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Spatial heterogeneity in carbonate-platform environments and carbon isotope values across the Paleocene-Eocene thermal maximum (Tethys Himalaya, South Tibet)
Li, Juan1,2; Hu, Xiumian1; Garzanti, Eduardo3; BouDagher-Fadel, Marcelle4
2022-07-01
发表期刊GLOBAL AND PLANETARY CHANGE
ISSN0921-8181
卷号214页码:15
摘要

The Paleocene-Eocene Thermal Maximum (PETM,-56 Ma) is a large negative carbon isotope excursion (CIE) that testifies to a massive perturbation of the global carbon cycle and has been considered to be an ancient, deep-time analogue for present and future climate change. However, the environmental and carbon isotopic response to the PETM in shallow-water carbonate platforms has remained largely elusive. This study presents new sedi-mentological, biostratigraphic, and carbon isotopic data to evaluate the impact of the PETM on a shallow-water carbonate platform from more proximal southern parts of the northern Indian continental margin. Detailed biostratigraphy and carbon isotope data indicate that the PETM occurs 3 m below the boundary between nodular and thin-bedded limestones, is maintained up to the thin-bedded limestone and calcareous marl interval, and is followed by recovery at the base of thick-bedded limestone interval. Microfacies analysis testifies to a regression from open to restricted shallow-marine environments at the transition from PETM onset to PETM core, and shallowing continued through the PETM core. Restricted lagoonal deposition was renewed during PETM re-covery. These environmental changes were associated with two major turnovers of shallow-water biota. We infer that the first sudden biotic change at the PETM onset may relate to intensified continental weathering, whereas the second biotic change at PETM recovery may have been caused by sea-level fall. The smaller magnitude of the CIE observed in proximal, shallower-water than in distal, deeper-water environments is ascribed to increased primary productivity due to increased nutrients' supply associated with intensified continental weathering.

关键词Paleocene-Eocene boundary Carbon isotope excursion Larger benthic foraminifera Carbonate microfacies Tibetan carbonate platform
DOI10.1016/j.gloplacha.2022.103853
收录类别SCI
语种英语
关键词[WOS]LARGER BENTHIC FORAMINIFERA ; SEA-LEVEL RISE ; CLIMATE-CHANGE ; EVOLUTION ; INDIA ; BOUNDARY ; PARADOX ; DISSOCIATION ; COLLISION ; EXCURSION
资助项目National Natural Science Foun-dation of China[42072117] ; National Natural Science Foun-dation of China[41888101] ; National Natural Science Foun-dation of China[91755209] ; State Key Lab-oratory of Palaeobiology and Stratigraphy, Nanjing Institute of Geology and Palaeontology, CAS[183115]
WOS研究方向Physical Geography ; Geology
WOS类目Geography, Physical ; Geosciences, Multidisciplinary
WOS记录号WOS:000814377900002
项目资助者National Natural Science Foun-dation of China ; State Key Lab-oratory of Palaeobiology and Stratigraphy, Nanjing Institute of Geology and Palaeontology, CAS
出版者ELSEVIER
文献类型期刊论文
条目标识符http://ir.nigpas.ac.cn/handle/332004/40973
专题中国科学院南京地质古生物研究所
通讯作者Hu, Xiumian
作者单位1.Nanjing Univ, Sch Earth Sci & Engn, State Key Lab Mineral Deposit Res, Nanjing 210023, Peoples R China
2.Chinese Acad Sci, Nanjing Inst Geol & Palaeontol, State Key Lab Palaeobiol & Stratig, Nanjing 210008, Peoples R China
3.Univ Milano Bicocca, Dept Earth & Environm Sci, Lab Provenance Studies, I-20126 Milan, Italy
4.UCL, Dept Earth Sci, London WC1H 0BT, England
第一作者单位中国科学院南京地质古生物研究所
推荐引用方式
GB/T 7714
Li, Juan,Hu, Xiumian,Garzanti, Eduardo,et al. Spatial heterogeneity in carbonate-platform environments and carbon isotope values across the Paleocene-Eocene thermal maximum (Tethys Himalaya, South Tibet)[J]. GLOBAL AND PLANETARY CHANGE,2022,214:15.
APA Li, Juan,Hu, Xiumian,Garzanti, Eduardo,&BouDagher-Fadel, Marcelle.(2022).Spatial heterogeneity in carbonate-platform environments and carbon isotope values across the Paleocene-Eocene thermal maximum (Tethys Himalaya, South Tibet).GLOBAL AND PLANETARY CHANGE,214,15.
MLA Li, Juan,et al."Spatial heterogeneity in carbonate-platform environments and carbon isotope values across the Paleocene-Eocene thermal maximum (Tethys Himalaya, South Tibet)".GLOBAL AND PLANETARY CHANGE 214(2022):15.
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