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Lower pliocene barnacle facies of western liguria (NW Italy): A peek into a warm past and a glimpse of our incoming future

机译:较低的全球艺术区胸罩面团(NW Italy):偷看了温暖的过去,并瞥见了我们的进入未来

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摘要

The lower Pliocene deposits of Pairola (Liguria, Italy) display the otherwise rare occurrence of rock-forming amounts of barnacles (mostly belonging to the extinct Euromediterranean species Concavus concavus). Three main facies are recognised in the investigated succession: a barnacle-dominated facies, which formed along a shallow (<15 m deep) nearshore environment, a foraminifera-dominated facies from relatively deeper waters (40-100 m), and an intermediate facies forming at the boundary of the other two. These facies and their relationships suggest deposition in a flooded valley -a kind of setting that was common in the Mediterranean after the Messinian Salinity Crisis. Differing from other rias, the Pairola basin was exposed to strong waves, resulting in conditions favourable to barnacles. Sedimentological and stratigraphic observations indicate that the Pairola succession formed within a timespan covering both cold and warm phases. This is relevant because the sub-tropical foraminifer Amphistegina is ubiquitous throughout the succession. Amphis-tegina occurs in the Pliocene and lower Pleistocene (Gelasian) of Northern Italy, but not in the remainder of the Pleistocene, not even its warm portions. This genus is currently recolonizing the Mediterranean and is projected to reach the northern coast of the basin soon, foretelling that Anthropocene temperatures are going to overcome those of the late Pleistocene warm periods and reach those of the Pliocene.
机译:Bairola(Liguria,意大利)的下全茂沉积物显示出罕见的雄骨谷物烧结量(主要属于灭绝的EuroMeDiterranean物种介绍)。在调查的继任中得到了三个主要相:横腔主导地构,沿着浅(<15米深)近岸环境形成,来自较深的水域(40-100米)和中间相在另一个的边界处形成。这些相和他们的关系建议在Messinian盐度危机之后在地中海常见的洪水山谷的沉积。与其他rias不同,蜂窝盆地暴露于强烈的波浪,导致藤壶的条件。沉积物和地层观察表明,在覆盖寒冷和温暖阶段的母程内形成的Bairola连续。这是相关的,因为亚热带传染媒体amphistegina在整个继承中都是无处不在的。 Amphis-tegina发生在意大利北部的全烯和较低的较高(格拉斯),但不在剩下的全级肾上腺,甚至没有其温暖的部分。该属目前正在重新调整地中海,并预计将很快进入盆地北部海岸,预测人类温度将克服晚熟温暖时期的晚期温暖,并达到全茂的那些。

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  • 来源
    《Oceanographic Literature Review》 |2021年第7期|1496-1496|共1页
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    Dipartimento di Scienze dell'Ambiente e della Terra Universita degli Studi di Milano- Bicocca Piazza della Scienza 4 Milano 20126 Italy;

    Dipartimento di Scienze dell'Ambiente e della Terra Universita degli Studi di Milano- Bicocca Piazza della Scienza 4 Milano 20126 Italy;

    Dipartimento di Scienze dell'Ambiente e della Terra Universita degli Studi di Milano- Bicocca Piazza della Scienza 4 Milano 20126 Italy;

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