium oxide; Cerium; Chromium; Copper; Dysprosium; Erbium; Europium; Gadolinium; Hafnium; Holmium; Iron oxide, Fe2O3; Lanthanum; LATITUDE; Lead; LONGITUDE; Loss on ignition; Lutetium; Magnesium number; Magnesium oxide; Manganese oxide; Molybdenum; Multi-collector inductively coupled plasma mass spectrometer (MC-ICP-MS); Nickel; Niobium; Phosphorus pentoxide; Potassium oxide; Praseodymium; Rubidium; Samarium; Sample code/label; Scandium; Silicon dioxide; Sodium oxide; Strontium; Tantalum; Terbium; Thorium; Thulium; Titanium dioxide; Uranium; Vanadium; X-ray fluorescence (XRF); Ytterbium; Yttrium; Zinc; Zirconium
    Type: Dataset
    Format: text/tab-separated-values, 898 data points
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  • 2
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Brandon, Alan D; Snow, Jonathan E; Walker, Richard J; Morgan, John W; Mock, Timothy D (2000): 190Pt-186Os and 187Re-187Os systematics of abyssal peridotites. Earth and Planetary Science Letters, 177(3-4), 319-335, https://doi.org/10.1016/S0012-821X(00)00044-3
    Publication Date: 2024-01-09
    Description: Abyssal peridotites are normally thought to be residues of melting of the mid-ocean ridge basalt (MORB) source and are presumably a record of processes affecting the upper mantle. Samples from a single section of abyssal peridotite from the Kane Transform area in the Atlantic Ocean were examined for 190Pt-186Os and 187Re-187Os systematics. They have uniform 186Os/188Os ratios with a mean of 0.1198353 +/- 7, identical to the mean of 0.1198340 +/-12 for Os-Ir alloys and chromitites believed to be representative of the upper mantle. While the Pt/Os ratios of the upper mantle may be affected locally by magmatic processes, these data show that the Pt/Os ratio for the bulk upper mantle has not deviated by more than about +/- 30% from a chondritic Pt/Os ratio over 4.5 billion years. These observations are consistent with the addition of a chondritic late veneer after core separation as the primary control on the highly siderophile element budget of the terrestrial upper mantle. The 187Os/188Os of the samples range from 0.12267 to 0.12760 and correlate well with Pt and Pt/Os, but not Re/Os. These relationships may be explained by variable amounts of partial melting with changing D(Re), reflecting in part garnet in the residue, with a model-dependent melting age between about 600 and 1700 Ma. A model where the correlation between Pt/Os and 187Os/188Os results from multiple ancient melting events, in mantle peridotites that were later juxtaposed by convection, is also consistent with these data. This melting event or events are evidently unrelated to recent melting under mid-ocean ridges, because recent melting would have disturbed the relationship between Pt/Os and 187Os/188Os. Instead, this section of abyssal peridotite may be a block of refractory mantle that remained isolated from the convecting portions of the upper mantle for 600 Ma to 〉1 Ga. Alternatively, Pt and Os may have been sequestered during more recent melting and possibly melt/rock reaction processes, thereby preserving an ancient melting history. If representative of other abyssal peridotites, then the rocks from this suite with subchondritic 187Os/188Os are not simple residues of recent MORB source melting at ridges, but instead have a more complex history. This suite of variably depleted samples projects to an undepleted present-day Pt/Os of about 2.2 and 187Os/188Os of about 0.128-0.129, consistent with estimates for the primitive upper mantle.
    Keywords: 153-920B; 153-920D; DRILL; Drilling/drill rig; Joides Resolution; Leg153; Ocean Drilling Program; ODP; South Atlantic Ocean
    Type: Dataset
    Format: application/zip, 2 datasets
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  • 3
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Herbert, Timothy D; Schuffert, Jeffrey D (2000): Alkenone unsaturation estimates of sea-surface temperatures at site 1002 over a full glacial cycle. In: Leckie, RM; Sigurdsson, H; Acton, GD; Draper, G (eds.) Proceedings of the Ocean Drilling Program, Scientific Results, College Station, TX (Ocean Drilling Program), 165, 1-9, https://doi.org/10.2973/odp.proc.sr.165.030.2000
    Publication Date: 2024-01-09
    Description: We determined alkenone concentrations (µg/g dry sediment) and unsaturation indices (Uk'37) on 280 samples from Ocean Drilling Program Hole 1002C over the last full glacial cycle (marine oxygen isotope Stages [MIS] 1-6). Alkenone concentrations vary dramatically in relation to glacial-interglacial cycles, with high concentrations typical of interglacial stages, high sea level, inferred high surface productivity, and bottom-water anoxia. Our reconstruction of low productivity during the last glacial maximum is consistent with previous reports of a sharp decline in the foraminiferal species Neogloboquadrina dutertrei, an upwelling index. Alkenone paleotemperatures show little cooling at both the last glacial maximum and MIS 6. Variations of as much as 4°C occurred during the earlier part of MIS 3 and MIS 4 as well as the latter part of MIS 5. The absence of cooling during glacial maxima determined from alkenone paleothermometry is consistent with faunal reconstructions for the western Caribbean but requires that much of the oxygen isotopic record of the planktonic foraminifer Globigerinoides ruber be influenced by salinity variations rather than temperature.
    Keywords: 165-1002C; AGE; Alkenone, C37:3+C37:2; Alkenone, unsaturation index UK'37; Calculated from UK'37 (Prahl et al., 1988); Cayman Rise, Caribbean Sea; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Joides Resolution; Leg165; Ocean Drilling Program; ODP; Sample code/label; Sea surface temperature, annual mean; see reference(s)
    Type: Dataset
    Format: text/tab-separated-values, 1118 data points
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  • 4
    Publication Date: 2024-01-09
    Keywords: 153-920B; 153-920D; Calculated from weight loss after ignition at 550 °C; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Event label; Isotope ratio mass spectrometry; Joides Resolution; Leg153; Mass spectrometer VG Sector 54; Multi-collector inductively coupled plasma mass spectrometer (MC-ICP-MS); Ocean Drilling Program; ODP; ORDINAL NUMBER; Osmium; Osmium-184/Osmium-188, error; Osmium-184/Osmium-188 ratio; Osmium-186/Osmium-188, error; Osmium-186/Osmium-188 ratio; Osmium-187/Osmium-188, error; Osmium-187/Osmium-188 ratio; Platinum; Platinum-187/Osmium-188 ratio; Rhenium; Rhenium-187/Osmium-188 ratio; Sample code/label; Sample code/label 2; South Atlantic Ocean
    Type: Dataset
    Format: text/tab-separated-values, 190 data points
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  • 5
    Publication Date: 2024-01-09
    Keywords: 153-920B; 153-920D; Aluminium oxide; Calcium oxide; Chromium; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Event label; Iron oxide, FeO; Joides Resolution; Leg153; Loss on ignition; Magnesium number; Magnesium oxide; Manganese oxide; Nickel; Ocean Drilling Program; ODP; Phosphorus pentoxide; Potassium oxide; Sample code/label; Sample code/label 2; Silicon dioxide; Sodium oxide; South Atlantic Ocean; Strontium; Titanium dioxide; X-ray fluorescence (XRF)
    Type: Dataset
    Format: text/tab-separated-values, 102 data points
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  • 6
    Publication Date: 2024-01-09
    Description: The compatibility of vanadium (V) during mantle melting is a function of oxygen fugacity (fO2): at high fO2's, V becomes more incompatible. The prospects and limitations of using the V content of peridotites as a proxy for paleo-fO2 at the time of melt extraction were investigated here by assessing the uncertainties in V measurements and the sensitivity of V as a function of degree of melt extracted and fO2. V-MgO and V-Al2O3 systematics were found to be sensitive to fO2 variations, but consideration of the uncertainties in measurements and model parameters indicates that V is sensitive only to relative fO2 differences greater than ~2 log units. Post-Archean oceanic mantle peridotites, as represented by abyssal peridotites and obducted massif peridotites, have V-MgO and -Al2O3 systematics that can be modeled by 1.5 GPa melting between FMQ - 3 and FMQ - 1. This is consistent with fO2's of the mantle source for mid-ocean ridge basalts (MORBs) as determined by the Fe3+ activity of peridotitic minerals and basaltic glasses. Some arc-related peridotites have slightly lower V for a given degree of melting than oceanic mantle peridotites, and can be modeled by 1.5 GPa melting at fO2's as high as FMQ. However, the majority of arc-related peridotites have V-MgO systematics overlapping that of oceanic mantle peridotites, suggesting that although some arc mantle may melt under slightly oxidizing conditions, most arc mantle does not. The fact that thermobarometrically determined fO2's in arc peridotites and lavas can be significantly higher than that inferred from V systematics, suggests that V retains a record of the fO2 during partial melting, whereas the activity of Fe3+ in arc peridotitic minerals and lavas reflect subsequent metasomatic overprints and magmatic differentiation/emplacement processes, respectively. Peridotites associated with middle to late Archean cratonic mantle are characterized by highly variable V-MgO systematics. Tanzanian cratonic peridotites have V systematics indistinguishable from post-Archean oceanic mantle and can be modeled by 3 GPa partial melting at ~FMQ - 3. In contrast, many South African and Siberian cratonic peridotites have much lower V contents for a given degree of melting, suggesting at first glance that partial melting occurred at high fO2's. More likely, however, their unusually low V contents for a given degree of melting may be artifacts of excess orthopyroxene, a feature that pervades many South African and Siberian peridotites but not the Tanzanian peridotites. This is indicated by the fact that the V contents of South African and Siberian peridotites are correlated with increases in SiO2 content, generating data arrays that cannot be modeled by partial melting but can instead be generated by the addition of orthopyroxene through processes unrelated to primary melt depletion. Correction for orthopyroxene addition suggests that the South African and Siberian peridotites have V-MgO systematics similar to those of Tanzanian peridotites. Thus, if the Tanzanian peridotites represent the original partial melting residues, and if the South African and Siberian peridotites have been modified by orthopyroxene addition, then there is no indication that Archean cratonic mantle formed under fO2's significantly greater than that of modern oceanic mantle. Instead, the fO2's inferred from the V systematics in these three cratonic peridotite suites are within range of modern oceanic mantle. This also suggests that the transition from a highly reducing mantle in equilibrium with a metallic core to the present oxidized state must have occurred by late Archean times.
    Keywords: 153-920; Aluminium oxide; Calcium oxide; Calculated; COMPCORE; Composite Core; DSDP/ODP/IODP sample designation; Iron oxide, FeO; Joides Resolution; Leg153; Magnesium oxide; Manganese oxide; Ocean Drilling Program; ODP; Phosphorus pentoxide; Potassium oxide; Sample code/label; Silicon dioxide; Sodium oxide; South Atlantic Ocean; Sum; Titanium dioxide; Vanadium; X-ray fluorescence (XRF)
    Type: Dataset
    Format: text/tab-separated-values, 78 data points
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  • 7
    Publication Date: 2024-01-09
    Keywords: 152-917A; 152-918D; 163-988A; 163-989B; 163-990A; 38-348; 49-407; 49-408; 49-409; 80-550; 81-553A; AGE; Aluminium oxide; Barium; Caesium; Calcium oxide; Cerium; Chromium; Copper; Deep Sea Drilling Project; DRILL; Drilling/drill rig; DSDP; DSDP/ODP/IODP sample designation; Dysprosium; Elevation of event; Erbium; Europium; Event label; Gadolinium; Glomar Challenger; Greenland Sea; Hafnium; Holmium; Instrumental neutron activation analysis (INAA) (Reimann et al., 1998); Iron oxide, Fe2O3; Iron oxide, FeO; Joides Resolution; Lanthanum; Latitude of event; Lead; Leg152; Leg163; Leg38; Leg49; Leg80; Leg81; Longitude of event; Loss on ignition; Lutetium; Magnesium number; Magnesium oxide; Manganese oxide; Molybdenum; Multi-collector inductively coupled plasma mass spectrometer (MC-ICP-MS); Neodymium; Nickel; Niobium; North Atlantic/Norwegian Sea/PLATEAU; North Atlantic/PLAIN; North Atlantic/PLATEAU; North Atlantic/RIDGE; Ocean Drilling Program; ODP; Phosphorus pentoxide; Potassium oxide; Praseodymium; Rubidium; Samarium; Sample code/label; Scandium; Silicon dioxide; Sodium oxide; Strontium; Tantalum; Terbium; Thorium; Thulium; Titanium dioxide; Uranium; Vanadium; X-ray fluorescence (XRF); Ytterbium; Yttrium; Zinc; Zirconium
    Type: Dataset
    Format: text/tab-separated-values, 1944 data points
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  • 8
    Publication Date: 2024-01-09
    Keywords: 152-917A; 152-918D; 163-988A; 163-989B; 163-990A; 38-348; 49-407; 49-408; 49-409; 49-411; 49-413; 80-550; 80-551; 81-553A; AGE; Calculated; Deep Sea Drilling Project; DRILL; Drilling/drill rig; DSDP; DSDP/ODP/IODP sample designation; Elevation of event; Event label; Glomar Challenger; Greenland Sea; Hafnium; Hafnium-176/Hafnium-177; Joides Resolution; Latitude of event; Leg152; Leg163; Leg38; Leg49; Leg80; Leg81; Longitude of event; Lutetium; North Atlantic/BASIN; North Atlantic/ESCARPMENT; North Atlantic/FRACTURE ZONE; North Atlantic/Norwegian Sea/PLATEAU; North Atlantic/PLAIN; North Atlantic/PLATEAU; North Atlantic/RIDGE; Ocean Drilling Program; ODP; Sample code/label; Sample method; Δ Niobium; Δ ε-Hafnium; ε-Hafnium
    Type: Dataset
    Format: text/tab-separated-values, 351 data points
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  • 9
    Publication Date: 2024-01-09
    Keywords: 38-348; 49-407; 49-408; 49-409; 49-411; 49-413; 80-550; 80-551; 81-553A; AGE; Deep Sea Drilling Project; DRILL; Drilling/drill rig; DSDP; DSDP/ODP/IODP sample designation; Elevation of event; Event label; Glomar Challenger; Latitude of event; Lead-206/Lead-204 ratio; Lead-207/Lead-204 ratio; Lead-208/Lead-204 ratio; Leg38; Leg49; Leg80; Leg81; Longitude of event; Multi-collector inductively coupled plasma mass spectrometer (MC-ICP-MS); Neodymium-143/Neodymium-144 ratio; North Atlantic/BASIN; North Atlantic/ESCARPMENT; North Atlantic/FRACTURE ZONE; North Atlantic/Norwegian Sea/PLATEAU; North Atlantic/PLAIN; North Atlantic/PLATEAU; North Atlantic/RIDGE; Ocean Drilling Program; ODP; Rubidium-87/Strontium-86 ratio; Samarium-147/Neodymium-144 ratio; Sample code/label; Sample method; Strontium-87/Strontium-86 ratio; Thorium-232/Lead-204 ratio; Uranium-238/Lead-204 ratio; X-ray fluorescence (XRF); ε-Neodymium
    Type: Dataset
    Format: text/tab-separated-values, 438 data points
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  • 10
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Coogan, Laurence A; Kempton, Pamela D; Saunders, Andrew D; Norry, Michael J (2000): Melt aggregation within the crust beneath the Mid-Atlantic Ridge: evidence from plagioclase and clinopyroxene major and trace element compositions. Earth and Planetary Science Letters, 176(2), 245-257, https://doi.org/10.1016/S0012-821X(00)00006-6
    Publication Date: 2024-01-09
    Description: Ocean Drilling Program Hole 923A, located on the western flank of the Mid-Atlantic Ridge south of the Kane Fracture Zone, recovered primitive gabbros that have mineral trace element compositions inconsistent with growth from a single parental melt. Plagioclase crystals commonly show embayed anorthitic cores overgrown by more albitic rims. Ion probe analyses of plagioclase cores and rims show consistent differences in trace element ratios, indicating variation in the trace element characteristics of their respective parental melts. This requires the existence of at least two distinct melt compositions within the crust during the generation of these gabbros. Melt compositions calculated to be parental to plagioclase cores are depleted in light rare earth elements, but enriched in yttrium, compared to basalts from this region of the Mid-Atlantic Ridge, which are normal mid-ocean ridge basalt (N-MORB). Clinopyroxene trace element compositions are similar to those predicted to be in equilibrium with N-MORB. However, primitive clinopyroxene crystals are much more magnesian than those produced in one-atmosphere experiments on N-MORB, suggesting that the major element composition of the melt was unlike N-MORB. These data require that the diverse array of melt compositions generated within the mantle beneath mid-ocean ridges are not always fully homogenised during melt extraction from the mantle and that the final stage of mixing can occur efficiently within crustal magma chambers. This has implications for the process of melt extraction from the mantle and the liquid line of descent of MORB
    Keywords: 153-923A; Aluminium oxide; Calcium/(Calcium+Sodium+Potassium) ratio; Calcium oxide; Calculated; Cerium; Chromium(III) oxide; Clinopyroxene; Comment; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Dysprosium; Electron Probe Microanalysis (EPMA); Erbium; Europium; Gadolinium; Holmium; Ion probe analysis; Iron oxide, FeO; Joides Resolution; Lanthanum; Leg153; Magnesium number; Magnesium oxide; Manganese oxide; Minerals; Neodymium; Ocean Drilling Program; ODP; Olivine; ORDINAL NUMBER; Plagioclase; Praseodymium; Samarium; Sample code/label; Sample comment; Silicon dioxide; Sodium oxide; South Atlantic Ocean; Strontium; Terbium; Titanium; Titanium dioxide; Ytterbium; Yttrium; Zirconium
    Type: Dataset
    Format: text/tab-separated-values, 401 data points
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