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  • Data  (22)
  • 2000-2004  (22)
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  • 1
    Publication Date: 2023-07-10
    Keywords: 43-384; Acarinina coalingensis; Acarinina mckannai; Acarinina nitida; Acarinina soldadoensis; Acarinina strabocella; Acarinina subsphaerica; Counting 〉63 µm fraction; Deep Sea Drilling Project; DRILL; Drilling/drill rig; DSDP; DSDP/ODP/IODP sample designation; Eoglobigerina edita; Eoglobigerina eobulloides; Foraminifera, planktic indeterminata; Globanomalina chapmani; Globanomalina compressa; Globanomalina ehrenbergii; Globanomalina imitata; Globanomalina planocompressa; Globanomalina pseudoimitata; Globanomalina pseudomenardii; Globoconusa daubjergensis; Globotruncanidae; Glomar Challenger; Hedbergella spp.; Heterohelicidae; Igorina albeari; Igorina pusilla; Igorina tadjikistanensis; Igorina trichotrocha; Leg43; Morozovella acuta; Morozovella aequa; Morozovella angulata; Morozovella apanthesma; Morozovella conicotruncata; Morozovella occlusa; Morozovella pasionensis; Morozovella praeangulata; Morozovella velascoensis; North Atlantic/RIDGE; Parasubbotina pseudobulloides; Parasubbotina varianta; Parasubbotina variospira; Praemurica inconstans; Praemurica pseudoinconstans; Praemurica quadrilocula; Praemurica spiralis; Praemurica taurica; Praemurica uncinata; Sample code/label; Subbotina patagonica; Subbotina triangularis; Subbotina triloculinoides; Subbotina trivialis; Subbotina velascoensis
    Type: Dataset
    Format: text/tab-separated-values, 768 data points
    Location Call Number Expected Availability
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  • 2
    Publication Date: 2023-07-10
    Keywords: 43-384; Acarinina coalingensis; Acarinina mckannai; Acarinina nitida; Acarinina soldadoensis; Acarinina strabocella; Acarinina subsphaerica; Counting 〉63 µm fraction; Deep Sea Drilling Project; DRILL; Drilling/drill rig; DSDP; DSDP/ODP/IODP sample designation; Eoglobigerina edita; Eoglobigerina eobulloides; Foraminifera, planktic; Foraminifera, planktic indeterminata; Globanomalina chapmani; Globanomalina compressa; Globanomalina ehrenbergii; Globanomalina imitata; Globanomalina planocompressa; Globanomalina pseudoimitata; Globanomalina pseudomenardii; Globoconusa daubjergensis; Globotruncanidae; Glomar Challenger; Hedbergella spp.; Heterohelicidae; Igorina albeari; Igorina pusilla; Igorina tadjikistanensis; Igorina trichotrocha; Leg43; Morozovella acuta; Morozovella aequa; Morozovella angulata; Morozovella apanthesma; Morozovella conicotruncata; Morozovella occlusa; Morozovella pasionensis; Morozovella praeangulata; Morozovella pseudobulloides; Morozovella velascoensis; North Atlantic/RIDGE; Parasubbotina varianta; Parasubbotina variospira; Praemurica inconstans; Praemurica pseudoinconstans; Praemurica quadrilocula; Praemurica spiralis; Praemurica taurica; Praemurica uncinata; Sample code/label; Subbotina patagonica; Subbotina triangularis; Subbotina triloculinoides; Subbotina trivialis; Subbotina velascoensis
    Type: Dataset
    Format: text/tab-separated-values, 784 data points
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  • 3
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    PANGAEA
    In:  Supplement to: Quillévéré, Frédéric; Aubry, Marie-Pierre; Norris, Richard D; Berggren, William A (2002): Paleocene oceanography of the eastern subtropical Indian Ocean. An integrated magnetobiostratigraphic and stable isotope study of ODP Hole 761B (Wombat Plateau). Palaeogeography, Palaeoclimatology, Palaeoecology, 184(3-4), 371-405, https://doi.org/10.1016/S0031-0182(02)00275-4
    Publication Date: 2024-01-09
    Description: Surface and deep water circulation patterns in the eastern Indian Ocean during the Paleocene Epoch are inferred based on an integrated magnetobiostratigraphic and stable isotope investigation of Ocean Drilling Program Hole 761B, drilled on the Wombat Plateau. A combination of magnetostratigraphy, biostratigraphy and isotope stratigraphy demonstrates that numerous deep sea sites that have been considered to show continuous, or nearly continuous sedimentation through the Paleocene are punctuated by a series of hiatuses, some of which exceeding a duration of 1 Myr. Therefore, our study is based on a detailed temporal interpretation of the stratigraphic successions we used for paleoceanographic reconstructions. We compare detailed planktonic and benthic foraminiferal carbon and oxygen isotope records from Hole 761B with several temporally correlative records published from different oceanic provinces in order to distinguish between local and global patterns within the eastern Indian Ocean. Although Site 761 was situated at low latitudes during the Paleocene, its surface waters were predominantly influenced by circulation originating from the Southern Ocean as indicated by inferred cool sea surface temperatures and reduced surface to deep water temperature gradients. We suggest that deep waters in the eastern Indian Ocean were not directly fed by the Southern or Tethys Oceans. Rather, the more negative delta13C composition of the bottom waters recorded by benthic foraminifera implies the presence and/or active contribution of aged deep waters from the Pacific during this time, at least prior to ~60.2 Ma and subsequent to ~59.0 Ma. The Indian continent, Ninetyeast Ridge, Kerguelen Plateau and Broken Ridge may have played a significant role as submarine barriers to deep water circulation during the Paleocene.
    Keywords: 113-690; 122-761B; 86-577; COMPCORE; Composite Core; Deep Sea Drilling Project; DRILL; Drilling/drill rig; DSDP; Glomar Challenger; Joides Resolution; Leg113; Leg122; Leg86; North Pacific; Ocean Drilling Program; ODP; South Atlantic Ocean; South Indian Ridge, South Indian Ocean
    Type: Dataset
    Format: application/zip, 8 datasets
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  • 4
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    PANGAEA
    In:  Supplement to: Huber, Brian T; Norris, Richard D; MacLeod, Kenneth G (2002): Deep-sea paleotemperature record of extreme warmth during the Cretaceous. Geology, 30(2), 123-126, https://doi.org/10.1130/0091-7613(2002)030%3C0123:DSPROE%3E2.0.CO;2
    Publication Date: 2024-01-09
    Description: Oxygen isotope analyses of well-preserved foraminifera from Blake Nose (30°N paleolatitude, North Atlantic) and globally distributed deep-sea sites provide a long-term paleotemperature record for the late Albian-Maastrichtian interval that is difficult to reconcile with the existence of significant Cretaceous ice sheets. Given reasonable assumptions about the isotopic composition of Cretaceous seawater, our results suggest that middle bathyal water temperatures at Blake Nose increased from ~12°C in the late Albian through middle Cenomanian to a maximum of 20°C during the latest Cenomanian and earliest Turonian. Bottom waters were again ~12°C during the middle Campanian and cooled to a minimum of 9°C during the Maastrichtian. Correlative middle bathyal foraminifera from other ocean basins yield paleotemperature estimates that are very similar to those from Blake Nose. Comparison of global bottom-water temperatures and latitudinal thermal gradients suggests that global climate changed from a warm greenhouse state during the late Albian through late Cenomanian to a hot greenhouse phase during the latest Cenomanian through early Campanian, then to cool greenhouse conditions during the mid-Campanian through Maastrichtian.
    Keywords: 171-1049; 171-1050; 32-305; 62-463; Blake Nose, North Atlantic Ocean; COMPCORE; Composite Core; DRILL; Drilling/drill rig; Glomar Challenger; Joides Resolution; Leg171B; Leg32; Leg62; North Pacific/CONT RISE; North Pacific/SEAMOUNT; Ocean Drilling Program; ODP
    Type: Dataset
    Format: application/zip, 4 datasets
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  • 5
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    PANGAEA
    In:  Supplement to: Röhl, Ursula; Norris, Richard D; Ogg, James G (2003): Cyclostratigraphy of upper Paleocene and late Eocene sediments at Blake Nose Site 1051 (western North Atlantic). In: Gingerich, P, Schmitz, B, Thomas, E, & Wing, S (eds.) Causes and Consequences of Globally Warm Climates in the Early Paleogene, Geological Society of America (GSA) Special Paper Series, 369, 567-588, https://doi.org/10.1130/0-8137-2369-8.567
    Publication Date: 2024-01-09
    Description: Upper Paleocene to lower Eocene sediments drilled at Ocean Drilling Program (ODP) Site 1051 (Blake Nose, off Florida) display well-defined orbital cycles, a detailed magnetic stratigraphy, and a suite of planktonic foraminiferal datums. We derived a cyclostratigraphy by using spectral analysis of high-resolution records of elemental concentrations obtained by an X-ray fluorescence (XRF) Core Scanner. XRF counts of iron serve as a proxy for the relative amount of terrestrial material. Sliding-window spectral analysis, bandpass filtering, and direct counting of precession and obliquity cycles yield minimum durations for magnetic polarity chrons C22 to C26 (~49 to ~61 Ma), calculations of sediment accumulation rates, as well as constraints on the timing of biostratigraphic and climatological events in the vicinity of the Initial Eocene Thermal Maximum (IETM). Durations of polarity chrons as represented in sediments drilled at Site 1051 were estimated using a conservative assignment of 41 k.y. for obliquity cycles and 21 k.y. for precession cycles. Combined polarity chrons C26r and C26n span 3.61 m.y., and chron C25r spans 1.07 m.y. Polarity chron C24r is estimated as 2.877 m.y. The interpretation of polarity chron C24n is ambiguous, but its duration is probably 〈1.23 m.y. Polarity chron C23r spans 0.53 m.y., chron C23n is 0.74 m.y., and chron C22r is 0.9 m.y. Spectral analysis through this interval indicates that spectral peaks shift through time and are related to changes in sedimentation rate in Site 1051. The sedimentation rates dramatically increased ~200 k.y. after the IETM and remained high for most of chron C24r.
    Keywords: Ocean Drilling Program; ODP
    Type: Dataset
    Format: application/zip, 2 datasets
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  • 6
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    Unknown
    PANGAEA
    In:  Supplement to: Erbacher, Jochen; Huber, Brian T; Norris, Richard D; Markey, Molly (2000): Increased thermohaline stratification as a possible cause for an ocean anoxic event in the Cretaceous period. Nature, 409(6818), 325-327, https://doi.org/10.1038/35053041
    Publication Date: 2024-01-09
    Description: Ocean anoxic events were periods of high carbon burial that led to drawdown of atmospheric carbon dioxide, lowering of bottom-water oxygen concentrations and, in many cases, significant biological extinction (Arthur et al., 1990; Erbacher et al., 1996, doi:10.1130/0091-7613(1996)024〈0499:EPORAO〉2.3.CO;2; Kuypers et al., 1999, doi:10.1038/20659; Jenkyns, 1997; Hochuli et al., 1999, doi:10.1130/0091-7613(1999)027〈0657:EOHPAC〉2.3.CO;2). Most ocean anoxic events are thought to be caused by high productivity and export of carbon from surface waters which is then preserved in organic-rich sediments, known as black shales. But the factors that triggered some of these events remain uncertain. Here we present stable isotope data from a mid-Cretaceous ocean anoxic event that occurred 112 Myr ago, and that point to increased thermohaline stratification as the probable cause. Ocean anoxic event 1b is associated with an increase in surface-water temperatures and runoff that led to decreased bottom-water formation and elevated carbon burial in the restricted basins of the western Tethys and North Atlantic. This event is in many ways similar to that which led to the more recent Plio-Pleistocene Mediterranean sapropels, but the greater geographical extent and longer duration (~46 kyr) of ocean anoxic event 1b suggest that processes leading to such ocean anoxic events in the North Atlantic and western Tethys were able to act over a much larger region, and sequester far more carbon, than any of the Quaternary sapropels.
    Keywords: 171-1049C; Blake Nose, North Atlantic Ocean; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Gyroidinoides nitidus, δ13C; Gyroidinoides nitidus, δ13C, standard deviation; Gyroidinoides nitidus, δ18O; Gyroidinoides nitidus, δ18O, standard deviation; Hedbergella aff. trocoidea, δ13C; Hedbergella aff. trocoidea, δ13C, standard deviation; Hedbergella aff. trocoidea, δ18O; Hedbergella aff. trocoidea, δ18O, standard deviation; Hedbergella speetonensis, δ13C; Hedbergella speetonensis, δ13C, standard deviation; Hedbergella speetonensis, δ18O; Hedbergella speetonensis, δ18O, standard deviation; Isotope ratio mass spectrometry; Joides Resolution; Leg171B; Ocean Drilling Program; ODP; Osangularia schloenbachi, δ13C; Osangularia schloenbachi, δ13C, standard deviation; Osangularia schloenbachi, δ18O; Osangularia schloenbachi, δ18O, standard deviation; Sample code/label
    Type: Dataset
    Format: text/tab-separated-values, 398 data points
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  • 7
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    PANGAEA
    In:  Supplement to: Nishi, Hiroshi; Norris, Richard D; Okada, Hisatake (2000): Paleoceanographic changes in the dynamics of subtropical Atlantic surface conditions at Hole 997A. In: Paull, CK; Matsumoto, R; Wallace, PJ; Dillon, WP (eds.) Proceedings of the Ocean Drilling Program, Scientific Results, College Station, TX (Ocean Drilling Program), 164, 1-21, https://doi.org/10.2973/odp.proc.sr.164.229.2000
    Publication Date: 2024-01-09
    Description: Hole 997A was drilled during Leg 164 of the Ocean Drilling Program at a depth of 2770 m on the topographic crest of the Blake Ridge in the western Atlantic Ocean. We report here an analysis of the faunal assemblages of planktonic foraminifers in a total of 91 samples (0.39-91.89 mbsf interval) spanning the last 2.15 m.y., latest Pliocene to Holocene. The abundant species, Globigerinoides ruber, Globigerinoides sacculifer, Neogloboquadrina dutertrei, Globorotalia inflata, and Globigerinita glutinata together exceed over ~70% of the total fauna. Each species exhibits fluctuations with amplitudes of 10%-20% or more. Despite their generally low abundance, the distinct presence/absence behavior of the Globorotalia menardii group is almost synchronous with glacial-interglacial climate cycles during the upper part of Brunhes Chron. The quantitative study and factor analysis of planktonic foraminiferal assemblages shows that the planktonic foraminiferal fauna in Hole 997A consists of four groups: warm water, subtropical gyre (mixed-layer species), gyre margin (thermocline/upwelling species), and subpolar assemblages. The subtropical gyre assemblage dominates throughout the studied section, whereas the abundance of gyre margin taxa strongly control the overall variability in faunal abundance at Site 997. In sediments older than the Olduvai Subchron, the planktonic foraminiferal faunas are characterized by fluctuations in both the subtropical gyre and gyre margin assemblages, similar to those in the Brunhes Chron. The upwelling/gyre margin fauna increased in abundance just before the Jaramillo Subchron and was dominant between 0.7 and 1.07 Ma. The transition from this gyre margin-dominated assemblage to an increase in abundance of the subtropical gyre and gyre margin species occurred around 0.7 Ma, near the Brunhes/Matuyama boundary. The presence of low-oxygen-tolerant benthic foraminifers, pyrite tubes, and abundant diatoms below the Brunhes/Matuyama boundary suggests decreased oxygenation of intermediate waters and more upwelling over the Blake-Bahama Outer Ridge, perhaps because of weaker Upper North Atlantic Deep Water ventilation. The changes in the relative composition of foraminifer assemblages took place at least twice, around 700 and 1000 ka, close to the ~930-ka switch from obliquity-forced climate variation to the 100-k.y. eccentricity cycle. The climate shift at 700 ka suggests a transition from relatively warmer conditions in the early Pleistocene to warm-cool oscillations in the Brunhes Chron.
    Keywords: 164-997A; Aliquot value; Beella digitata; Bolliella calida; Candeina nitida; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Foraminifera, planktic; Globigerina bulloides; Globigerina cf. foliata; Globigerina decoraperta; Globigerina falconensis; Globigerina quinqueloba; Globigerina rubescens; Globigerina umbilicata; Globigerinella aequilateralis; Globigerinita glutinata; Globigerinoides conglobatus; Globigerinoides extremus; Globigerinoides obliquus; Globigerinoides quadrilobatus; Globigerinoides ruber; Globigerinoides sacculifer; Globigerinoides tenellus; Globoquadrina conglomerata; Globorotalia aff. cavernula; Globorotalia bermudezi; Globorotalia crassaformis; Globorotalia crassula; Globorotalia exilis; Globorotalia fimbriata; Globorotalia hessi; Globorotalia hirsuta; Globorotalia incisa; Globorotalia inflata; Globorotalia menardii; Globorotalia puncticulata; Globorotalia ronda; Globorotalia scitula; Globorotalia tosaensis; Globorotalia truncatulinoides; Globorotalia tumida; Globorotalia ungulata; Globorotalia viola; Globorotalia wilesi; Globorotaloides hexagonus; Hastigerina pelagica; Joides Resolution; Leg164; Neogloboquadrina cf. dutertrei; Neogloboquadrina dutertrei; Neogloboquadrina pachyderma; Neogloboquadrina pseudopima; Nicaraguan Rise, North Atlantic Ocean; Ocean Drilling Program; ODP; Orbulina bilobata; Orbulina universa; Pulleniatina obliquiloculata; Pulleniatina primalis; Sample code/label; Sphaeroidinella dehiscens
    Type: Dataset
    Format: text/tab-separated-values, 5005 data points
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  • 8
    Publication Date: 2024-01-09
    Keywords: 86-577; Age model; Age model, Berggren et al (1995) BKSA95; Ageprofile Datum Description; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Glomar Challenger; Leg86; North Pacific; Ocean Drilling Program; ODP; Sample code/label; Sample code/label 2
    Type: Dataset
    Format: text/tab-separated-values, 162 data points
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  • 9
    Publication Date: 2024-01-09
    Keywords: 122-761B; Age model; Age model, Berggren et al (1995) BKSA95; Ageprofile Datum Description; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Joides Resolution; Leg122; Ocean Drilling Program; ODP; Sample code/label; Sample code/label 2; South Indian Ridge, South Indian Ocean
    Type: Dataset
    Format: text/tab-separated-values, 171 data points
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  • 10
    Publication Date: 2024-01-09
    Keywords: 113-690; Age model; Age model, Berggren et al (1995) BKSA95; Age model, optional; Age model, paleomag, Berggren et al (1985); COMPCORE; Composite Core; DEPTH, sediment/rock; DSDP/ODP/IODP sample designation; Joides Resolution; Leg113; Ocean Drilling Program; ODP; Sample code/label; South Atlantic Ocean
    Type: Dataset
    Format: text/tab-separated-values, 384 data points
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