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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 >Post-depositional REE mobility in a Paleoarchean banded iron formation revealed by La-Ce geochronology: A cautionary tale for signals of ancient oxygenation
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Post-depositional REE mobility in a Paleoarchean banded iron formation revealed by La-Ce geochronology: A cautionary tale for signals of ancient oxygenation

机译:La-Ce地质学揭示的古地基带状铁形成中的沉积后重新流动性:古代氧化信号的警示性故事

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Precambrian banded iron formations (BIF) are chemical sedimentary deposits whose trace element signatures have been widely used to interrogate the chemical composition and redox state of ancient seawater. Here we investigated trace element signatures in BIF of the 3.22 Ga Moodies Group, Barberton Greenstone Belt (South Africa), which are interbedded with near-shore siliciclastic sedimentary rocks and represent one of the oldest known shallow-water occurrences of BIF. Unusual rare earth element (REE) signatures, notably with pronounced negative Ce anomalies in shale-normalized spectra, have been previously reported for chemical sediments of the Moodies Group, which we confirm here through an expanded dataset for Moodies BIF spanning three different localities. We find negative Ce anomalies as low as 0.2 Ce/Ce* that are associated with unusual enrichment of LREE relative to HREE in the sample set. While total REE abundances and certain REE features appear strongly related to the concentration of detrital indicators (e.g., Zr), and are likely primary, other features, notably LREE enrichment, cannot be explained as a primary feature of the sediment. This is better explained by later addition of REE from a LREE-enriched but Ce-depleted fluid that generated the significant negative Ce anomalies observed in surface samples of Moodies Group BIF. This REE addition event influenced both Sm-Nd and La-Ce isotope systematics, the latter yielding an isochron of 60 +/- 32 Ma, thus constraining the timing of emplacement of the negative Ce anomalies to the past 100 Ma, possibly upon surface exposure of the Barberton Greenstone Belt to wetter conditions during the Cenozoic. Our findings constitute a cautionary tale in that even the most immobile elemental redox proxies may be more sensitive to post-depositional modification than previously thought, and demonstrate the clear advantage offered by paleoredox proxies coupled to radiometric geochronometers to enable the direct dating of ancient signals of Earth surface oxygenation. (C) 2020 The Authors. Published by Elsevier B.V.
机译:Predambrian带状铁形成(BIF)是化学沉积沉积物,其微量元素签名已被广泛用于询问古海水的化学成分和氧化还原状态。在这里,我们在Barberton Greenstone Belt(南非)的3.22 Ga Moodies Group,Barberton Greenstone Belt(南非)中的TRACE元素签名与近岸硅灰质沉积岩互相堵塞,代表了BIF最古老的已知浅水发生之一。出于在页岩标准化光谱中的罕见稀土元素(REE)签名,显着呈现出在页岩标准化光谱中,已经针对Moodies集团的化学沉积物报告了我们通过一个扩展的数据集来确认Moodies BIF的扩展数据集。我们发现负CE异常低至0.2 CE / CE *,与样品集中的HREE相对于HREE有关的令人不寻常的富集。虽然总重量丰富和某些REE特征与脱毒指标的浓度强烈相关(例如,Zr),但可能是初级,其他特征,特别是富集的浓缩,不能作为沉积物的主要特征来解释。这最好通过从富含富含氧化的但CE耗尽的流体中添加REE来说解释的,所述CE耗尽的流体产生了在MODIES组BIF的表面样本中观察到的显着的负CE异常。该REE添加事件影响SM-ND和LA-CE同位素系统,后者产生60 +/- 32 mA的同种子,从而限制了负CE异常的施加时间到过去100 mA,可能在表面暴露时在新生代的沼地绿石皮带到潮湿的条件。我们的调查结果构成了一个警示故事,因为即使是最不动的元素氧化还原代理也可能比以前认为的沉积后修改更敏感,并展示了古罗索代理耦合到辐射地球数学计的明显优势,以实现古代信号的直接约会地面表面氧合。 (c)2020作者。由elsevier b.v出版。

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