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首页> 外文期刊>Proceedings of the Geologists' Association >The wider context of the Lower Jurassic Toarcian oceanic anoxic event in Yorkshire coastal outcrops, UK
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The wider context of the Lower Jurassic Toarcian oceanic anoxic event in Yorkshire coastal outcrops, UK

机译:英国约克郡沿海露营的下侏罗纪Toarcian缺氧事件的更广泛的背景

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The Toarcian Oceanic Anoxic Event (T-OAE, similar to 183 Ma) was characterized by enhanced carbon burial, a prominent negative carbon-isotope excursion (CIE) in marine carbonate and organic matter, and numerous geochemical anomalies. A precursor excursion has also been documented at the Pliensbachian/Toarcian boundary, but its possible causes are less constrained. The T-OAE is intensively studied in the Cleveland Basin, Yorkshire, UK, whose sedimentary deposits have been litho-, bio- and chemostratigraphically characterised. Here, we present new elemental data produced by hand-held X-ray fluorescence analysis to test the expression of redox-sensitive trace metals and detrital elements across the upper Pliensbachian to mid-Toarcian of the Cleveland Basin. Detrital elemental concentrations (Al, Si, Ti, Zr) are used as proxies for siliciclastic grain content and thus, sea-level change, which match previous sequence stratigraphic interpretations from the Cleveland Basin. The timescale of the event is debated, though our new elemental proxies of relative sea level change show evidence for a cyclicity of 350 cm that may be indicative of similar to 405 kyr eccentricity cycles in Yorkshire. Trends in total organic carbon and redox-sensitive elements (S, Fe, Mo, As) confirm scenarios of widespread ocean deoxygenation across the T-OAE. The correlation of comparable trends in Mo across the T-OAE in Yorkshire and the Paris Basin suggests a similar oceanic drawdown of this element accompanying widespread anoxia in the two basins. Data from Yorkshire point to a transgressive trend at the time of the Mo drawdown, which contradicts the "basin restriction" model for the euxinic conditions that characterise the CIE interval. (C) 2017 The Geologists' Association. Published by Elsevier Ltd. All rights reserved.
机译:通过增强的碳酸群,近似的负碳 - 同位素偏移(CIE)和有机物质中突出的负碳 - 同位素偏移(CIE)以及众多地球化学异常,特征在于增强碳埋葬,突出的负碳 - 同位素偏移(CIE),以及许多地球化学异常的特征。 Pliensbachian / Toarcian边界还记录了前体偏移,但其可能的原因不太受约束。 T-OAE在英国Yorkshire的克利夫兰盆地进行了集中研究,其沉积沉积物已经是Litho,生物和化学表现。在这里,我们提出了通过手持X射线荧光分析产生的新元素数据,以测试氧化还原敏感痕量金属和脱脂元素在上部Pliensbachian的表达到克利夫兰盆地中的四野。脱滴元素浓度(Al,Si,Ti,Zr)用作硅塑料籽粒含量的代理,因此海平变化,与克利夫兰盆地的先前序列地层解释相匹配。事件的时间表是讨论的,尽管我们的相对海平面的新元素代理变化显示了350厘米的循环性的证据,其可能指示与约克郡的405kyr偏心循环相似。总有机碳和氧化还原元素的趋势(S,Fe,Mo,As)确认在T-OAE上的广泛海洋脱氧的情景。约克郡和巴黎盆地在T-oae中的莫跨的可比趋势的相关性表明,在两个盆地中伴随着广泛缺氧的这种元素的类似海洋降低。约克郡的数据指向Mo缩减时的近违规趋势,这与表征CIE间隔的肠系条件的“盆地限制”模型相矛盾。 (c)2017年地质学家协会。 elsevier有限公司出版。保留所有权利。

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