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  • Data  (113)
  • 1995-1999  (113)
  • 1965-1969
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Keywords
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Years
Year
  • 1
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    Unknown
    PANGAEA
    In:  Supplement to: Passier, Hilde F; Bosch, Hendrik-Jan; Nijenhuis, Ivar A; Lourens, Lucas Joost; Böttcher, Michael Ernst; Leenders, Anke; Sinninghe Damsté, Jaap S; de Lange, Gert J; de Leeuw, Jan W (1999): Sulphidic Mediterranean surface waters during Pliocene sapropel formation. Nature, 397(6715), 146-149, https://doi.org/10.1038/16441
    Publication Date: 2024-01-09
    Description: Sapropels -organic-matter rich layers- are common in Neogene sediments of the eastern Mediterranean Sea. The formation of these layers has been attributed to climate-related increases in organic-matter production (Calvert et al., 1992, doi:10.1038/359223a0; Rossignol-Strick et al., 1982, doi:10.1038/295105a0; Rohling, 1994, doi:10.1016/0025-3227(94)90202-X) and increased organic-matter preservation due to oxygen depletion in more stagnant bottom waters (Rossignol-Strick et al., 1982, doi:10.1038/295105a0; Rohling, 1994, doi:10.1016/0025-3227(94)90202-X). Here we report that eastern Mediterranean Pliocene sapropels (Emeis et al., 1996, doi:10.2973/odp.proc.ir.160.102.1996) contain molecular fossils of a compound (isorenieratene) known to be synthesized by photosynthetic green sulphur bacteria, suggesting that sulphidic (euxinic) -and therefore anoxic- conditions prevailed in the photic zone of the water column. These sapropels also have a high trace-metal content, which is probably due to the efficient scavenging of these metals by precipitating sulphides in a euxinic water column. The abundance and sulphur-isotope composition of pyrite are consistent with iron sulphide formation in the water column. We conclude that basin-wide water-column euxinia occurred over substantial periods during Pliocene sapropel formation in the eastern Mediterranean Sea, and that the ultimate degradation of the increased organic-matter production was strongly influential in generating and sustaining the euxinic conditions.
    Keywords: 160-964D; 160-964E; 160-966C; 160-967C; 160-969E; Accumulation rate, total organic carbon; AGE; Barium; Cadmium; Carbon, organic, total; Code; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Eastern Basin; Enrichment factor; Event label; Isorenieratene derivative; Joides Resolution; Leg160; Molybdenum; Nickel; Ocean Drilling Program; ODP; Sample code/label; Selenium; Sulfur of pyrite; Vanadium; δ34S, pyrite
    Type: Dataset
    Format: text/tab-separated-values, 145 data points
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  • 2
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    PANGAEA
    Publication Date: 2023-06-27
    Keywords: AGE; Calcium; CFA; Continuous Flow Analysis; DEPTH, ice/snow; Greenland; Greenland Ice Core Projects; GRIP; GRIP/GISP/NGRIP; ISTUK; ISTUK electromechanical drill; Sampling/drilling ice
    Type: Dataset
    Format: text/tab-separated-values, 3069 data points
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  • 3
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    PANGAEA
    Publication Date: 2023-06-27
    Keywords: AGE; CFA; Continuous Flow Analysis; DEPTH, ice/snow; Formaldehyde; Greenland; Greenland Ice Core Projects; GRIP; GRIP/GISP/NGRIP; ISTUK; ISTUK electromechanical drill; Sampling/drilling ice
    Type: Dataset
    Format: text/tab-separated-values, 2657 data points
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  • 4
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    PANGAEA
    Publication Date: 2023-06-27
    Keywords: AGE; CFA; Continuous Flow Analysis; DEPTH, ice/snow; Greenland; Greenland Ice Core Projects; GRIP; GRIP/GISP/NGRIP; Hydrogen peroxide; ISTUK; ISTUK electromechanical drill; Sampling/drilling ice
    Type: Dataset
    Format: text/tab-separated-values, 773 data points
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  • 5
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    Unknown
    PANGAEA
    Publication Date: 2023-06-27
    Keywords: AGE; Ammonium; CFA; Continuous Flow Analysis; DEPTH, ice/snow; Greenland; Greenland Ice Core Projects; GRIP; GRIP/GISP/NGRIP; ISTUK; ISTUK electromechanical drill; Sampling/drilling ice
    Type: Dataset
    Format: text/tab-separated-values, 3617 data points
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  • 6
    Publication Date: 2023-11-25
    Keywords: Age, 14C calibrated; Age, 14C calibrated (Bard, 1993); Age, dated; Age, dated material; Age, dated standard deviation; Calendar age; DEPTH, sediment/rock; North Pacific; PAR87A-10; PC; Piston corer; Reference/source
    Type: Dataset
    Format: text/tab-separated-values, 15 data points
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  • 7
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    PANGAEA
    In:  Supplement to: Nijenhuis, Ivar A; Bosch, Hendrik-Jan; Sinninghe Damsté, Jaap S; Brumsack, Hans-Jürgen; de Lange, Gert J (1999): Organic matter and trace element rich sapropels and black shales: a geochemical comparison. Earth and Planetary Science Letters, 169(3-4), 227-290, https://doi.org/10.1016/S0012-821X(99)00083-7
    Publication Date: 2024-01-09
    Description: A distinct Pliocene eastern Mediterranean sapropel (i-282), recovered from three Ocean Drilling Program (ODP) Leg 160 Sites, has been investigated for its organic and inorganic composition. This sapropel is characterized by high organic carbon (Corg) and trace element contents, and the presence of isorenieratene derivatives. The latter suggests that the base of the photic zone was sulphidic during formation of the sapropel. Combined with evidence of bottom water anoxia (preservation of laminae, high redox-sensitive trace element contents, and the abundance and isotopic composition of pyrite) this leads to the tentative conclusion that almost the entire water column may have been anoxic. This anoxia resulted from high productivity and not from stagnation, because an approximation of the trace element budget during sapropel formation shows that water exchange with the western Mediterranean is needed. Entire water column anoxia has been suggested earlier for several black shales. With regard to the depositional environment and the Corg content, however, only the Cenomanian=Turonian Boundary Event (CTBE) black shales appear to be comparable to this sapropel. The proposed trace element removal mechanism of scavenging and (co-)precipitation in an anoxic water column, is thought to be similar for both types of deposits. The ultimate trace element source for the sapropel, however, is seawater, whereas it is hydrothermal and fluvial input for CTBE black shales (because they have a larger temporal and spatial distribution). Nonetheless, the Corg-rich eastern Mediterranean Pliocene sapropel discussed here may be considered to be a younger analogue of CTBE black shales.
    Keywords: 160-964D; 160-964E; 160-966C; 160-967C; 160-969E; DRILL; Drilling/drill rig; Eastern Basin; Joides Resolution; Leg160; Ocean Drilling Program; ODP
    Type: Dataset
    Format: application/zip, 2 datasets
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  • 8
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    PANGAEA
    In:  Supplement to: Passier, Hilde F; Middelburg, Jack J; de Lange, Gert J; Böttcher, Michael Ernst (1999): Modes of sapropel formation in the eastern Mediterranean: some constraints based on pyrite properties. Marine Geology, 153(1-4), 199-219, https://doi.org/10.1016/S0025-3227(98)00081-4
    Publication Date: 2024-01-09
    Description: Pyrite formation within and directly below sapropels in the eastern Mediterranean was governed by the relative rates of sulphide production and Fe liberation and supply to the organic-rich layers. At times of relatively high [SO4]2- reduction, sulphide could diffuse downward from the sapropel and formed pyrite in underlying sediments. The sources of Fe for pyrite formation comprised detrital Fe and diagenetically liberated Fe(II) from sapropel-underlying sediments. In organic-rich sapropels, input of Fe from the water column via Fe sulphide formation in the water may have been important as well. Rapid pyrite formation at high saturation levels resulted in the formation of framboidal pyrite within the sapropels, whereas below the sapropels slow euhedral pyrite formation at low saturation levels occurred. d34S values of pyrite are -33 per mil to -50 per mil. Below the sapropels d34S is lower than within the sapropels, as a result of increased sulphide re-oxidation at times of relatively high sulphide production and concentration when sulphide could escape from the sediment. The percentage of initially formed sulphide that was re-oxidized was estimated from organic carbon fluxes and burial efficiencies in the sediment. It ranges from 34% to 80%, varying significantly between sapropels. Increased palaeoproductivity as well as enhanced preservation contributed to magnified accumulation of organic matter in sapropels.
    Keywords: 160-967C; 160-969E; BC; Box corer; DRILL; Drilling/drill rig; Eastern Basin; Eastern Mediterranean Sea; Joides Resolution; Leg160; Ocean Drilling Program; ODP; UM26_BC
    Type: Dataset
    Format: application/zip, 3 datasets
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  • 9
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    PANGAEA
    In:  Supplement to: de Verteuil, Laurent (1996): Data Report: Upper Cenozoic dinoflagellate cysts from the continental slope and rise off New Jersey. In: Mountain, GS; Miller, KG; Blum, P; Pag, CE & Twichell, DC (eds.), Proceedings of the Ocean Drilling Program, Scientific Results, College Station, TX (Ocean Drilling Program), 150, 439-454, https://doi.org/10.2973/odp.proc.sr.150.007.1996
    Publication Date: 2024-01-09
    Description: This report contains the occurrence data for dinoflagellate cysts recorded from 163 samples taken from Sites 902 through 906, during Ocean Drilling Program (ODP) Leg 150. The dinoflagellate cyst (dinocyst) stratigraphy has been presented in Mountain, Miller, Blum, et al. (1994, doi:10.2973/odp.proc.ir.150.1994), and was based on these data. This report provides the full dinocyst data set supporting the dinocyst stratigraphic interpretations made in Mountain, Miller, Blum, et al. (1994). For Miocene shipboard dinocyst stratigraphy, I delineated 10 informal zones: pre-A, and A through I, in ascending stratigraphic order. These zones are defined in Shipboard Scientific Party (1994a, doi:10.2973/odp.proc.ir.150.103.1994), and are based on my studies of Miocene dinocyst stratigraphy in the Maryland and Virginia coastal plain (de Verteuil and Norris, 1991, 1992; de Verteuil, 1995). This zonation has been slightly revised (de Verteuil and Norris, 1996), and the new formal zone definitions are repeated below. Each new zone has an alpha-numeric abbreviation starting with "DN" (for Dinoflagellate Neogene). The equivalence between the informal zones reported in Mountain, Miller, Blum, et al. (1994), and the new DN zones is illustrated in Figure 1. For clarity, I delineated both zonations in the range charts that accompany this report (Tables 1-6). De Verteuil and Norris (1996a), using these and other data, correlated the DN zonation with the geological time scale of Berggren et al. (1995). Figure 2 summarizes these correlations and can be used to check the chronostratigraphic position of samples in this report, as determined by dinocyst stratigraphy. A thorough discussion of the basis for, and levels of uncertainty associated with, these correlations to the Cenozoic time scale can be found in de Verteuil and Norris (1996a). The Appendix lists all the dinocyst taxa recorded during shipboard analyses of Leg 150 samples. Open nomenclature is used for undescribed taxa. The range charts and Appendix also include reference to several new taxa that de Verteuil and Norris (1996b) described from Miocene coastal plain strata in Maryland and Virginia. Names of these taxa in Tables 1 through 6 and in the Appendix of this report are not intended for effective publication as defined in the International Code of Botanical Nomenclature (ICBN, Greuter et al., 1994). Therefore, taxonomic nomenclature contained in this report is not to be treated as meeting the conditions of effective and valid publication (ICBN; Article 29).
    Keywords: 150-902A; 150-902C; 150-902D; 150-903A; 150-903C; 150-904A; 150-905A; 150-906A; DRILL; Drilling/drill rig; Joides Resolution; Leg150; Ocean Drilling Program; ODP; South Atlantic Ocean
    Type: Dataset
    Format: application/zip, 6 datasets
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  • 10
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    PANGAEA
    In:  Supplement to: Hoefs, Marcel JL; Versteegh, Gerard J M; Rijpstra, W Irene C; de Leeuw, Jan W; Sinninghe Damsté, Jaap S (1998): Postdepositional oxic degradation of alkenones: Implications for the measurement of palaeo sea surface temperatures. Paleoceanography, 13(1), 42-49, https://doi.org/10.1029/97PA02893
    Publication Date: 2024-01-09
    Description: Free and 'bound' long-chain alkenones (C37:2 and C37:3) in oxidized and unoxidized sections of four organic matter-rich Pliocene and Miocene Madeira Abyssal Plain turbidites (one from Ocean Drilling Program site 951B and three from site 952A) were analyzed to determine the effect of severe post depositional oxidation on the value of Uk'37. The profiles of both alkenones across the redox boundary show a preferential degradation of the C37:3 compared to the C37:2 compound. Because of the high initial Uk'37 values and the way of calculating the Uk'37 this degradation hardly influences the Uk'37 profiles. However, for lower Uk'37 values, measured selective degradation would increase Uk'37 up to 0.17 units, equivalent to 5°C. For most of the Uk'37 band-width, much smaller degradation already increases Uk'37 beyond the analytical error (0.017 units). Consequently, for interpreting the Uk'37 record in terms of past sea surface temperatures, selective degradation needs serious consideration.
    Keywords: Ocean Drilling Program; ODP
    Type: Dataset
    Format: application/zip, 2 datasets
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