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Timing and characterization of the change in the redox state of uranium in Precambrian surface environments: A proxy for the oxidation state of the atmosphere.

机译:前寒武纪地表环境中铀氧化还原态变化的时间和特征:大气氧化态的代名词。

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摘要

The redox-sensitive geochemical behavior of uranium permits the use of Th/U ratios as a geochemical proxy for the oxidation state of the atmosphere and oceans during sedimentary processes. Due to the effects of post-depositional uranium mobility on Th/U ratios during events involving oxygenated fluids, direct measurements of Th/U ratios are often misleading, but the whole rock Pb isotope composition may be used to determine a sample's apparent time-integrated Th/U ratio (kappaa) and the timing associated with the onset of the U-Th-Pb geochemistry. Rare earth element (REE) concentrations were determined by isotope dilution mass spectrometry to evaluate the influence of multiple provenance components and potential mobility of Th, U, and Pb during post-depositional processes on the Th/U ratio.;The Pb isotope compositions and REE concentrations were determined for six Paleoproterozoic sedimentary sequences, which were the focus of previous studies involving the timing of the rise of atmospheric oxygen. The Mount McRae Shale, Huronian Supergroup, and Zaonezhskaya Formation have been interpreted as experiencing post-depositional alteration (perhaps associated with orogenic events) due to Pb-Pb ages that are younger than the likely depositional age and observed fractionation of REE in chondrite normalized REE patterns and interelement REE ratios (e.g. La/Nd, La/Yb, Eu/Eu*). Similar geochemical proxies have been interpreted as sedimentary geochemical features of the Timeball Hill Formation, Hotazel Formation, and Sengoma Argillite Formation. This study of Paleoproterozoic sedimentary units constrains the onset of U-Th decoupling, most likely due to the onset of oxidative weathering conditions, began by 2.32 Ga, the latest.;Index words. Pb isotopes, Rare earth elements, Th/U ratios, Time-integrated, Atmospheric evolution, Oxygen content of the atmosphere, U-Th decoupling
机译:铀的氧化还原敏感性地球化学行为允许使用Th / U比值作为沉积过程中大气和海洋氧化态的地球化学替代物。由于在涉及含氧流体的事件中沉积后铀迁移率对Th / U比的影响,因此直接测量Th / U比经常会产生误导,但整个岩石铅同位素组成可用于确定样品的表观时间积分Th / U比(kappaa)以及与U-Th-Pb地球化学发作相关的时间。通过同位素稀释质谱法确定稀土元素(REE)的浓度,以评估沉积后过程中多种来源成分以及Th,U和Pb的潜在迁移率对Th / U比的影响。确定了六个古元古代沉积序列的REE浓度,这是先前涉及大气氧上升时间的研究的重点。麦克雷山页岩,休伦期超群和Zaonezhskaya组已被解释为经历了沉积后的变化(可能与造山事件有关),这是由于Pb-Pb年龄小于可能的沉积年龄,并且在球粒陨石归一化REE中观察到REE的分级形态和元素间REE比率(例如La / Nd,La / Yb,Eu / Eu *)。类似的地球化学特征已经被解释为Timeball Hill组,Hotazel​​组和Sengoma Argillite组的沉积地球化学特征。这项对古元古代沉积单元的研究限制了U-Th脱钩的发生,最有可能是由于氧化风化条件的发生,最晚以2.32 Ga开始。铅同位素,稀土元素,Th / U比,时间积分,大气演变,大气中的氧气含量,U-Th解耦

著录项

  • 作者

    Pollack, Gerald D.;

  • 作者单位

    Georgia State University.;

  • 授予单位 Georgia State University.;
  • 学科 Geology.;Atmospheric Sciences.;Geochemistry.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 232 p.
  • 总页数 232
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;地质学;
  • 关键词

  • 入库时间 2022-08-17 11:38:39

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