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Climatic and palaeoceanographic changes during the Pliensbachian (Early Jurassic) inferred from clay mineralogy and stable isotope (C-O) geochemistry (NW Europe)

机译:由黏土矿物学和稳定同位素(C-O)地球化学推断出的普林斯巴赫(侏罗纪早期)的气候和古海洋学变化(欧洲西北)

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摘要

The Early Jurassic was broadly a greenhouse climate period that was punctuated by short warm and cold climatic events, positive and negative excursions of carbon isotopes, and episodes of enhanced organic matter burial. Clay minerals from Pliensbachian sediments recovered from two boreholes in the Paris Basin, are used here as proxies of detrital supplies, runoff conditions, and palaeoceanographic changes. The combined use of these minerals with stable isotope data (C-O) from bulk carbonates and organic matter allows palaeoclimatic reconstructions to be refined for the Pliensbachian. Kaolinite/illite ratio is discussed as a reliable proxy of the hydrological cycle and runoff from landmasses. Three periods of enhanced runoff are recognised within the Pliensbachian. The first one at the Sinemurian-Pliensbachian transition shows a significant increase of kaolinite concomitant with the negative carbon isotope excursion at the so-called Sinemurian Pliensbachian Boundary Event (SPBE). The Early/Late Pliensbachian transition was also characterised by more humid conditions. This warm interval is associated with a major change in oceanic circulation during the Davoei Zone, likely triggered by sea-level rise; the newly created palaeogeography, notably the flooding of the London-Brabant Massif, allowed boreal detrital supplies, including kaolinite and chlorite, to be exported to the Paris Basin. The last event of enhanced runoff occurred during the late Pliensbachian (Subnodosus Subzone of the Margaritatus Zone), which occurred also during a warm period, favouring organic matter production and preservation. Our study highlights the major role of the London Brabant Massif in influencing oceanic circulation of the NW European area, as a topographic barrier (emerged lands) during periods of lowstand sea-level and its flooding during period of high sea-level. This massif was the unique source of smectite in the-Paris Basin. Two episodes of smectite-rich sedimentation ('smectite events'), coincide with regressive intervals, indicating emersion of the London Brabant Massif and thus suggesting that an amplitude of sea-level change high enough to be linked to glacio-eustasy. This mechanism is consistent with sedimentological and geochemical evidences of continental ice growth notably during the Latest Pliensbachian (Spinatum Zone), and possibly during the Early Pliensbachian (late Jamesoni/early Ibex Zones). (C) 2017 Elsevier B.V. All rights reserved.
机译:侏罗纪早期大致是一个温室气候时期,其间短暂的温暖和寒冷的气候事件,碳同位素的正负偏移和有机物埋藏的增加都使这一时期更为明显。从巴黎盆地的两个钻孔中回收的普林斯巴赫沉积物中的粘土矿物在这里用作碎屑物,径流条件和古海洋学变化的代理。这些矿物与来自大量碳酸盐和有机物的稳定同位素数据(C-O)的组合使用,可以使Pliensbachian古气候重建得以完善。讨论了高岭石/伊利石比作为水文循环和陆源径流的可靠代表。在普林斯巴赫流域内,径流增加了三个时期。 Sinemurian-Pliensbachian相变的第一个结果显示,在所谓的Sinemurian Pliensbachian边界事件(SPBE)处,高岭石显着增加,同时负碳同位素偏移也随之增加。早/晚普林斯巴赫式过渡的特征还在于潮湿的条件。这个温暖的间隔与达沃伊地区期间海洋环流的重大变化有关,很可能是海平面上升引起的;新近创建的古地理,尤其是伦敦-布拉邦断层块的洪水,使包括高岭石和绿泥石在内的北方碎屑物能出口到巴黎盆地。径流增加的最后一个事件发生在Pliensbachian晚期(玛格丽塔图斯地区的亚热带亚分区),这也发生在温暖的时期,有利于有机物的生产和保存。我们的研究强调了伦敦布拉本特地块在影响西北欧洲地区的海洋环流中的主要作用,它是低位海平面时期的地形障碍(新兴土地),高位海平面时期的洪水。该地块是巴黎盆地中蒙脱石的独特来源。富集蒙皂石的两次沉积(“蒙脱石事件”)与回归间隔相吻合,表明伦敦布拉本特地块的出现,因此表明海平面变化的幅度足够高,可以与冰川洋成因联系在一起。这种机制与大陆冰生长的沉积学和地球化学证据是一致的,特别是在最近的普林斯巴赫(Spinatum区)期间,以及可能在普林斯巴赫早期(Jamesoni /伊贝克斯早期地区)期间。 (C)2017 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Global and planetary change》 |2017年第2期|139-152|共14页
  • 作者单位

    Univ Bourgogne FrancheComte, UMR CNRS 6282 Biogeosciences, 6 Blvd Gabriel, F-21000 Dijon, France;

    Univ Bourgogne FrancheComte, UMR CNRS 6282 Biogeosciences, 6 Blvd Gabriel, F-21000 Dijon, France;

    Univ Bourgogne FrancheComte, UMR CNRS 6282 Biogeosciences, 6 Blvd Gabriel, F-21000 Dijon, France;

    Univ Exeter, Environm & Sustainabil Inst, Camborne Sch Mines, Penryn TRW 9EZ, England;

    Univ Bourgogne FrancheComte, UMR CNRS 6282 Biogeosciences, 6 Blvd Gabriel, F-21000 Dijon, France;

    Univ Bourgogne FrancheComte, UMR CNRS 6282 Biogeosciences, 6 Blvd Gabriel, F-21000 Dijon, France;

    Univ Bourgogne FrancheComte, UMR CNRS 6282 Biogeosciences, 6 Blvd Gabriel, F-21000 Dijon, France;

    Univ Bourgogne FrancheComte, UMR CNRS 6282 Biogeosciences, 6 Blvd Gabriel, F-21000 Dijon, France;

    ANDRA, Parc Croix Blanche, 1-7 rue Jean Monnet;

    , F-92298 Chdtenay, France;

    Univ Copenhagen, Dept Geosci & Nat Resource Management, Oster Voldgade 10, DK-1350 Copenhagen, Denmark;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Early Jurassic; Pliensbachian; Runoff; Clay minerals; Stable isotope; Glacio-eustasy;

    机译:早侏罗世;普林斯巴赫期;径流;黏土矿物;稳定同位素;冰河相;
  • 入库时间 2022-08-18 03:38:33

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