Institut des sciences de la Terre, Géopolis, Université de Lausanne, 1015, Lausanne, Switzerland.
Département des sciences de la Terre, Université de Genève, 1205, Genève, Switzerland.
Sci Rep. 2018 Jun 22;8(1):9578. doi: 10.1038/s41598-018-27847-7.
The Frasnian-Famennian boundary records one of the most catastrophic mass extinctions of the Phanerozoic Eon. Several possible causes for this extinction have been suggested, including extra-terrestrial impacts and large-scale volcanism. However, linking the extinction with these potential causes is hindered by the lack of precise dating of either the extinction or volcanic/impact events. In this study, a bentonite layer in uppermost-Frasnian sediments from Steinbruch Schmidt (Germany) is re-analysed using CA-ID-TIMS U-Pb zircon geochronology in order to constrain the date of the Frasnian-Famennian extinction. A new age of 372.36 ± 0.053 Ma is determined for this bentonite, confirming a date no older than 372.4 Ma for the Frasnian-Famennian boundary, which can be further constrained to 371.93-371.78 Ma using a pre-existing Late Devonian age model. This age is consistent with previous dates, but is significantly more precise. When compared with published ages of the Siljan impact crater and basalts produced by large-scale volcanism, there is no apparent correlation between the extinction and either phenomenon, not clearly supporting them as a direct cause for the Frasnian-Famennian event. This result highlights an urgent need for further Late Devonian geochronological and chemostratigraphic work to better understand the cause(s) of this extinction.
泥盆纪弗拉斯阶-法门阶之交记录了显生宙中最具灾难性的大规模灭绝事件之一。已经提出了几种可能导致这次灭绝的原因,包括外星撞击和大规模火山活动。然而,由于缺乏对灭绝或火山/撞击事件的精确年代测定,将灭绝与这些潜在原因联系起来受到了阻碍。在这项研究中,通过 CA-ID-TIMS U-Pb 锆石年代地层学,重新分析了德国施泰因布鲁赫施密特(Steinbruch Schmidt)弗拉斯阶顶沉积物中的一层膨润土,以确定弗拉斯阶-法门阶之交的灭绝日期。这个膨润土的新年龄为 372.36±0.053Ma,证实了弗拉斯阶-法门阶之交的年龄不早于 372.4Ma,可以使用现有的晚泥盆世年代模型进一步将其约束在 371.93-371.78Ma。这个年龄与之前的日期一致,但精度显著提高。与Siljan 撞击坑和大规模火山活动产生的玄武岩的已发表年龄相比,灭绝与这两种现象之间没有明显的相关性,不能明确支持它们是弗拉斯阶-法门阶事件的直接原因。这一结果突出表明,迫切需要进一步开展晚泥盆世地球年代学和地球化学地层学工作,以更好地了解这次灭绝的原因。