意大利西北部上渐新世海侵剖面的综合地层学

IF 0.9 3区 地球科学 Q3 GEOLOGY
A. Briguglio, Simone Crobu, Eleni Lutaj, M. Piazza
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引用次数: 1

摘要

摘要:渐新世-中新世转变(OMT)是近3000万年来最重要的气候转变之一。这一短暂的气候变暖与一些生物更替相吻合,这在地层演替产生详细记录的较深海洋环境中是众所周知的;在浅海环境中,由于生态偏好,某些分类群的出现和缺失阻碍了研究,它们已被证明是难以识别的。本研究以第三系山前盆地(TPB)晚渐新世的Case Cné剖面为研究对象,该剖面代表了一个渐进的海侵事件,反映了一个局部发育的礁群的淹没和一个受重力流力学影响的更深海相沉积环境的发育。利用较大的有孔虫生物地层学将剖面定年至晚渐新世(SBZ23);初步的锶同位素数据证实了这一结果。利用沉积学、半定量微相和地球化学分析,重建了该剖面的沉积历史,并将其划分为四个主要阶段:礁杂岩淹没阶段、河流体系的短推进阶段、重力流力学的开始阶段和最终的海侵阶段,其初始浊积影响持续到中新世。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrated stratigraphy from a transgressive upper Oligocene section in NW Italy
ABSTRACT: The Oligo-Miocene Transition (OMT) is one of the most important climatic transitions of the last 30 million years. This short period of climate warming coincides with a few biotic turnovers, which are well known in deeper marine settings where stratigraphic successions yield a detailed record; in shallowmarine environments they have been proved difficult to recognize as the occurrence and absence of certain taxa due to ecological preferences hamper the study. This study focuses on the Case Cné section in the late Oligocene of the Tertiary Piedmont Basin (TPB) as it represents a gradual transgressive event, which shows the drowning of a locally developed reef complex and development of a deeper marine sedimentary setting influenced by gravity flow mechanics. Larger foraminifera biostratigraphy was used to date the section to the late Oligocene (SBZ23); preliminary strontium isotope data confirms this result. Using sedimentological, semi-quantitative microfacies and geochemical analysis the sedimentary history of the section was reconstructed and divided into four major phases: the drowning of the reef complex, a short prograding phase of the fluvial system, the onset of gravity flow mechanics and a final transgressive phase with an initial turbiditic influence which continues regionally into the Miocene.
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来源期刊
Stratigraphy
Stratigraphy 地学-地质学
CiteScore
1.80
自引率
6.70%
发文量
0
审稿时长
>12 weeks
期刊介绍: The journal’s mission is to publish peer-reviewed papers that use modern stratigraphic tools – biostratigraphy, chemostratigraphy, magnetostratigraphy, cyclostratigraphy, sequence stratigraphy, climatostratigraphy, lithostratigraphy, GSSPs and more – to explore broad ideas in earth history.
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