首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >High-resolution carbon isotope records of the Aptian to Lower Albian from SE France and the Mazagan Plateau (DSDP Site 545): a stratigraphic tool for paleoceanographic and paleobiologic reconstruction
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High-resolution carbon isotope records of the Aptian to Lower Albian from SE France and the Mazagan Plateau (DSDP Site 545): a stratigraphic tool for paleoceanographic and paleobiologic reconstruction

机译:法国东南部和马萨根高原(阿塞拜疆)和阿布扎比高原(阿塞拜疆高原)至阿比下段的高分辨率碳同位素记录(DSDP站点545):用于古海洋学和古生物学重建的地层工具

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High-resolution carbon isotope stratigraphy is established for the Aptian to Lower Albian of the Vocontian Basin (SE France), and correlated to the carbon isotope record of the Mazagan Plateau (DSDP Site 545). The carbon isotope stratigraphy of the Vocontian Basin is proposed as a standard reference curve for the Aptian to Lower Albian, due to the completeness and high temporal resolution of the stratigraphic succession, the good biostratigraphical time control, and the frequent occurrence of regional to global black shale horizons including Oceanic Anoxic Events 1a (OAE 1a) of the Lower Aptian and OAE 1b of the Lower Albian. The carbon isotope record appears better suited for long-distance short-term correlation of different marine and terrestrial environments than biostratigraphy because of the synchroneity of carbon isotope signals in a range of sediment types. However, the combination of both biostratigraphy and carbon isotope stratigraphy provides an effective tool to reconstruct biotic change and paleoceanography, and to correlate regional to global black shale horizons in different marine environments. This combined approach allows us to ascertain the synchroneities or diachroneities of first and last appearances of biostratigraphic marker species. Based on the demonstrated diachroneity of important biostratigraphic markers of the Aptian/Albian boundary, the globally observed break point between the end of the uppermost Aptian positive carbon isotope excursion and the onset of the pronounced negative shift of δ~(13)C values, is an alternative criterion. The distinctive structure and amplitudes of the carbon isotope record are observed in both the inorganic and organic carbon and can therefore be recognized in all marine and terrestrial environments of the Aptian to Lower Albian.
机译:建立了Vocontian盆地的Aptian到Lower Albian(法国东南部)的高分辨率碳同位素地层,并与马萨根高原(DSDP站点545)的碳同位素记录相关。由于地层演替的完整性和高时间分辨率,良好的生物地层时间控制以及区域至全球黑色的频繁发生,建议将Vocontian盆地的碳同位素地层作为Aptian到Lower Albian的标准参考曲线。页岩层位,包括下阿普特地区的海洋缺氧事件1a(OAE 1a)和下阿尔本的OAE 1b。与生物地层学相比,碳同位素记录似乎更适合于不同海洋和陆地环境的远距离短期关联,因为碳同位素信号在一系列沉积物类型中是同步的。然而,生物地层学和碳同位素地层学的结合提供了一种有效的工具,可以重建生物变化和古海洋学,并使不同海洋环境中的区域页​​岩与全球黑色页岩层位相互关联。这种组合的方法使我们能够确定生物地层标记物物种的首次出现和最后出现的同步性或错误性。根据Aptian / Albian边界重要生物地层标志物的高分错性,全球观测到的最高Aptian正碳同位素偏移末端与δ〜(13)C值显着负向偏移之间的断裂点为替代标准。在无机碳和有机碳中都观察到了碳同位素记录的独特结构和幅度,因此可以在阿普第安至下阿尔本的所有海洋和陆地环境中识别出。

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