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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Spatiotemporal redox heterogeneity and transient marine shelf oxygenation in the Mesoproterozoic ocean
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Spatiotemporal redox heterogeneity and transient marine shelf oxygenation in the Mesoproterozoic ocean

机译:Mesoprozoico海洋中时尚氧化还原异质性和瞬态海洋架氧合

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The Mesoproterozoic Era (1.6-1.0 Ga), long regarded as an interval of sluggish biotic evolution and persistently low atmospheric-oceanic oxygen levels, has become the subject of recent controversy regarding putative large-scale oxygenation events. In this study, we conducted a comprehensive investigation of redox, productivity, seawater sulfate concentrations, and hydrographic conditions for the similar to 1.4-1.32-Ga Xiamaling Formation in the shallow Hougou and mid-depth Huangtugui sections in the Yanshan Basin (North China). Integrated Fe-trace metal data suggest that bottom-water redox conditions mainly underwent a three-stage secular evolution: (1) suboxic (-oxic), (2) predominantly anoxic, and (3) oxic. Integrated productivity (TOC, P/Al, and Cu-Zn-Ni enrichment factors) and depositional system (major and trace elemental enrichment patterns) data suggest varying productivity levels during deposition of the Xiamaling Formation, with high productivity fueled mainly by intense open-marine upwelling. In combination with published data from the deep Xiahuayuan and Chicheng sections, a refined stratigraphic correlation framework was developed for the Xiamaling Formation based on the basinal upwelling event and existing lithostratigraphic framework. Within this new framework, sulfur concentration and pyrite delta S-34 (delta S-34(py)) data suggest a rise in marine sulfate concentrations at similar to 1.36 Ga. Furthermore, strong spatiotemporal redox heterogeneity was observed within the similar to 1.4-1.32-Ga Yanshan Basin, i.e., strong bottom-water anoxia (or euxinia) in deep sections and less anoxic (even oxic) conditions in shallow sections, although all sections experienced high productivity owing to oceanic upwelling. We propose a productivity-driven shelf oxygenation model to explain this spatiotemporal redox heterogeneity within the context of eustatic changes, an upwelling event, and the rise of oceanic sulfate concentrations at similar to 1.36 Ga. In this model, from initially low atmospheric oxygen levels, increasing surface productivity in shelf areas due to elevated nutrient supplies from upwelling not only intensified bottom-water anoxia through organic matter export but also stimulated expansion of the ocean-surface oxic layer through photosynthetic O-2 release, contributing to the development of contrasting bottom-water redox conditions between shallow and deep sections during the upwelling event identified in this study. Our model helps reconcile conflicting observations concerning Mesoproterozoic marine redox conditions, and provides new insights into putative Mesoproterozoic oceanic oxygenation events and their relationship to the evolution of early eukaryotes. (C) 2019 Elsevier Ltd. All rights reserved.
机译:MesproteroZoice(1.6-1.0 GA)长期以来,被视为迟缓的生物演化和持续低大气 - 海洋氧水平的间隔,已成为近期推定大规模氧合事件的争议的主题。在这项研究中,我们对燕山盆地浅侯沟和中坡黄虎武县(华北)的浅欧基和中山夏,综合调查了对氧化还原,生产力,海水硫酸盐浓度和水文条件。 。集成的Fe-Trace金属数据表明,底水氧化还原条件主要经历了三级世俗演化:(1)中药( - 氧基),(2)主要是缺氧,(3)氧化物。综合生产力(TOC,P / Al和Cu-Zn-Ni富集因子)和沉积系统(主要和痕量元素浓缩模式)数据表明在夏化地层沉积期间不同的生产率水平,主要通过强烈开放的高生产率推动海洋上升。结合来自深海源和奇城部分的公布数据,基于基于底座上升的事件和现有的Lithostraphic框架,为Xiamaling的形成开发了一种精致的地层相关框架。在这种新的骨架内,硫浓度和黄铁矿Delta S-34(Delta S-34(PY))数据表明,类似于1.36Ga的海洋硫酸盐浓度的增加。此外,观察到在类似于1.4-中的强时滞氧化还原异质性。 1.32-GA燕山盆地,即深段的强底水缺氧(或exxinia)在浅段的深部和较少的缺氧(均匀的氧化物)条件下,尽管由于海洋上升,所有部分都经历了高生产率。我们提出了一种生产力驱动的货架氧合模型,以解释这种时尚氧化还原异质性,在常见的变化,升值事件和海洋硫酸盐浓度的升高以及类似于1.36Ga的情况下。在该模型中,从最初低大气氧水平,由于营养物供应升高,因此通过有机物质出口较高的营养物供应不仅提高了营养物供应,而且通过光合O-2释放刺激了海洋表面氧化层的扩张,促进了较高的营养物质,这导致了对比度底部 - 本研究确定的浅层和深部之间的水氧化还原条件。我们的型号有助于调和有关Mesproterozoic海洋氧化还原条件的冲突观察,并为推定的中级古世古氧化事件提供新的见解及其与早期真核生物的演变的关系。 (c)2019年elestvier有限公司保留所有权利。

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