Integrated Paleocene calcareous plankton magnetobiochronology of DSDP Hole 43-384 in the Northwest Atlantic Ocean


Autoria(s): Berggren, William A; Aubry, Marie-Pierre; van Fossen, M; Kent, Dennis V; Norris, Richard D; Quillévéré, Frédéric
Cobertura

LATITUDE: 40.360800 * LONGITUDE: -51.663300 * DATE/TIME START: 1975-07-12T00:00:00 * DATE/TIME END: 1975-07-12T00:00:00

Data(s)

30/09/2000

Resumo

At Deep Sea Drilling Site 384 (J-Anomaly Ridge, Grand Banks Continental Rise, NW Atlantic Ocean) Paleocene nannofossil chalks and oozes (~70 m thick) are unconformably/disconformably underlain (~168 m; upper Maastrichtian) and overlain (~98.7 m; upper lower Eocene) by sediments of comparable lithologies. The chalks are more indurated in stratigraphically higher levels of the Paleocene reflecting increasing amounts of biosiliceous (radiolarians and diatoms) components. This site serves as an excellent location for an integrated calcareous and siliceous microfossil zonal stratigraphy and stable isotope stratigraphy. We report the results of a magnetostratigraphic study which, when incorporated with published magnetostratigraphic results, reveals an essentially complete magnetostratigraphic record spanning the interval from Magnetochron C31n (late Maastrichtian) to C25n (partim) (late Paleocene, Thanetian). Integrated magnetobiochronology and stable isotope stratigraphy support the interpretation of, and constrain the estimated duration of, a short hiatus (~0.9 my) within the younger part of Chron C29r (including the K/P boundary) and an ~6 my hiatus separating upper Paleocene (Magnetozone C25n) and upper lower Eocene (Magnetozone C22r) sediments. Some 30 planktonic foraminiferal datum levels [including the criteria used to denote the Paleocene planktonic foraminiferal (sub)tropical zonal scheme of Berggren and Miller, Micropaleontology 34 (4) (1988) 362-380 and Berggren et al., SEPM Spec. Publ. 54 (1995) 129-212, Geol. Soc. Am. Bull. 107 (11) (1995) 1272-1287], and nearly two dozen calcareous nannoplankton datum levels have been recognized and calibrated to the magnetochronology. Planktonic foraminiferal Subzones P4a and P4b of (upper Paleocene) Zone P4 are emended/redefined based on the discovery of a longer stratigraphic extension of Acarinina subsphaerica (into at last Magnetozone C25n). Stable isotope stratigraphies from benthic foraminifera and fine fraction (<38 µm) carbonate have been calibrated to the biochronology and magnetostratigraphy. A minimum in benthic foraminifer delta13C was reached near the Danian/Selandian boundary (within Chron C26r, planktonic foraminiferal Zone P3a and calcareous nannoplankton Zone NP4) and is followed by the rise to maximum delta13C values in the late Thanetian (near the base of C25n, in Zone P4c and NP9a, respectively) that can be used for global correlation in the Paleocene.

Formato

application/zip, 8 datasets

Identificador

https://doi.pangaea.de/10.1594/PANGAEA.704847

doi:10.1594/PANGAEA.704847

Idioma(s)

en

Publicador

PANGAEA

Direitos

CC-BY: Creative Commons Attribution 3.0 Unported

Access constraints: unrestricted

Fonte

Supplement to: Berggren, William A; Aubry, Marie-Pierre; van Fossen, M; Kent, Dennis V; Norris, Richard D; Quillévéré, Frédéric (2000): Integrated Paleocene calcareous plankton magnetobiochronology and stable isotope stratigraphy: DSDP Site 384 (NW Atlantic Ocean). Palaeogeography, Palaeoclimatology, Palaeoecology, 159(1-2), 1-51, doi:10.1016/S0031-0182(00)00031-6

Palavras-Chave #43-384; A. coalingensis; A. mckannai; A. nitida; A. soldadoensis; A. strabocella; A. subsphaerica; Acarinina coalingensis; Acarinina mckannai; Acarinina nitida; Acarinina soldadoensis; Acarinina strabocella; Acarinina subsphaerica; AF1, range of AF demagnetization steps used for isolation of magnetization component; AF2, range of AF demagnetization steps used for isolation of magnetization component; Age, error; Age e; Age model; Age model, GPTS (geomagnetic polarity timescale), Cande and Kent (1995); Age model, optional; Age model, paleomag, Berggren et al (1985); Age model, paleomag, Cande and Kent (1992); Age model opt; Ageprof dat des; Ageprofile Datum Description; Aubry, this work; Berggren et al. (1995 = BKSA95) time skale; Chronozone; Comment; Counting >63 µm fraction; Decl (AF); Deep Sea Drilling Project; delta (m) = uncertainty in the depth of magnetozone boundary based on sampling interval; Demagnetization step; Demag step; Depth; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Depth bot; Depth top; DRILL; Drilling/drill rig; DSDP; E. edita; E. eobulloides; Eoglobigerina edita; Eoglobigerina eobulloides; FAD = earliest/oldest temporal occurrence, LAD = latest/youngest temporal occurrence, LCO = latest common occurrence; Foraminifera, planktic; Foraminifera, planktic indeterminata; Foram plankt; Foram plankt indet; G. chapmani; G. compressa; G. daubjergensis; G. ehrenbergii; G. imitata; G. planocompressa; G. pseudoimitata; G. pseudomenardii; Globanomalina chapmani; Globanomalina compressa; Globanomalina ehrenbergii; Globanomalina imitata; Globanomalina planocompressa; Globanomalina pseudoimitata; Globanomalina pseudomenardii; Globoconusa daubjergensis; Globotruncanidae; Glomar Challenger; Hedbergella spp.; Heterohelicidae; I. albeari; I. pusilla; I. tadjikistanensis; I. trichotrocha; Igorina albeari; Igorina pusilla; Igorina tadjikistanensis; Igorina trichotrocha; Incl (AF); Inten (AF); Label 2; Leg43; M. acuta; M. aequa; M. angulata; M. apanthesma; M. conicotruncata; M. occlusa; M. pasionensis; M. praeangulata; M. pseudobulloides; M. velascoensis; Magnetometer, cryogenic; magnitude of least-squares magnetization; Morozovella acuta; Morozovella aequa; Morozovella angulata; Morozovella apanthesma; Morozovella conicotruncata; Morozovella occlusa; Morozovella pasionensis; Morozovella praeangulata; Morozovella pseudobulloides; Morozovella velascoensis; Nannofossil zone; Nannofossil Zone; Martini, 1971; Nannos zone; No; North Atlantic/RIDGE; NRM, Declination after demagnetisation; NRM, Inclination after demagnetisation; NRM, Intensity after demagnetization; Number; number of demagnetization data used in each least-squares analysis; O = onset, T = termination; ODP sample designation; of the least-squares magnetization; Okada and Thierstein (1979); ORDINAL NUMBER; Ord No; P. inconstans; P. pseudobulloides; P. pseudoinconstans; P. quadrilocula; P. spiralis; P. taurica; P. uncinata; P. varianta; P. variospira; Parasubbotina pseudobulloides; Parasubbotina varianta; Parasubbotina variospira; Plank foram zone; Planktonic foraminifera zone; Praemurica inconstans; Praemurica pseudoinconstans; Praemurica quadrilocula; Praemurica spiralis; Praemurica taurica; Praemurica uncinata; S. patagonica; S. triangularis; S. triloculinoides; S. trivialis; S. velascoensis; Sample code/label; Sample code/label 2; Sense, N = normal, R = reverse; Standard error; Std e; Subbotina patagonica; Subbotina triangularis; Subbotina triloculinoides; Subbotina trivialis; Subbotina velascoensis; This work; total variance in the selected data range accounted for by the least-squares vector; Var; Variance; Zonal marker, LO = lowest occurrence, HO = highest occurrence
Tipo

Dataset