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Reconstructing the seafloor environment during sapropel formation using benthic foraminiferal trace metals, stable isotopes, and sediment composition

机译:利用底栖有孔虫微量金属,稳定同位素和沉积物组成重建砂体形成过程中的海底环境

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摘要

The evolution of productivity, redox conditions, temperature, and ventilation during the deposition of an Aegean sapropel (S1) is independently constrained using bulk sediment composition and high-resolution single specimen benthic foraminiferal trace metal and stable isotope data. The occurrence of benthic foraminifer, Hoeglundina elegans (H. elegans), through a shallow water (260 m) sapropel, permits for the first time a comparison between dissolved and particulate concentrations of Ba and Mn and the construction of a Mg/Ca–based temperature record through sapropel S1. The simultaneous increase in sedimentary Ba and incorporated Ba in foraminiferal test carbonate, (Ba/Ca)H. elegans, points to a close coupling between Ba cycling and export productivity. During sapropel deposition, sedimentary Mn content ((Mn/Al)sed) is reduced, corresponding to enhanced Mn2+ mobilization from sedimentary Mn oxides under suboxic conditions. The consequently elevated dissolved Mn2+ concentrations are reflected in enhanced (Mn/Ca)H. elegans levels. The magnitude and duration of the sapropel interruption and other short-term cooling events are constrained using Mg/Ca thermometry. Based on integrating productivity and ventilation records with the temperature record, we propose a two-mode hysteresis model for sapropel formation.
机译:使用大块沉积物成分和高分辨率单样本底栖有孔虫微量金属和稳定的同位素数据,分别限制了爱琴海腐石(S1)沉积过程中生产率,氧化还原条件,温度和通风的演变。通过浅水(260 m)腐殖质的底栖有孔虫Hoeglundina elegans(H. elegans)的出现,首次允许对Ba和Mn的溶解浓度和颗粒浓度进行比较,以及基于Mg / Ca的构造通过腐泥S1记录温度。沉积钡的同时增加,并在有孔虫测试碳酸盐(Ba / Ca)H中掺入Ba。线虫指出钡族循环与出口生产率之间的紧密联系。在腐泥沉积过程中,沉积的Mn含量((Mn / Al)sed)降低,这对应于在低氧条件下从沉积的Mn氧化物中提高的Mn2 +迁移率。因此,提高的溶解Mn2 +浓度反映在增强的(Mn / Ca)H中。线虫水平。 prop腐中断和其他短期冷却事件的大小和持续时间受Mg / Ca测温法的约束。在将生产率和通风记录与温度记录相结合的基础上,我们提出了一种用于腐殖土形成的两模式滞后模型。

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