过去 13 万年间中欧气候变化与埃菲尔火山活动之间的关系:ELSA-23-Tephra-堆栈

IF 2.3 Q2 GEOSCIENCES, MULTIDISCIPLINARY Quaternary Pub Date : 2024-04-25 DOI:10.3390/quat7020021
F. Sirocko, Frederik Krebsbach, Johannes Albert, Sarah Britzius, Fiona Schenk, Michael W. Förster
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引用次数: 1

摘要

通过对艾菲尔湖泊沉积物中的沉积层进行分析,我们发现在全新世到始新世(公元前 0-130,000 年)的最后一个冰川周期中,有 14 块沉积物清晰可见。我们对这些火山灰的岩相成分进行了分析,从而将一些火山灰与火山喷发地点联系起来。我们采用 ELSA-20 年代测定法对所有火山口岩进行了年代测定,该年代测定法是利用晚更新世奥埃尔湖和全新世霍尔茨马尔湖(公元前 0-60,000 年)的填充岩浆进行的。本文根据 Dehner、Hoher List 和 Jungferweiher 的填充湖泊记录,将 ELSA-20 年表扩展到距今 60,000-130,000 年(ELSA-23 年表)。对整个末次冰川周期的化石进行的评估显示,所有 14 块化石都接近于北大西洋海面温度的间歇期变暖。特别是,岩浆喷发系统地与海因里希事件或 C 事件有关。这些事件代表了南半球变暖、全球海平面上升和二氧化碳增加的时期,比北半球的突然间期变暖事件要早。这种同步性表明了内生和外生过程之间的物理关系。岩石圈应力场随大陆冰负荷变化而发生的变化已被认为是解释内源过程的外源作用力的潜在候选因素。埃菲尔火山活动的年代学表明,板内地幔羽流也受到内生过程的外生作用力的影响。
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Relation between Central European Climate Change and Eifel Volcanism during the Last 130,000 Years: The ELSA-23-Tephra-Stack
The analysis of tephra layers in maar lake sediments of the Eifel shows 14 well-visible tephra during the last glacial cycle from the Holocene to the Eemian (0–130,000 yr b2k). These tephra were analyzed for their petrographic composition, which allows us to connect several tephra to eruption sites. All tephra were dated by application of the ELSA-20 chronology, developed using the late Pleistocene infilled maar lake of Auel and the Holocene lake Holzmaar (0–60,000 yr b2k). We extend the ELSA-20 chronology with this paper for the millennia of 60,000–130,000 yr b2k (ELSA-23 chronology), which is based on the infilled maar lake records from Dehner, Hoher List, and Jungferweiher. The evaluation of the tephra from the entire last glacial cycle shows that all 14 tephra were close to interstadial warming of the North Atlantic sea surface temperatures. In particular, phreatomagmatic maar eruptions were systematically associated with Heinrich events or C-events. These events represent times of warming of the Southern Hemisphere, global sea level rise, and CO2 increase, which predate the abrupt interstadial warming events of the Northern Hemisphere. This synchroneity indicates a physical relationship between endogenic and exogenic processes. Changes in the lithospheric stress field in response to changes in continental ice loads have already been suggested as a potential candidate to explain the exogenic forcing of endogenic processes. The chronology of volcanic activity in the Eifel demonstrates that intraplate mantle plumes are also affected by the exogenic forcing of endogenic processes.
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来源期刊
Quaternary
Quaternary GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
3.30
自引率
4.30%
发文量
44
审稿时长
11 weeks
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