New Evidence for an Episode of Accelerated Environmental Change in the Late Barremian: Geochemical and Paleontological Records from the Subbetic Basin (Western Tethys)

Ginés A. de Gea, J. M. Castro, M. Company, L. O’Dogherty, José Sandoval, María Luisa Quijano, Cristina Sequero, Sandro Froehner, R. Aguado
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Abstract

We investigate a new event of accelerated environmental change that was recorded during the late Barremian in the pelagic Subbetic Basin (Western Tethys). Two pelagic sections have been studied using a multi-proxy approach based on C-isotope stratigraphy and a high-resolution quantitative study of nannofossil assemblages, along with major and trace elements and biomarkers. Our results provide a detailed biostratigraphy and C-isotope stratigraphy, and outline the paleoenvironmental conditions recorded during the early stages of the Taxy Episode. A disturbance has been identified in the C-isotope record, called the IFeNE (Intra-Feradianus negative C-excursion), which is coeval with environmental and biotic changes that predate the well-known ISNE (Intra-Sarasini negative C-excursion). The combined analysis of nannofossil associations, C-isotopes, major and trace elements, and biomarker distributions indicates a separate episode of warming heralding the ISNE, resulting in the acceleration of the hydrological cycle and a consequent increase in continental inputs and the fertilization of surface waters. The origin of the Taxy Episode (the IFeNE and ISNE) has been related to orbital factors (high-eccentricity cycles), and to a global increase in volcanism, probably related to the early phases of the Ontong Java Plateau.
巴里米亚晚期环境加速变化的新证据:来自亚贝特盆地(特提斯西部)的地球化学和古生物学记录
我们研究了在巴里米亚盆地(西特提斯)深海晚期发生的新的环境加速变化事件。我们采用基于 C-同位素地层学的多代理方法、对化石组合的高分辨率定量研究以及主要和痕量元素和生物标志物,对两个浮游剖面进行了研究。我们的研究结果提供了详细的生物地层学和 C-同位素地层学,并概述了 Taxy 事件早期记录的古环境条件。在 C-同位素记录中发现了一个干扰,称为 IFeNE(Intra-Feradianus 负 C-excursion),它与众所周知的 ISNE(Intra-Sarasini 负 C-excursion)之前的环境和生物变化同时发生。对化石组合、碳同位素、主要元素和痕量元素以及生物标志物分布的综合分析表明,在 ISNE 出现之前,曾发生过一次单独的气候变暖,导致水文循环加速,大陆输入量随之增加,地表水得到肥沃化。Taxy事件(IFeNE和ISNE)的起源与轨道因素(高偏心周期)和全球火山活动的增加有关,可能与翁通爪哇海台的早期阶段有关。
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