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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Continental weathering following a Cryogenian glaciation: Evidence from calcium and magnesium isotopes
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Continental weathering following a Cryogenian glaciation: Evidence from calcium and magnesium isotopes

机译:低温成冰期后的大陆风化:来自钙和镁同位素的证据

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摘要

A marked ocean acidification event and elevated atmospheric carbon dioxide concentrations following the extreme environmental conditions of the younger Cryogenian glaciation have been inferred from boron isotope measurements. Calcium and magnesium isotope analyses offer additional insights into the processes occurring during this time. Data from Neoproterozoic sections in Namibia indicate that following the end of glaciation the continental weathering flux transitioned from being of mixed carbonate and silicate character to a silicate-dominated one. Combined with the effects of primary dolomite formation in the cap dolostones, this caused the ocean to depart from a state of acidification and return to higher pH after climatic amelioration. Differences in the magnitude of stratigraphic isotopic changes across the continental margin of the southern Congo craton shelf point to local influences modifying and amplifying the global signal, which need to be considered in order to avoid overestimation of the worldwide chemical weathering flux.
机译:根据硼同位素测量,可以推断出明显的海洋酸化事件和年轻的低温成冰作用的极端环境条件引起的大气二氧化碳浓度升高。钙和镁同位素分析为这段时间内发生的过程提供了更多见解。纳米比亚新元古代剖面的数据表明,冰川消融后,大陆风化通量从碳酸盐和硅酸盐混合特征转变为以硅酸盐为主的特征。结合盖白云岩中初级白云岩形成的影响,这导致海洋从酸化状态脱离,并在气候改善后恢复到较高的pH值。刚果南部克拉通大陆架大陆边缘地层同位素变化幅度的差异表明,局部影响会改变和放大全球信号,因此需要加以考虑,以避免过高估计全球化学风化通量。

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