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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Compositional evolution of the upper continental crust through time, as constrained by ancient glacial diamictites
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Compositional evolution of the upper continental crust through time, as constrained by ancient glacial diamictites

机译:受古代冰川铁矾的约束,上大陆壳随时间的组成演变

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摘要

The composition of the fine-grained matrix of glacial diamictites from the Mesoarchean, Paleoproterozoic, Neoproterozoic, and Paleozoic, collected from four modern continents, reflects the secular evolution of the average composition of the upper continental crust (UCC). The effects of localized provenance are present in some cases, but distinctive geochemical signatures exist in diamictites of the same age from different localities, suggesting that these are global signatures. Archean UCC, dominated by greenstone basalts and to a lesser extent komatiites, was more mafic, based on major elements and transition metal trace elements. Temporal changes in oxygen isotope ratios, rare earth elements, and high field strength elements indicate that the UCC became more differentiated and that tonalite-trondhjemite-granodiorite suites became less important with time, findings consistent with previous studies. We also document the concentrations of siderophile and chalcophile elements (Ga, Ge, Cd, In, Sn, Sb, W, Tl, Bi) and lithophile Be in the UCC through time, and use the data for the younger diamictites to construct a new estimate of average UCC along with associated uncertainties. (C) 2016 Elsevier Ltd. All rights reserved.
机译:从四个现代大陆收集的中生代,元古生代,新元古代和古生代的冰川铁矾细粒基质的组成反映了上陆壳(UCC)平均组成的长期演化。在某些情况下会出现局部出处的影响,但是不同年龄的相同年龄的铁矾土中都存在独特的地球化学特征,这表明它们是全球特征。在主要元素和过渡金属微量元素的基础上,以绿岩玄武岩和较少程度的科马提岩为主的太古代UCC更具黑镁铁矿型。氧同位素比,稀土元素和高场强元素随时间的变化表明,UCC变得更加分化,并且斜长石-长晶铝榴石-闪闪发光的岩晶随时间的推移变得不那么重要了,与先前的研究一致。我们还记录了随着时间的推移,UCC中嗜铁亲和元素和嗜硫元素(Ga,Ge,Cd,In,Sn,Sb,W,Tl,Bi)和亲石性Be的浓度,并将这些数据用于年轻的铁矾土来构建新的估算的平均UCC以及相关的不确定性。 (C)2016 Elsevier Ltd.保留所有权利。

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