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Lower Precambrian of the Keivy Terrane, Northeastern Baltic Shield: A Stratigraphic Succession or a Collage of Tectonic Sheets?

机译:东北波罗的海盾Keivy Terrane的下前寒武纪:地层演替还是构造薄片拼贴?

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摘要

The Keivy Terrane in the northeastern Baltic Shield appreciably differs from the adjacent tectonic blocks. In the northwestern part of this terrane (the Serpovidny Range), an outlier of Paleoproterozoic supracrustal rocks called the Serpovidny structure is surrounded by Archean (?) Keivy high-alumina para-schists. As follows from structural and magnetic data, the Paleoproterozoic rocks are deformed into a tight sheath fold 8x2 km in size at the surface and 5 km in length along the sheath axis. Faults parallel to the boundaries of the layers and locally cutting them off at an acute angle are involved in folding as well. The outer boundaries of the Serpovidny structure are tectonic. This structure is complementary to a larger tectonic lens composed of the Keivy mica schists. It is concluded that all of the supracrustal rocks of the Serpovidny Range are in fact tectonic sheets and lenses deformed into sheath folds. The literature data show that kilometer-scale sheath folds occur throughout the Keivy paraschist belt and most likely were formed owing to thrusting of the Murmansk Craton onto the Keivy Terrane in the south-southwestern direction. Foliation and lineation related to thrusting have been established in the Archean silicic metavolcanics and peralkaline granites occupying the most part of the terrane. In contrast, the granitoids and gabbroanorthosites of the Archean basement, which form a block 90 x 20 km in the southwestern Keivy Terrane, were not affected by Paleoproterozoic deformation. In other words, a detached assembly of tectonic sheets composed of the upper and middle crustal rocks that underwent deformation at the initial stage of the Paleoproterozoic Lapland-Kola Orogeny and the Archean basement, which is free of this deformation, are distinguished. The depth of detachment is estimated at 20-25 km. The detachment of the upper and middle crust in the Keivy Terrane and its position in the structure of the Baltic Shield are consistent with a spatiotemporal succession that resulted in the formation of a Paleoproterozoic supercontinent and the Baltic Shield as its fragment. This succession began with the amalgamation and deformation of the Archean terranes in the northeast of the Baltic Shield during the Lapland-Kola Orogeny, the Keivy Terrane showing a record of the earliest reworking (1.97-1.93 Ga). The succession completed in the southern and southwestern parts of the shield (1.80 Ga) after the Svecofennian Orogeny, expressed in the accretion of island-arc terranes composed of Paleoproterozoic juvenile crust to the continent.
机译:东北波罗的海盾的Keivy Terrane与邻近的构造块明显不同。在该地的西北部(塞尔波维尼山脉),古元古代超壳壳岩石的离群被称为塞尔波维尼结构,周围环绕着太古宙(Keivy)高铝质副片岩。根据结构和磁性数据,古元古代岩石在表层变形为紧密的褶皱褶皱,尺寸为8x2 km,沿鞘膜轴线的长度为5 km。平行于层边界并以锐角局部切断它们的断层也参与折叠。 Serpovidny结构的外边界是构造性的。这种结构是由Keivy云母片岩组成的较大构造透镜的补充。结论是Serpovidny山脉的所有壳上岩石实际上都是构造薄片和晶状体变形为鞘褶。文献数据表明,在整个Keivy滑降带中都发生了千米级的鞘褶,最有可能是由于摩尔曼斯克克拉通向南西南方向的推力而形成的。在太古代的硅质超火山岩和占地大部分的高碱性花岗岩中已经建立了与逆冲有关的页岩和线。相比之下,太古宙基底的花岗岩和辉长岩原位岩在西南基伊韦地层形成一个90 x 20 km的块体,不受古元古代变形的影响。换句话说,区分了由上,中地壳岩石组成的构造薄片的分离组件,这些岩石在古元古代的拉普兰-科拉造山运动的初期和没有该变形的太古宙基底中经历了变形。分离深度估计为20-25公里。 Keivy Terrane中上地壳的分离及其在波罗的海盾构中的位置与时空演替相一致,从而形成了古元古代超大陆和波罗的海盾的碎片。这种继承始于在拉普兰-科拉造山运动期间波罗的海盾东北部的太古代山脉的融合和变形,基辅地形显示了最早的返工记录(1.97-1.93 Ga)。在Svecofennian造山运动之后,在盾构的南部和西南部(1.80 Ga)完成了演替,这表现为由古元古代生硬壳组成的岛弧地壳的增加。

著录项

  • 来源
    《Geotectonics》 |2011年第2期|p.127-141|共15页
  • 作者单位

    Geological Institute, Kola Science Center, Russian Academy of Sciences,ul. Fersmana 14, Apatity, Murmansk oblast, 184209 Russia;

    Geological Institute, Kola Science Center, Russian Academy of Sciences,ul. Fersmana 14, Apatity, Murmansk oblast, 184209 Russia;

    Geological Institute, Kola Science Center, Russian Academy of Sciences,ul. Fersmana 14, Apatity, Murmansk oblast, 184209 Russia,Murmansk State Technical University, Sportivnaya ul. 13, Murmansk, 183010 Russia;

  • 收录信息 美国《科学引文索引》(SCI);
  • 原文格式 PDF
  • 正文语种 eng
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