Youssef S. Bazeen , Sherif Farouk , Khaled Al-Kahtany , Fayez Ahmad , Amr S. Zaky
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引用次数: 0
摘要
西奈半岛达赫拉地层的古新世半沉积物为利用底栖有孔虫研究古环境波动提供了理想的环境。本研究在层序地层框架内使用有孔虫定量分析方法,对西奈半岛 Themed 的达尼安-志留纪沉积演替进行了研究。定量多变量分析,包括生物面貌趋势和多样性参数的 R 模式聚类和非度量多维标度(NMDS)排序,表明整个研究的演替过程中发生了相当大的古环境和古海相变化。主要根据底栖有孔虫生物构成趋势,确定了五个递变-递变(T-R)序列。序列边界与主要的全球海平面低点密切相关。底栖有孔虫集合体阐明了整个序列中上深海层和中-外海层之间的古沉积波动。所确定的序列与全球震荡周期密切相关,其细微差别表明区域构造在海平面控制中处于从属地位。根据生物地层学约束的同位素特征显示,最新达尼安事件(LDE)区间与第四T-R序列的回归阶段相吻合。富营养化有孔虫的相对丰度在这一时期出现了明显的峰值,这可能反映了出口生产力的提高。总之,底栖有孔虫提供了重要的古环境洞察力,有助于在单调的半长石中进行序列地层解释,并突出了碳循环和海平面的可能耦合动态。
Sea-level fluctuations during the Danian-Selandian interval in Sinai, Egypt: Insights from benthic foraminiferal biofacies analysis
The Paleocene hemipelagic deposits of the Dakhla Formation in Sinai offer an ideal setting to investigate paleoenvironmental fluctuations using benthic foraminifera. This study examined a Danian-Selandian sedimentary succession at Themed, Sinai using quantitative foraminiferal analysis within a sequence stratigraphic framework. Quantitative multivariate analyses, including R-mode clustering and non-metric multidimensional scaling (NMDS) ordination of biofacies trends and diversity parameters, indicate considerable paleoenvironmental and paleobathymetric changes throughout the studied succession. Five transgressive-regressive (T-R) sequences were identified based primarily on benthic foraminiferal biofacies trends. The sequence boundaries correlated well with major global sea-level lowstands. Benthic foraminiferal assemblages elucidated paleobathymetry fluctuations between upper bathyal and middle-outer neritic settings across the sequences. The identified sequences strongly correlate to global eustatic cycles, with subtle disparities suggesting a subordinate role for regional tectonics overprinting the dominant sea level control. The Latest Danian Event (LDE) interval coincides with the regressive phase of the fourth T-R sequence, as revealed from the biostratigraphic-constrained isotopic signature. It showed pronounced peaks in the relative abundance of the eutrophic buliminids, likely reflecting enhanced export productivity. Overall, benthic foraminifera provided vital paleoenvironmental insights, enabling sequence stratigraphic interpretation in the monotonous hemipelagites and highlighting possible coupled dynamics of both the carbon cycle and sea level.
期刊介绍:
Marine Micropaleontology is an international journal publishing original, innovative and significant scientific papers in all fields related to marine microfossils, including ecology and paleoecology, biology and paleobiology, paleoceanography and paleoclimatology, environmental monitoring, taphonomy, evolution and molecular phylogeny. The journal strongly encourages the publication of articles in which marine microfossils and/or their chemical composition are used to solve fundamental geological, environmental and biological problems. However, it does not publish purely stratigraphic or taxonomic papers. In Marine Micropaleontology, a special section is dedicated to short papers on new methods and protocols using marine microfossils. We solicit special issues on hot topics in marine micropaleontology and review articles on timely subjects.