浅水碳酸盐面预示着古新世始新世热量最大化的开始(巴基斯坦北部哈扎拉盆地)

IF 1.7 Q3 GEOSCIENCES, MULTIDISCIPLINARY Journal of Asian Earth Sciences: X Pub Date : 2023-12-05 DOI:10.1016/j.jaesx.2023.100169
Mubashir Ali , Giovanni Coletti , Luca Mariani , Andrea Benedetti , Muhammad-Jawad Munawar , Saif Ur Rehman , Pietro Sternai , Daniela Basso , Elisa Malinverno , Khurram Shahzad , Suleman Khan , Muhammad Awais , Muhammad Usman , Sébastien Castelltort , Thierry Adatte , Eduardo Garzanti
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引用次数: 0

摘要

我们研究了哈扎拉盆地(巴基斯坦北部)的古新世演替,以更好地了解气候变化对海洋碳酸盐生成生物的影响。这些浅水碳酸盐沉积于古新世晚期,即古新世-始新世热极盛期开始之前,我们采用定量方法对其进行了研究,以突出骨骼组合的变化。我们发现,从萨尼特纪早期到萨尼特纪晚期,殖民珊瑚和绿色钙质藻类的数量有所减少,而大型底栖有孔虫和红色钙质藻类的数量有所增加。气温升高可能是导致更敏感的殖生珊瑚减少,而更耐受的大型底栖有孔虫增加的一个合理原因。在沿新特提斯洋边缘沉积的大多数演替中都观察到了类似的模式,这表明与预示着 PETM 高热事件的晚古新世环境变化有关。我们对哈扎拉盆地地层的地层分析表明,在古新世-始新世过渡期间发生的生物转化早在地球化学代用指标所记录的古新世-始新世热量最高峰开始之前就已经开始了。
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Shallow-water carbonate facies herald the onset of the Palaeocene-Eocene Thermal Maximum (Hazara basin, Northern Pakistan)

We investigate the Palaeocene succession of the Hazara Basin (Northern Pakistan) to better understand the impact of climate change on marine carbonate-producing organisms. These shallow-water carbonates, deposited during the Late Palaeocene, before the onset of the Palaeocene-Eocene Thermal Maximum, were studied using a quantitative approach to highlight changes in the skeletal assemblage. We recognise a decrease in the abundance of colonial corals and green calcareous algae and an increase in larger benthic foraminifera and red calcareous algae from the early Thanetian to the late Thanetian. Increasing temperatures may represent a plausible cause for the decline of the more sensitive colonial corals in favor of the more tolerant larger benthic foraminifera. A similar pattern is observed in most successions deposited along the margins of the Neotethys Ocean, suggesting a connection with the Late Palaeocene environmental changes that heralded the PETM hyperthermal event. Our stratigraphic analysis of the Hazara Basin strata suggests that the biotic turnovers occurred during the Palaeocene – Eocene transition started already before the onset of the Palaeocene Eocene Thermal Maximum as recorded by the geochemical proxies.

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来源期刊
Journal of Asian Earth Sciences: X
Journal of Asian Earth Sciences: X Earth and Planetary Sciences-Earth-Surface Processes
CiteScore
3.40
自引率
0.00%
发文量
53
审稿时长
28 weeks
期刊最新文献
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