Quaternary transgression process controlled by tectonic subsidence over the last 1.35 Ma: New insights from the eastern Bohai Sea

IF 2.6 2区 地球科学 Q2 GEOGRAPHY, PHYSICAL
Wei Xiong , Long Huang , Yong Zhang , Zhonglei Wang , Nai Shuang Bi , Jun Pan , Jun Sun , Lelong He , Feifei Wang , Xi Mei
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Abstract

The Quaternary sedimentary history of the Yellow Sea and Bohai Sea offers significant insights into global sea-level changes. This history is intricately linked to tectonic subsidence. However, the process of the Quaternary transgressions of these areas remains controversial due to the lack of cores with comprehensive sedimentary sequences and reliable chronological frameworks in representative sites. This study evaluated the grain size, benthic foraminifera assemblages, quartz optically stimulated luminescence (OSL) dates, and magnetostratigraphy of Core CSH05 (102.4 m) from the eastern boundary of the Bohai Sea. By comparing these results with previous research, new insights were gained into sea-level changes and tectonic events in the Bohai Sea. The paleomagnetic analysis revealed the existence of Brunhes and Matuyama chrons in the core, including the Jaramillo and Cobb Mountain subchrons and Blake excursion. The boundary between the Brunhes and Matuyama chrons was determined at 57.2 m in the core, aligning with adjacent cores. The basal age of the core is estimated to be ∼1.35 Ma. Thirteen sedimentary units (U1-U13), consisting of seven neritic deposits and six terrestrial/littoral deposit layers, were identified in the core through sedimentology and environmental proxies (grain size and benthic foraminifera), indicating alternating transgression-regression cycles. OSL samples suggest that the neritic deposits layer (16.2–20.6 m) probably originated during the early Marine Isotope Stage 3 (MIS3), exhibiting a weaker transgression than MIS5 and MIS1. The initial transgression (U13) dates back to no later than 1.35 Ma, representing the earliest documentation in the Bohai Sea. U11 shows a transgression to 1 Ma, aligning with results from adjacent cores, indicating that the Miaodao Island uplift experienced further subsidence between 1 and 0.83 Ma, allowing seawater to inundate the central basin of the Bohai Sea during high sea level periods. The current sea-land configuration structure emerged after 0.3 Ma due to the complete subsidence of the Miaodao Islands Uplift. The Quaternary transgressions in the Bohai Sea demonstrate a coupling relationship with the uplift of the Qinghai Tibet Plateau, glacial-interglacial cycles, and integration of the Yellow River. This study traces the initial transgression in the Bohai Sea to 1.35 Ma and provides a new detailed evolutionary model of the timing and routes for the Quaternary transgression of the Bohai Sea and Yellow Sea, thereby enhancing our understanding of sedimentary evolution and paleoenvironmental changes in the region.
过去 1.35 千兆年构造沉降控制的第四纪横断过程:渤海东部的新发现
黄海和渤海的第四纪沉积历史为了解全球海平面变化提供了重要信息。这一历史与构造沉降密切相关。然而,由于缺乏具有代表性地点的全面沉积序列和可靠年代框架的岩芯,这些地区的第四纪断陷过程仍存在争议。本研究评估了渤海东部边界岩芯 CSH05(102.4 米)的粒度、底栖有孔虫组合、石英光激发发光(OSL)日期和磁地层学。通过将这些结果与以前的研究进行比较,对渤海的海平面变化和构造事件有了新的认识。古地磁分析表明,岩芯中存在布鲁内斯和松山脉,包括Jaramillo和Cobb山亚脉以及Blake偏移。在岩芯中 57.2 米处确定了布鲁内斯支系和松山支系的分界线,与邻近岩芯的分界线一致。岩芯的基底年龄估计为 1.35 Ma。通过沉积学和环境代用指标(粒度和底栖有孔虫),在岩芯中确定了 13 个沉积单元(U1-U13),其中包括 7 个海相沉积层和 6 个陆相/滨海沉积层,表明过渡-回归周期交替进行。OSL 样品表明,海相沉积层(16.2-20.6 米)可能起源于海洋同位素第三阶段(MIS3)早期,与 MIS5 和 MIS1 相比,表现出较弱的横断。最初的横断期(U13)可追溯到不晚于 1.35 Ma 的年代,代表了渤海最早的文献记载。U11显示的横断年代为1Ma,与相邻岩心的结果一致,表明庙岛隆起在1-0.83Ma之间经历了进一步的下沉,使得海水在高海平面时期淹没了渤海的中部盆地。由于庙岛群岛隆起的完全下沉,目前的海陆配置结构出现在 0.3 Ma 之后。渤海第四纪断陷显示了与青藏高原隆升、冰川-间冰期循环和黄河整合的耦合关系。该研究将渤海的初始横断面追溯到1.35Ma,为渤海和黄海第四纪横断面的发生时间和路线提供了一个新的详细演化模型,从而加深了我们对该地区沉积演化和古环境变化的认识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
5.90
自引率
10.00%
发文量
398
审稿时长
3.8 months
期刊介绍: Palaeogeography, Palaeoclimatology, Palaeoecology is an international medium for the publication of high quality and multidisciplinary, original studies and comprehensive reviews in the field of palaeo-environmental geology. The journal aims at bringing together data with global implications from research in the many different disciplines involved in palaeo-environmental investigations. By cutting across the boundaries of established sciences, it provides an interdisciplinary forum where issues of general interest can be discussed.
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