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DOI10.1016/j.cretres.2023.105604
Paleoenvironmental reconstruction preceding and during the early Aptian Oceanic Anoxic Event 1a in southern Tibet, eastern Tethys
Nie, Ying; Fu, Xiugen; Wei, Hengye; Lin, Fei; Zeng, Shengqiang; Mansour, Ahmed; Zhou, Gang; Wang, Wenzhi
发表日期2023
ISSN0195-6671
EISSN1095-998X
卷号150
英文摘要The early Aptian Oceanic Anoxic Event (OAE 1a,-120 Ma) represents an episode of severe paleoenvironmental disturbance during the Cretaceous, marked by the widespread deposition of organic matter (OM)-rich sediments. The OAE 1a has been extensively studied in the Pacific, Boreal, and western and southern Tethyan regions. However, limited studies of the OAE 1a were conducted in the eastern Tethys (especially in southern Tibet). Here, high-resolution organic and inorganic geochemical data are used to reconstruct paleoenvironmental and paleoclimatic conditions during the OAE 1a in the Gucuo area of southern Tibet, eastern Tethys. Enrichment factors of redox-sensitive Mo and U elements and the Th/U ratio revealed oxic-to-suboxic bottom water oscillations preceding and at the base of OAE 1a. A shift from oxic to suboxic condition occurred prior to the OAE 1a, followed by a change from suboxic to oxic at the base of OAE 1a. Based on multiple geochemical proxy indicators and plots, a warm-humid climate in response to global warming was prevalent during the early Aptian. The ratios of B/Ga, Sr/Ba, Rb/K, and CaO/(CaO thorn Fe) revealed freshwater-dominated salinity conditions prior to and at the base of the OAE 1a. Low salinity conditions during the deposition suggested that massive freshwater runoff took place into the ocean due to a warm-humid climate and related hydrological cycles at this time. OM production was controlled by a high surface water bioproductivity driven by enhanced freshwater input that promoted fluvial delivery of micronutrients and accelerated hydrological cycles. However, oxic-suboxic redox conditions played a negative role in oxidizing and decomposing available labile OM in the water column, which led to moderate organic carbon burial at this time.0 2023 Elsevier Ltd. All rights reserved.
关键词Early AptianOceanic Anoxic EventGlobal warmingOrganic matter accumulation
英文关键词SEDIMENTARY-ROCKS; DEPOSITIONAL ENVIRONMENT; INTEGRATED STRATIGRAPHY; CRETACEOUS STRATIGRAPHY; HYDRATE DISSOCIATION; ISOTOPE EVIDENCE; CARBON-ISOTOPE; BLACK SHALES; OAE 1A; ACCUMULATION
WOS研究方向Geology ; Paleontology
WOS记录号WOS:001032251800001
来源期刊CRETACEOUS RESEARCH
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/282953
作者单位Southwest Petroleum University; Southwest Petroleum University; Southwest Petroleum University; China Geological Survey; Chengdu Center, China Geological Survey; Egyptian Knowledge Bank (EKB); Minia University; China National Petroleum Corporation
推荐引用方式
GB/T 7714
Nie, Ying,Fu, Xiugen,Wei, Hengye,et al. Paleoenvironmental reconstruction preceding and during the early Aptian Oceanic Anoxic Event 1a in southern Tibet, eastern Tethys[J],2023,150.
APA Nie, Ying.,Fu, Xiugen.,Wei, Hengye.,Lin, Fei.,Zeng, Shengqiang.,...&Wang, Wenzhi.(2023).Paleoenvironmental reconstruction preceding and during the early Aptian Oceanic Anoxic Event 1a in southern Tibet, eastern Tethys.CRETACEOUS RESEARCH,150.
MLA Nie, Ying,et al."Paleoenvironmental reconstruction preceding and during the early Aptian Oceanic Anoxic Event 1a in southern Tibet, eastern Tethys".CRETACEOUS RESEARCH 150(2023).
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