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  • Data  (289)
  • 2020-2024  (225)
  • 1990-1994  (64)
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  • 1
    Publication Date: 2023-01-13
    Description: In the absence of a complete profile through fast-spreading modern oceanic crust, we established a reference profile through the paleo crust of the Samail Ophiolite (Sultanate of Oman), which is regarded as the best analogue for fast-spreading oceanic crust on land. To establish a coherent data set, we sampled hard rocks in the Wadi Gideah in the Wadi-Tayin massif from the mantle section up to the sheeted dikes. This paper reports our studies of the lower crust, a 5 km thick pile of gabbros, focusing on petrographic features and on the results of mineral analyses. We collected petrographical data from thins sections of the samples by optical microscope and performed also EPMA analyses (Electron Probe Microanalysis) of the mineral phases of the rocks. The samples have been collected during field campaigns from 2010 to 2015, and the data have been collected in a period from 2013 to 2021.
    Keywords: Electronprobe Microanalysis; Fast-spreading oceanic crust; gabbro; Mineral Analyses; Oman Ophiolite; Petrographic Data; Samail Ophiolite
    Type: Dataset
    Format: application/zip, 3 datasets
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  • 2
    Publication Date: 2023-02-12
    Keywords: According to Gillis et al. (2014); Amphibole, altered; Amphibole, habit; Amphibole, primary original; Amphibole, shape; Clinopyroxene, altered; Clinopyroxene, grain size; Clinopyroxene, habit; Clinopyroxene, modal; Clinopyroxene, shape; Comment; Depth above Mohorovicic discontinuity; Electronprobe Microanalysis; Event label; Fast-spreading oceanic crust; gabbro; Grain size description; HAND; Iron-titanium oxides, habit; Iron-titanium oxides, shape; Latitude of event; Longitude of event; Mineral Analyses; Minerals, total alteration; Minerals, total modal primary; Olivine, altered; Olivine, grain size; Olivine, habit; Olivine, modal; Olivine, shape; OM10-A02; OM10-A03; OM10-A04; OM10-A05A; OM10-A05B; OM10-A06; OM10-A10; OM10-A11; OM10-A11-1a; OM10-A11-1b; OM10-A11-1c; OM10-A11-1d; OM10-A11-1e; OM10-A11-1f; OM10-A11-1i; OM10-A11-1j; OM10-A11-1l; OM10-A11-1m; OM10-A11-1n; OM10-A11-1o; OM10-A11-1p; OM10-A11-1q; OM10-A11-1r; OM10-A11-1s; OM10-A11-1t; OM10-A11-1u; OM10-A11-1v; OM10-A11-1w; OM10-A11-1x; OM10-A11-2; OM10-A11-3; OM10-A12-1A; OM10-A12-1B; OM10-A12-1C; OM10-A12-1D; OM10-A12-2A; OM10-A12-2B; OM10-A12-2C; OM10-A12-2D; OM10-A12-3; OM10-A13; OM10-A14; OM10-A14A; OM10-A14b; OM10-A15; OM10-A16; OM10-A17; OM10-A17-1; OM10-A17-2; OM10-A17-3A; OM10-A17-3B; OM10-A17-3C; OM10-A18; OM10-A18-1; OM10-A18-2a; OM10-A18-2B; OM10-A18-2C; OM10-A19; OM10-A20; OM10-A20A; OM10-A20B; OM10-A21; OM10-A22; OM10-A23; OM10-A23B; OM10-A24; OM10-A25; OM10-A25-1A; OM10-A25-1B; OM10-A25-1D; OM10-A25-1E; OM10-A26; OM10-A26-1; OM10-A27; OM10-A28; OM10-A29; OM10-A30; OM10-A31; OM10-A32; OM10-A33; OM10-A34; OM10-A34A; OM10-A35; OM10-A36; OM10-A37; OM11-10; OM11-9; OM11-A21A; OM11-A21B; OM11-A22; OM11-A26; OM11-A27; OM11-A27-1; OM11-A28B; OM11-A29; OM11-A29-1; OM11-A29-2; OM12-024; OM12-025; OM12-026; OM12-027; OM12-028; OM12-029; OM12-030; OM12-031; OM12-032; OM12-033; OM12-034A; OM12-034B; OM12-035; OM12-036; OM12-037; OM12-038; OM12-039; OM12-040; OM12-041; OM12-042; OM12-043; OM12-044; OM12-045; OM12-046; OM12-047; OM12-048; OM12-049; OM12-050; OM12-051; OM12-052; OM12-053; OM12-054; OM12-055; OM12-057; OM12-058; OM12-059; OM12-201; OM12-202; OM12-203; OM12-204; OM12-205; OM12-206; OM12-207; OM12-208; OM12-209; OM12-210; OM12-211; OM12-212A; OM12-212B; OM12-213; OM12-214; OM12-215; OM12-216A; OM12-216B; OM12-217; OM12-218; OM12-219; OM12-220; OM12-Hy0; OM12-Hy018; OM12-Hy023; OM12-Hy025; OM12-Hy030; OM12-Hy032A; OM12-Hy032B; OM12-Hy032C; OM12-Hy032D; OM12-Hy038; OM12-Hy039; OM12-Hy042; OM12-Hy055B; OM12-Hy058.5; OM12-Hy059; OM12-Hy059.5; OM12-Hy062; OM12-Hy068; OM12-Hy077; OM12-Hy080; OM12-Hy080.5; OM12-Hy096; OM12-Hy102; OM12-Hy103; OM12-Hy108; OM12-Hy154; OM12-Hy166; OM15-01; OM15-02; OM15-03A; OM15-03B; OM15-03E; OM15-03F; OM15-04; OM15-05; OM15-06; OM15-07; OM15-08; OM15-09; OM15-10; OM15-11; OM15-13; OM15-14; OM15-15A; OM15-15B; OM15-15C; Om15-15D; OM15-16; OM15-17; OM15-18; OM15-19A; OM15-19B; OM15-19C; OM15-20; OM15-21; OM15-22; OM15-23; OM15-24; OM15-25A; OM15-25B; OM15-26; OM15-27; OM15-28; OM15-29G; OM15-29I; OM15-29J; OM15-30; OM15-31; OM15-32; OM15-33; OM15-34; OM15-35; OM15-36; OM15-37; OM15-40; Oman; Oman Ophiolite; Orthopyroxene, altered; Orthopyroxene, grain size; Orthopyroxene, habit; Orthopyroxene, modal; Orthopyroxene, shape; Oxides, modal; Petrographic Data; Plagioclase, altered; Plagioclase, grain size; Plagioclase, habit; Plagioclase, modal; Plagioclase, shape; Plagioclase, zoning extent; Plagioclase, zoning type; Quartz; Rocks in Hydrothermal Fault Zone; Rock type; Samail Ophiolite; Sampling by hand; Texture; Texture, modified; Unit; Visual description
    Type: Dataset
    Format: text/tab-separated-values, 5809 data points
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  • 3
    Publication Date: 2023-02-22
    Keywords: According to Gillis et al. (2014); Aluminium oxide; Aluminium oxide, standard deviation; Anorthite content in plagioclase; Anorthite content in plagioclase, standard deviation; Calcium oxide; Calcium oxide, standard deviation; Chromium(III) oxide; Chromium(III) oxide, standard deviation; Comment; Depth above Mohorovicic discontinuity; Electronprobe Microanalysis; Electron Probe Microanalysis (EPMA); Event label; Fast-spreading oceanic crust; gabbro; HAND; Iron oxide, FeO; Iron oxide, FeO, standard deviation; Magnesium oxide; Magnesium oxide, standard deviation; Magnesium oxide/(Magnesium oxide/Iron oxide, FeO, total) molar ratio; Magnesium oxide/(Magnesium oxide/Iron oxide, FeO, total) molar ratio, standard deviation; Main Lithology; Manganese oxide; Manganese oxide, standard deviation; Mineral Analyses; Nickel oxide; Nickel oxide, standard deviation; Number of analyses; OM10-A11-1a; OM10-A11-1c; OM10-A11-1n; OM10-A11-1o; OM10-A11-1p; OM10-A11-1q; OM10-A11-1v; OM10-A11-1w; OM10-A11-1x; OM10-A12-1D; OM10-A13; OM10-A14; OM10-A14A; OM10-A14b; OM10-A15; OM10-A16; OM10-A17; OM10-A17-1; OM10-A17-2; OM10-A18; OM10-A18-1; OM10-A18-2a; OM10-A19; OM10-A20; OM10-A20A; OM10-A20B; OM10-A21; OM10-A22; OM10-A23; OM10-A23B; OM10-A24; OM10-A25; OM10-A26; OM10-A27; OM10-A28; OM10-A29; OM10-A30; OM10-A31; OM10-A32; OM11-A21A; OM11-A21B; OM11-A22; OM11-A26; OM11-A27; OM11-A27-1; OM11-A28B; OM11-A29; OM11-A29-1; OM11-A29-2; OM12-025; OM12-026; OM12-027; OM12-028; OM12-029; OM12-030; OM12-031; OM12-032; OM12-033; OM12-034A; OM12-034B; OM12-035; OM12-036; OM12-037; OM12-038; OM12-039; OM12-040; OM12-041; OM12-042-1; OM12-042-2; OM12-043; OM12-044; OM12-045; OM12-046; OM12-047; OM12-048; OM12-049; OM12-050; OM12-051; OM12-052; OM12-053; OM12-054; OM12-055; OM12-057; OM12-058; OM12-059; OM12-201; OM12-202; OM12-203; OM12-204; OM12-205; OM12-206; OM12-207; OM12-208; OM12-209; OM12-210; OM12-211; OM12-213; OM12-214; OM12-217; OM12-218; OM12-219; OM12-Hy0; OM12-Hy018; OM12-Hy023; OM12-Hy025; OM12-Hy030; OM12-Hy032B; OM12-Hy038; OM12-Hy039-1; OM12-Hy039-2; OM12-Hy042; OM12-Hy055B; OM12-Hy059; OM12-Hy059.5; OM12-Hy062; OM12-Hy068; OM12-Hy077; OM12-Hy080.5; OM12-Hy102-1; OM12-Hy102-2; OM12-Hy108; OM12-Hy154-1; OM12-Hy154-2; OM12-Hy166; OM15-01; OM15-02; OM15-10; OM15-13; OM15-15C; Om15-15D; OM15-18; OM15-19A; OM15-21; OM15-24; OM15-26; OM15-27; OM15-30; OM15-32; OM15-33; OM15-40; Oman; Oman Ophiolite; Petrographic Data; Phase; Potassium oxide; Potassium oxide, standard deviation; Reference/source; Rocks in Hydrothermal Fault Zone; Rock type; Samail Ophiolite; Sample comment; Sampling by hand; Silicon dioxide; Silicon dioxide, standard deviation; Sodium oxide; Sodium oxide, standard deviation; Textural features; Texture; Titanium dioxide; Titanium dioxide, standard deviation; Total; Unit
    Type: Dataset
    Format: text/tab-separated-values, 18271 data points
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  • 4
    Publication Date: 2023-07-10
    Keywords: According to Gillis et al. (2014); After Ernst and Liu (1998); Aluminium oxide; Aluminium oxide, standard deviation; Analysis; Calcium oxide; Calcium oxide, standard deviation; Chlorine; Chlorine, standard deviation; Chromium(III) oxide; Chromium(III) oxide, standard deviation; Depth above Mohorovicic discontinuity; Electronprobe Microanalysis; Electron Probe Microanalysis (EPMA); Event label; Fast-spreading oceanic crust; Fluorine; Fluorine, standard deviation; gabbro; HAND; Iron oxide, FeO; Iron oxide, FeO, standard deviation; Magnesium oxide; Magnesium oxide, standard deviation; Magnesium oxide/(Magnesium oxide/Iron oxide, FeO, total) molar ratio; Manganese oxide; Manganese oxide, standard deviation; Mineral Analyses; Number of analyses; OM10-A25-1D; OM12-027; OM12-030; OM12-032; OM12-042; OM12-050; OM12-051; OM12-058; OM12-059; OM12-Hy023; OM12-Hy030; OM12-Hy032B; OM12-Hy032C; OM12-Hy032D; OM12-Hy038; OM12-Hy039; OM12-Hy059; OM12-Hy059.5; OM12-Hy080.5; Oman; Oman Ophiolite; Petrographic Data; Potassium oxide; Potassium oxide, standard deviation; Rock type; Samail Ophiolite; Sample comment; Sampling by hand; Silicon dioxide; Silicon dioxide, standard deviation; Sodium oxide; Sodium oxide, standard deviation; Temperature, technical; Texture; Titanium dioxide; Titanium dioxide, standard deviation; Total; Unit
    Type: Dataset
    Format: text/tab-separated-values, 927 data points
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  • 5
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    Unknown
    PANGAEA
    In:  Supplement to: Müller, Daniel W; Müller, Paul A; McKenzie, Judith A (1990): Strontium isotopic ratios as fluid tracers in Messinian evaporites of the Tyrrhenian Sea (western Mediterranean Sea). In: Kastens, KA; Mascle, J; et al. (eds.), Proceedings of the Ocean Drilling Program, Scientific Results, College Station, TX (Ocean Drilling Program), 107, 603-614, https://doi.org/10.2973/odp.proc.sr.107.194.1990
    Publication Date: 2024-01-09
    Description: Strontium isotopic ratios of gypsums recovered from upper Miocene (Messinian) evaporites at ODP Leg 107 Holes 652A, 653B, and 654A (Tyrrhenian Sea) are lower than expected. The values for the Messinian balatino-like gypsum, single gypsum crystals, and anhydrites range from 0.70861 to 0.70886 and are approximately 25 * 10**-5 less than would be expected for evaporites precipitated from Messinian seawater (0.70891-0.70902). Pre-evaporitic planktonic foraminifers from Hole 654A show variable degrees of dolomitization and 87Sr/86Sr values that irregularly decrease upward from normal marine values approximately 81m below the lowest evaporite occurrence. This suggests diagenetic alteration by advecting interstitial water with a low 87Sr/86Sr ratio or that the lower Sr isotopic ratios for the Messinian evaporites could have resulted from a greater influence of fresh water on the Sr isotopic composition of the desiccating Tyrrhenian Sea. Fluctuations of the 87Sr/86Sr-ratio for evaporites in the sedimentary cycles recognized for Holes 653B and 654A, the generally low Sr isotopic ratio of river water entering the Mediterranean Sea, and the presence of dwarf marine microfossils suggest that the 87Sr/86Sr ratio of the evaporites responded to hydrologic variations in a very restricted basin with variable rates of marine and fresh water input. The strontium isotopic ratios of the Messinian anhydrites from the proposed lacustrine sequence at Hole 652A fall in the same range as the marine evaporites from Holes 654A and 653B. This suggests a common or similar origin of the brines at the three locations. The complex depositional and hydrologic conditions in the Mediterranean during the Messinian salinity crisis preclude the use of Sr isotopic values from the evaporites for stratigraphic correlation and dating. They are, however, very useful in the interpretation of the depositional history of the basin. General calculations assuming a closed system suggest that the 87Sr/86Sr ratio of Messinian seawater (-0.7090) could be reduced to that of the evaporites (-0.7087) by mixing with fresh water (e.g., Nile River) in times of 10**4 to 10**5 yr.
    Keywords: 107-652A; 107-653B; 107-654A; DRILL; Drilling/drill rig; Joides Resolution; Leg107; Ocean Drilling Program; ODP; Tirreno Sea
    Type: Dataset
    Format: application/zip, 6 datasets
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  • 6
    Publication Date: 2024-01-09
    Keywords: 107-654A; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Foraminifera, planktic δ13C; Foraminifera, planktic δ18O; Joides Resolution; Leg107; Mass spectrometer VG Isogas Prism; Ocean Drilling Program; ODP; Sample code/label; Tirreno Sea
    Type: Dataset
    Format: text/tab-separated-values, 18 data points
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  • 7
    Publication Date: 2024-01-09
    Keywords: 107-654A; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Joides Resolution; Leg107; Mass spectrometer VG 354; Ocean Drilling Program; ODP; Sample code/label; Strontium-87/Strontium-86 ratio; Strontium-87/Strontium-86 ratio, error; Tirreno Sea
    Type: Dataset
    Format: text/tab-separated-values, 6 data points
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  • 8
    Publication Date: 2024-01-09
    Keywords: 107-654A; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Joides Resolution; Leg107; Mass spectrometer VG 354; Ocean Drilling Program; ODP; Sample code/label; Strontium-87/Strontium-86 ratio; Strontium-87/Strontium-86 ratio, error; Tirreno Sea
    Type: Dataset
    Format: text/tab-separated-values, 24 data points
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  • 9
    Publication Date: 2024-01-09
    Keywords: 107-652A; 107-653B; 107-654A; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Event label; Joides Resolution; Leg107; Lithology/composition/facies; Ocean Drilling Program; ODP; Sample code/label; Tirreno Sea
    Type: Dataset
    Format: text/tab-separated-values, 46 data points
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  • 10
    Publication Date: 2024-02-02
    Description: We sampled outcrops through 6,500 m of fossil oceanic crust in Wadi Gideah (Samail ophiolite, Oman) that is regarded as best analogue of fast-spreading crust on land. To accomplish a comprehensive understanding of accretion processes in the lower crust we follow a multi-technique approach applying petrographic and petrological, microstructural, thermometric, mineral and rock chemical methods to the same samples. Here we report a full set of whole rock major and trace element data displaying systematic and contrasting compositional trends in lower and upper gabbros being correlated with stratigraphic depth in the plutonic suite.
    Keywords: Aluminium oxide; Antimony; Barium; Caesium; Calcium oxide; Cerium; Chromium; Chromium/Zirconium ratio; Cobalt; Copper; Depth above Mohorovicic discontinuity; Dysprosium; Erbium; Europium; Europium anomaly; Event label; Gadolinium; Gallium; Hafnium; HAND; Holmium; Iron oxide, FeO; Lanthanum; Lanthanum/Neodymium; Lanthanum/Ytterbium ratio; LATITUDE; Lead; Lithium; LONGITUDE; Loss on ignition; Lutetium; Magnesium number; Magnesium oxide; Manganese oxide; Molybdenum; Multi-technique, see reference (Garbe-Schönberg et al. 2022); Neodymium; Nickel; Niobium; Niobium/Lanthanum ratio; OM10-A02; OM10-A03; OM10-A04; OM10-A05A; OM10-A05B; OM10-A06; OM10-A10; OM10-A11; OM10-A11-1a; OM10-A11-1b; OM10-A11-1c; OM10-A11-1d; OM10-A11-1f; OM10-A11-1i; OM10-A11-1j; OM10-A11-1l; OM10-A11-1n; OM10-A11-1p; OM10-A11-1t; OM10-A11-1u; OM10-A11-1v; OM10-A11-1x; OM10-A11-2; OM10-A11-3; OM10-A12-1A; OM10-A12-2C; OM10-A13; OM10-A14b; OM10-A15; OM10-A16; OM10-A17; OM10-A17-1; OM10-A17-2; OM10-A18; OM10-A18-1; OM10-A18-2a; OM10-A19; OM10-A20; OM10-A21; OM10-A23; OM10-A24; OM10-A25; OM10-A26-1; OM10-A27; OM10-A28; OM10-A29; OM10-A30; OM10-A31; OM10-A32; OM11-A22; OM11-A26; OM11-A27; OM12-025; OM12-026; OM12-027; OM12-028; OM12-029; OM12-031; OM12-032; OM12-033; OM12-034A; OM12-035; OM12-037; OM12-038; OM12-039; OM12-040; OM12-042; OM12-043; OM12-044; OM12-045; OM12-046; OM12-047; OM12-048; OM12-050; OM12-053; OM12-054; OM12-055; OM12-058; OM12-201; OM12-202; OM12-211; OM12-Hy023; OM12-Hy058.5; OM12-Hy059; OM12-Hy059.5; OM12-Hy062; OM12-Hy068; OM12-Hy077; OM12-Hy080; OM12-Hy080.5; OM12-Hy096; OM12-Hy102; OM12-Hy103; OM12-Hy108; Oman; Oman Drilling Project; Oman Ophiolite; Phosphorus pentoxide; Potassium oxide; Praseodymium; Rock type; Rubidium; Samarium; Samarium/Ytterbium ratio; Sample comment; Sampling by hand; Scandium; Silicon dioxide; Sodium oxide; Strontium; Tantalum; Terbium; Thorium; Thulium; Titanium dioxide; Tungsten; Unit; Uranium; Vanadium; Whole rock geochemistry; Ytterbium; Yttrium; Yttrium/Holmium ratio; Zinc; Zirconium; Zirconium/Hafnium ratio; Zirconium/Yttrium ratio
    Type: Dataset
    Format: text/tab-separated-values, 6384 data points
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