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The aerobic diagenesis of Mesoproterozoic organic matter

机译:中元古代有机物的好氧成岩作用

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摘要

The Xiamaling Formation in the North China Block contains a well-preserved 1400 Ma sedimentary sequence with a low degree of thermal maturity. Previous studies have confirmed the dynamic and complex nature of this evolving marine setting, including the existence of an oxygen-minimum zone, using multi-proxy approaches, including iron speciation, trace metal dynamics, and organic geochemistry. Here, we investigate the prevailing redox conditions during diagenesis via the biomarkers of rearranged hopanes from the finely laminated sediments of the organic-rich black shales in Units 2 and 3 of the Xiamaling Formation. We find that rearranged hopanes are prominent in the biomarker composition of the oxygen-minimum zone sediment, which is completely different from that of the sediment in the overlying anoxic strata. Since the transition process from hopanes to rearranged hopanes requires oxygen via oxidation at the C-l6 alkyl position of 17α(H)-hopanes, we infer that dissolved oxygen led to the transformation of hopane precursors into rearranged hopanes during the early stages of diagenesis. The use of hopanoid hydrocarbons as biomarkers of marine redox conditions has rarely been previously reported, and the hydrocarbon signatures point towards oxic bottom waters during the deposition of Unit 3 of the Xiamaling Formation, which is consistent with the earlier oxygen-minimum zone environmental interpretation of this Unit.
机译:华北地块下马岭组含保存完好的1400 Ma沉积层序,热成熟度低。先前的研究已经证实了这种不断演变的海洋环境的动态和复杂性,包括使用铁代理,痕量金属动力学和有机地球化学等多种代理方法,从而存在最小的氧气区。在这里,我们通过在下马岭组2和3单元中富含有机质黑页岩的精细层状沉积物中重排的hop烷的生物标记物,研究了成岩过程中普遍存在的氧化还原条件。我们发现,重排的烷烷在最小限氧区沉积物的生物标志物组成中很突出,这与上覆缺氧地层中的沉积物完全不同。由于从hop烷向重排hop烷的过渡过程需要氧通过17α(H)-庚烷的C-16烷基位置处的氧化,因此我们推断溶解的氧导致在成岩早期,of烷前体转变为重排hop烷。以前几乎没有报道使用hop类烃作为海洋氧化还原条件的生物标志物,并且在下马岭组第3单元沉积过程中,烃类特征指向有氧的底水,这与早期的氧最小区环境解释一致。这个单位。

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