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首页> 外文期刊>Lethaia: An International Journal of Palaeontology and Stratigraphy >Upper Campanian-Maastrichtian chronostratigraphy of the Skaelskor-1 core, Denmark: correlation at the basinal and global scale and implications for changes in sea-surface temperatures
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Upper Campanian-Maastrichtian chronostratigraphy of the Skaelskor-1 core, Denmark: correlation at the basinal and global scale and implications for changes in sea-surface temperatures

机译:丹麦Skaelskor-1岩心的上坎潘期-马斯特里赫特年代地层:盆地和全球尺度的相关性及其对海表温度变化的影响

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The lithostratigraphy, calcareous nannofossil biostratigraphy, carbon-and oxygen-isotope stratigraphy and gamma-ray profile are presented for the Skaelskor-1 core, eastern Denmark. The correlation of carbon isotopes to Gubbio (Italy) and ODP Site 762C (Indian Ocean) provides the chronostratigrahical framework of the core through a tie to magnetostratigraphy. Two new carbon-isotope excursions are defined for the uppermost Maastrichtian of the core and prove useful for long-distance correlation. Twenty stratigraphic tie-points are used for correlation of the upper Campanian-Maastrichtian interval by combining carbon-isotope and gamma-ray variations. Significant dissimilarities in the gamma-ray profiles of the Danish Basin cores preclude the sole use of this tool for basin-scale correlations. Bulk oxygen-isotopes and semi-quantitative abundance changes in the warm-water calcareous nannofossil Watznaueria barnesiae and the cool-water Kamptnerius magnificus highlight the following past changes in sea-surface temperatures (SSTs): relatively warm late Campanian SSTs, cooling across the Campanian-Maastrichtian boundary and through the early Maastrichtian, warming across the early-late Maastrichtian transition, cooling in the late Maastrichtian, intense warming in the latest Maastrichtian chron C29r, followed by a very short episode of cooling immediately before the Cretaceous-Palaeogene boundary. The late Campanian-Maastrichtian evolution in sea water temperatures inferred from the Danish Basin is similar to that delineated at tropical latitude oceanic sites.
机译:介绍了丹麦东部Skaelskor-1岩心的岩相地层学,钙质纳米化石生物地层学,碳同位素和氧同位素地层以及伽马射线剖面。碳同位素与古比奥(意大利)和ODP站点762C(印度洋)的相关性通过与地磁地层学的联系提供了岩心的年代地层学框架。为岩心的最高马斯特里赫特峰定义了两个新的碳同位素偏移,并证明对长距离相关性有用。通过结合碳同位素和伽马射线变化,使用二十个地层联系点来关联上坎帕尼-马斯特里赫特层段。丹麦盆地核心的伽马射线剖面的显着差异,使得该工具无法用于盆地尺度的相关性。暖水钙质纳米化石Watznaueria barnesiae和冷水Kamptnerius magnificus的大量氧同位素和半定量丰度变化突出了过去海表温度(SST)的以下变化:相对温暖的Campanian SST,在整个Campanian冷却-Maastrichtian边界并穿过Maastrichtian早期,在Maastrichtian晚期到晚期过渡变暖,在Maastrichtian晚期冷却,在最新的Maastrichtian chron C29r强烈变暖,随后在白垩纪-古近纪边界之前出现非常短的冷却期。从丹麦盆地推断出的坎帕尼亚-马斯特里赫特晚期海水温度演变与热带纬度海洋站点所描绘的相似。

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