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Biotic crisis in the late Ordovician: Insights from δ13Corg and δ13Ccarb isotopic systematics

机译:奥陶纪晚期的生物危机:δ13Corg和δ13Ccarb同位素系统学的见解

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New paired carbonate and organic-carbon carbon-isotope analyses from the latest Ordovician to earliest Silurian in the Yangtze Sea on the South China Plate, show a positive δ13C excursion in the latest Ordovician Hirnantian Stage, corresponding in time to large climatic fluctuation and severe biotic crisis. The climatic fluctuation is interpreted to have been induced initially by mountain building, and subsequent enhanced chemical and physical weathering, which would have increased riverine delivery to oceans and primary bioproductivity, and subsequent burial of organic matter, thereby resulting in climate cooling. Such large climatic fluctuation, together with increases in nutrients (e.g., biolimiting Fe), toxins (sulfide) and anoxic water supply,and subsequent enhanced riverine fluxes and microbial bloom, were likely responsible for the stepwise faunal demise of the O-S biotic crisis.
机译:华南板块最新的奥陶纪至最早的志留纪对碳酸盐和有机碳碳同位素的配对分析显示,在最新的奥陶纪Hirnantian阶段,δ13C偏移为正,及时对应于大的气候波动和严重的生物危机。据认为,气候波动最初是由山区建筑引起的,其后是化学和物理风化作用的增强,这将增加河流向海洋的输送和主要的生物生产力,并随后掩埋有机物,从而导致气候变冷。如此巨大的气候波动以及营养素(例如,生物限制的铁),毒素(硫化物)和缺氧供水的增加以及随后河流通量的增加和微生物繁殖的增加,可能是导致O-S生物危机的逐步动物灭绝的原因。

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