Multiple diachronous “Black Seas” mimic global ocean anoxia during the latest Devonian

IF 4.8 1区 地球科学 Q1 GEOLOGY
Geology Pub Date : 2023-08-07 DOI:10.1130/g51394.1
M. Hedhli, S. Grasby, C. Henderson, B. Davis
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引用次数: 0

Abstract

The Devonian-Carboniferous boundary (DCB) Hangenberg extinction in Europe (ca. 359 Ma) and interval of black shale deposition has been considered a global anoxic event, the cause of which remains debated. However, the lack of a prominent global carbon isotope excursion and the duration of anoxia (3–4 m.y. at least) is inconsistent with other global anoxic events (e.g., Mesozoic ocean anoxic events) throughout the Phanerozoic. We examined geochemical and biostratigraphic data along with radiometric dating from purported Hangenberg event sections across the DCB in western Canada and demonstrate that the onset of anoxic pulses in Laurentian seas started before 363 Ma, diachronous with those in Baltica (Europe). Thus, DCB black shales do not record a single global anoxic event. We suggest instead that black shales near the DCB record multiple, but diachronous, Black Sea–like basins around the globe, promoted by the Late Devonian tectonic configuration. This drove a gradual biotic crisis in the form of regional punctuated benthic faunal extinction events.
多个历时性的“黑海”模拟了泥盆纪晚期全球海洋缺氧
欧洲泥盆纪-石炭纪边界(DCB) Hangenberg灭绝(约359 Ma)和黑色页岩沉积间隔被认为是一个全球性的缺氧事件,其原因仍有争议。然而,缺乏显著的全球碳同位素偏移和缺氧持续时间(至少3-4亿年)与显生宙的其他全球缺氧事件(如中生代海洋缺氧事件)不一致。我们检查了地球化学和生物地层学数据,以及来自加拿大西部DCB的所谓Hangenberg事件剖面的放射性测年,并证明劳伦森海缺氧脉冲的开始时间早于363 Ma,与波罗的海(欧洲)的缺氧脉冲是跨时的。因此,DCB黑色页岩没有记录单一的全球缺氧事件。相反,我们认为DCB附近的黑色页岩在晚泥盆世构造配置的推动下,在全球范围内记录了多个类似黑海的跨时盆地。这导致了一场逐渐的生物危机,其形式是区域性的底栖动物灭绝事件。
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来源期刊
Geology
Geology 地学-地质学
CiteScore
10.00
自引率
3.40%
发文量
228
审稿时长
6.2 months
期刊介绍: Published since 1973, Geology features rapid publication of about 23 refereed short (four-page) papers each month. Articles cover all earth-science disciplines and include new investigations and provocative topics. Professional geologists and university-level students in the earth sciences use this widely read journal to keep up with scientific research trends. The online forum section facilitates author-reader dialog. Includes color and occasional large-format illustrations on oversized loose inserts.
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