Early Jurassic extrinsic solar system dynamics versus intrinsic Earth processes: Toarcian sedimentation and benthic life in deep-sea contourite drift facies, Cardigan Bay Basin, UK

被引:2
作者
Pienkowski, Grzegorz [1 ]
Uchman, Alfred [2 ]
Ninard, Krzysztof [2 ]
Page, Kevin N. [3 ]
Hesselbo, Stephen P. [3 ]
机构
[1] Natl Res Inst, Polish Geol Inst, Rakowiecka 4, PL-00975 Warsaw, Poland
[2] Jagiellonian Univ, Fac Geog & Geol, Gronostajowa 3a, PL-30087 Krakow, Poland
[3] Univ Exeter, Dept Earth & Environm Sci, Penryn Campus, Exeter TR10 9FE, Cornwall, England
关键词
Hemipelagic contourites; Deep sea circulation; Climate; Trace fossils; Orbital forcing; Toarcian astrochronology; OCEANIC ANOXIC EVENT; SOUTH CHINA SEA; CARBON-ISOTOPE EXCURSION; MOCHRAS FARM BOREHOLE; TRACE FOSSILS; SEQUENCE STRATIGRAPHY; PHYCOSIPHON-INCERTUM; BOTTOM CURRENTS; ENVIRONMENTAL-CHANGES; SEAWATER TEMPERATURE;
D O I
10.1186/s40645-024-00612-3
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
The Cardigan Bay Basin (UK) may have functioned as a deep and narrow strait, and thereby influenced Early Jurassic oceanic circulation through the northern and southern Laurasian Seaway, and between Boreal and Peri-Tethys domains. Toarcian hemipelagic deposits of the basin in the Mochras borehole show strongly bioturbated contourite facies. Trace fossils are strongly dominated by Phycosiphon incertum (represented by four morphotypes), which was produced by opportunistic colonizers. Thalassinoides, Schaubcylindrichnus and Trichichnus are common (the latter is a deep-tier trace fossil produced by filamentous sulfide-oxidizing bacteria with a high tolerance for dysoxia), accompanied by less common Zoophycos, Planolites, Palaeophycus, Teichichnus, Rhizocorallium, Chondrites, and dwelling and resting structures, such as cf. Polykladichnus, Siphonichnus, Skolithos, Arenicolites, Monocraterion and Lockeia. Ichnological and lithological signals suggest repetitive fluctuations in benthic conditions attributed to a hierarchy of orbital cycles (precession and obliquity [4th order], short eccentricity [3rd order], long eccentricity [2nd order] and Earth-Mars secular resonance [1st order]). The Pliensbachian-Toarcian transition appears to be a significant palaeoceanographic turning point in the Cardigan Bay Basin, starting a CaCO3 decline, and with the most severe oxygen crisis of the Tenuicostatum Zone (here dysoxic but not anoxic) ending at the onset, in the early Serpentinum Zone (Exaratum Subzone), of the Toarcian negative carbon isotope excursion (To-CIE-linked with the Toarcian Oceanic Anoxic Event occurring in the lower part in the Serpentinum Zone). This trend contrasts with the prevalence of anoxia synchronous with the To-CIE in many other settings. Minor dysoxia returned to the Mochras setting in the latest Thouarsense to Dispansum zone interval. Extreme climate warming during the To-CIE may have enhanced and caused a reversal in the direction of deep marine circulation, improving oxygenation of the sea floor. Spectral analysis of binary data on ichnotaxa appearances gives high confidence in orbital signals and allows refined estimation of ammonite zones and the duration of the Toarcian (minimum similar to 9.4 Myr).
引用
收藏
页数:34
相关论文
共 237 条
[91]  
Huang C., 2018, Astronomical time scale for the mesozoic, P81, DOI [10.1016/bs.sats.2018.08.005, DOI 10.1016/BS.SATS.2018.08.005]
[92]   Pacing of the Toarcian Oceanic Anoxic Event (Early Jurassic) from astronomical correlation of marine sections [J].
Huang, Chunju ;
Hesselbo, Stephen P. .
GONDWANA RESEARCH, 2014, 25 (04) :1348-1356
[93]   Organic carbon burial is paced by a ∼173-ka obliquity cycle in the middle to high latitudes [J].
Huang, He ;
Gao, Yuan ;
Ma, Chao ;
Jones, Matthew M. ;
Zeeden, Christian ;
Ibarra, Daniel E. ;
Wu, Huaichun ;
Wang, Chengshan .
SCIENCE ADVANCES, 2021, 7 (28)
[94]  
Hüneke H, 2008, DEVEL SEDIM, V60, P323, DOI 10.1016/S0070-4571(08)00217-3
[95]   Reconstruction of the chaotic behavior of the Solar System from geologic records [J].
Ikeda, Masayuki ;
Tada, Ryuji .
EARTH AND PLANETARY SCIENCE LETTERS, 2020, 537 (537)
[96]   Carbon cycle dynamics linked with Karoo-Ferrar volcanism and astronomical cycles during Pliensbachian-Toarcian (Early Jurassic) [J].
Ikeda, Masayuki ;
Hori, Rie S. ;
Ikehara, Minoru ;
Miyashita, Ren ;
Chino, Masashi ;
Yamada, Kazuyoshi .
GLOBAL AND PLANETARY CHANGE, 2018, 170 :163-171
[97]   Long period astronomical cycles from the Triassic to Jurassic bedded chert sequence (Inuyama, Japan); Geologic evidences for the chaotic behavior of solar planets [J].
Ikeda, Masayuki ;
Tada, Ryuji .
EARTH PLANETS AND SPACE, 2013, 65 (04) :351-360
[98]   Utility of Geochemical Analysis of Trace Fossils: Case Studies Using Phycosiphon incertum from the Lower Jurassic Shallow-Marine (Higashinagano Formation, Southwest Japan) and Pliocene Deep-Marine Deposits (Shiramazu Formation, Central Japan) [J].
Izumi, Kentaro .
ICHNOS-AN INTERNATIONAL JOURNAL FOR PLANT AND ANIMAL TRACES, 2014, 21 (01) :62-72
[99]   Contourite facies model: Improving contourite characterization based on the ichnological analysis [J].
Javier Rodriguez-Tovar, Francisco ;
Javier Hernandez-Molina, Francisco ;
Hueneke, Heiko ;
Llave, Estefania ;
Stow, Dorrik .
SEDIMENTARY GEOLOGY, 2019, 384 :60-69
[100]   Palaeoenvironment of Eocene prodelta in Spitsbergen recorded by the trace fossil Phycosiphon incertum [J].
Javier Rodriguez-Tovar, Francisco ;
Nagy, Jeno ;
Reolid, Matias .
POLAR RESEARCH, 2014, 33