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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 >Volcanic resurfacing and the early terrestrial crust: Zircon U-Pb and REE constraints from the Isua Greenstone Belt, southern West Greenland
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Volcanic resurfacing and the early terrestrial crust: Zircon U-Pb and REE constraints from the Isua Greenstone Belt, southern West Greenland

机译:火山重铺和早期地壳:西格陵兰岛南部伊苏阿绿石带的锆石U-Pb和REE约束

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摘要

The oldest known bona fide succession of elastic metasediments Occurs in the Isua Greenstone Belt. SW Greenland and consists of a variety of mica schists and rare metaconglomerates. The metasediments are in direct contact with a felsic metavolcanic lithology that has previously been dated to 3.71 Ga. Based on trace element geochemical data for 30 metasediments, we selected the six samples with highest Zr concentrations for zircon extraction. These samples all yielded very few or no zircon, Those extracted from mica schists yielded ion probe U/Pb ages between 3.70 and 3,71 Ga. One metaconglomerate sample yielded just a single zircon of 3.74 Ga age. The mica schist hosted zircons have U/Pb ages. Th/U ratios, REE patterns and Eu anomalies indistinguishable from zircon in the adjacent 3.71 Ga felsic metavolcanic unit. Trace element modelling requires the bulk of material in the metasediments to be derived from variably weathered mafic lithologies but some metasediments contain substantial contribution from more evolved source lithologies. The paucity of zircon in the mica schists is thus explained by incorporation of material from largely zircon-free volcanic lithologies. The absence of older zircon in the mica schists and the preponderance of mafic source material imply intense, mainly basaltic resurfacing of the early Earth. The implications of this process are discussed, Thermal considerations suggest that horizontal growth of Hadean crust by addition of mafic ultramafic lavas must have triggered self-reorganisation of the protocrust by remelting. Reworking oft Hadean crust may have been aided by burial of hydrated (weathered) metabasalt due to semi-continuous addition of new voluminous basalt Outpouring,;, This process Causes a bias towards eruption of Zr-saturated partial melts at the surface with O-isotope corn posit ion,, potentially different from the mantle. The oldest zircons hosted in sediments would have been buried to substantial depth or formed in plutons that crystallised at some depth from which it took hundreds of millions of years for them to be exhumed and incorporated into much younger sediments.
机译:在伊苏阿绿岩带中发现了最古老的弹性变质沉积的善意继承。格陵兰西南部地区,由各种云母片岩和稀有的巨集组成。这些准沉积物与早于3.71 Ga的长英质火山岩岩性直接接触。基于30种准沉积物的微量元素地球化学数据,我们选择了六个Zr浓度最高的样品进行锆石提取。这些样品全部生成很少或没有锆石,从云母片岩中提取的样品产生的离子探针的U / Pb年龄在3.70至3.71 Ga之间。一个大型集聚样品仅生成了一个3.74 Ga年龄的锆石。云母片岩托管的锆石具有U / Pb年龄。在相邻的3.71 Ga长丝质超火山单元中,Th / U比,REE模式和Eu异常与锆石没有区别。痕量元素建模要求变质沉积中的大部分物质来自变风化的铁镁质岩性,但是某些变质沉积包含了更多演化源岩性的实质性贡献。因此,云母片岩中锆石的稀缺是通过掺入大量不含锆石的火山岩岩层中的物质来解释的。云母片岩中没有较老的锆石,而镁铁质源物质占主导地位意味着强烈的,主要是早期地球的玄武质重铺。讨论了该过程的含义。热学方面的考虑表明,通过添加镁铁质超镁铁质熔岩而使哈迪亚硬皮的水平生长必须通过重熔触发了原壳的自我重组。由于半连续添加大量新的玄武岩,浇注水合(风化)偏玄武岩可能有助于哈德地壳的再造;玉米正离子,可能与地幔不同。沉积物中最古老的锆石将被埋藏到很深的深度,或者会在一定深度结晶的云母中形成,从中挖掘出它们需要花费数亿年的时间,并将其整合到更年轻的沉积物中。

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