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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Geology of the Eoarchean, > 3.95 Ga, Nulliak supracrustal rocks in the Saglek Block, northern Labrador, Canada: The oldest geological evidence for plate tectonics
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Geology of the Eoarchean, > 3.95 Ga, Nulliak supracrustal rocks in the Saglek Block, northern Labrador, Canada: The oldest geological evidence for plate tectonics

机译:Eoarchean地质,> 3.95 Ga,加拿大拉布拉多北部萨格勒克区块的Nulliak地壳上岩石:板块构造的最古老地质证据

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The Earth is a unique planet, which has been highly evolved, diversified and complicated through geologic time, and underwent many key events, including giant impact, magma ocean, core formation, large-scale mantle differentiation and late heavy bombardment, especially in its dawn. But, our knowledge of early Earth is limited due to the lack of the Hadean supracrustal rocks. The supracrustal rocks with the Eoarchean ages provide key evidence for the Earth's early evolutiont but few supracrustal rocks have been comprehensively investigated. Therefore, we mapped in seven areas of the Saglek Block, northern Labrador, where ancient supracrustal sequences are interleaved with a diverse assemblage of orthogneisses. Early studies suggested that some of them have the Mesoarchean ages because of the lack of the Mesoarchean Saglek dyke, but we found the Saglek dykes in the areas to recognize the Eoarchean Nulliak supracrustal rocks and Uivak Gneiss in all the areas. Recent reassessment of U-Pb dating and cathodoluminescence observation of zircons from the oldest suites of the Uivak Gneiss showed that the Uivak Gneiss has the Eoarchean age, >3.95 Ga, and forms the Iqaluk-Uivak Gneiss series. Because Our geological survey clearly showed that the Iqaluk-Uivak Gneisses were intruded into the Nulliak supracrustal belts, the Nulliak supracrustal rocks are the oldest supracrustal rock in the world. The supracrustal belts consist of piles of fault-bounded blocks, which are composed of the ultramafic rocks, mafic rocks and sedimentary rocks in ascending order, similar to modern ocean plate stratigraphy (OPS). In addition, small-scale duplex structures are found over the areas. The presence of duplex structure and OPS indicates that the >3.95 Ga Nulliak supracrustal belts originate from an accretionary complex. The presence of the accretionary complex, ophiolite and granitic continental crust provides the oldest evidence for the plate tectonics on the early Earth. (C) 2015 Elsevier B.V. All rights reserved.
机译:地球是一个独特的星球,它在地质时期经历了高度发展,多样化和复杂化,经历了许多重大事件,包括巨大的撞击,岩浆海洋,岩心形成,大规模的地幔分化和后期的重轰炸,尤其是在黎明时分。但是,由于缺乏Hadean上地壳岩石,我们对早期地球的了解有限。具欧陶纪时代的表壳岩石为地球的早期演化提供了重要证据,但对表壳岩石的研究很少。因此,我们绘制了拉布拉多北部萨格勒克地块的七个区域的地图,这些区域的古代上壳序列与各种正长片麻岩相交织。早期的研究表明,由于缺乏中古希腊的萨格里克堤坝,其中一些人具有中古希腊时代,但我们在该地区发现了萨格里克堤坝,以便在所有地区认识到欧陶纪的努利亚克上壳岩和Uivak片麻岩。最近对U-Pb年代的重新评估和从最古老的Uivak片麻岩组中对锆石的阴极发光观察表明,Uivak片麻岩具有Eoarchean年龄,> 3.95 Ga,形成了Iqaluk-Uivak片麻岩系列。因为我们的地质调查清楚地表明,伊卡鲁克-乌瓦克片麻岩被侵入了Nulliak上壳带,所以Nulliak上壳岩是世界上最古老的上壳岩。上地壳带由断层带界的块体组成,它们由超镁铁质岩,镁铁质岩和沉积岩按升序组成,类似于现代海床地层学(OPS)。此外,在该地区还发现了小规模的双工结构。双链体结构和OPS的存在表明> 3.95 Ga Nulliak上壳带起源于增生复合物。增生复合物,蛇绿岩和花岗岩大陆壳的存在为地球早期的板块构造提供了最古老的证据。 (C)2015 Elsevier B.V.保留所有权利。

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