首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >The Guadalupian-Lopingian boundary mudstones at Chaotian (SW China) are clastic rocks rather than acidic tuffs: Implication for a temporal coincidence between the end-Guadalupian mass extinction and the Emeishan volcanism
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The Guadalupian-Lopingian boundary mudstones at Chaotian (SW China) are clastic rocks rather than acidic tuffs: Implication for a temporal coincidence between the end-Guadalupian mass extinction and the Emeishan volcanism

机译:朝田(中国西南地区)的瓜达鲁普-洛平阶界泥岩是碎屑岩,而不是酸性凝灰岩:暗示瓜达鲁普末期大灭绝与峨眉山火山活动在时间上相吻合

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Previous studies on the temporal link between the end-Guadalupian mass extinction event and Emeishan flood volcanism were mainly based on geochronological and bio-and chemostratigraphic correlation techniques (Wignall et al, 2009). The absence of material-based hard evidence that directly links the extinction with the Emeishan volcanism remains a major obstacle regardless of the indication of coincidence in timing (Isozaki et al., 2007). The Emeishan basalts overlie Permian platform carbonates that may contain a record of the end-Guadalupian mass extinction and erosional product of this province. This paper presents mineralogy and geochemistry of mudstones from the Guadalupian-Lopingian Boundary (G-LB) at Chaotian, SW China. Results indicate that these G-LB mudstones are not air-fall acidic tuff as previously thought, but likely represent clastic rocks derived from erosional deposits of the Emeishan large igneous province (ELIP). Mudstones of the lower part (Group 1) have a geochemical affinity to the Emeishan felsic volcanic rocks, whereas mudstones of the upper part (Group 2) are compositionally akin to mafic components of the Emeishan traps. This chemostratigraphic sequence resembles the Xuanwei Formation which sits on the Emeishan basalts (He et al., 2007). These data therefore indicate that the lower part of the mudstones at the Chaotian G-LB section, the lowermost part of Xuanwei and Longtan Formations and the Emeishan felsic extrusives broadly constitute an isochron horizon throughout the ELIP and adjacent region, suggesting a short duration for the Emeishan volcanism. A temporal coincidence between Emeishan volcanism and the end-Guadalupian mass extinction are therefore inferred thus providing support for a cause-and-effect relationship.
机译:先前关于瓜达卢普末块灭绝事件与峨眉山洪水火山活动之间的时间联系的研究主要基于地质年代学和生物地热学及地层学相关技术(Wignall等,2009)。不管是否有时间一致的迹象,缺乏基于物质的确凿证据都将灭绝与峨眉山火山活动直接联系仍然是一个主要障碍(Isozaki等,2007)。峨眉山玄武岩覆盖在二叠纪台地碳酸盐上,该碳酸盐可能包含该省瓜达卢普末期生物灭绝和侵蚀产物的记录。本文介绍了中国西南朝田瓜达路普-洛平底界(G-LB)的泥岩的矿物学和地球化学。结果表明,这些G-LB泥岩并非像以前所认为的那样是空降酸性凝灰岩,而是可能代表了源自峨眉山大火成岩省(ELIP)侵蚀性沉积的碎屑岩。下部(第1组)的泥岩与峨眉山长石质火山岩具有地球化学亲和力,而上部(第2组)的泥岩在成分上类似于峨眉山圈闭的镁铁质成分。该化学地层学层序类似于位于峨眉山玄武岩上的宣威组(He等,2007)。因此,这些数据表明朝天G-LB段的泥岩下部,宣威组和龙潭组的最低层以及峨眉山长英质挤出物广泛地构成了整个ELIP及其邻近地区的等时层。峨眉山火山活动。因此,推断了峨眉山火山活动与瓜达卢普末绝种之间的时间重合,从而为因果关系提供了支持。

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