叶尼塞山脊里亚扎诺夫斯基丘的新新生代早期花岗岩作为西伯利亚克拉通西缘格伦维尔造山运动的指标

A. Nozhkin, O. Turkina, I. Likhanov, Y. Ronkin
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引用次数: 0

摘要

对叶尼塞海脊地质历史的研究不仅对了解古代陨石坑边界移动带的构造演化非常重要,而且对解决西伯利亚陨石坑是否是罗迪尼亚超大陆的一部分的问题也非常重要。对位于叶尼塞海脊叶尼塞断裂带附近的梁赞诺夫斯基花岗岩群岩石进行的矿物学-岩石学、地球化学和同位素-测时学研究获得了有关岩石地球化学组成、岩石成因特征、锆石的 U-Pb 年龄以及锶和 147Sm-143Nd 同位素参数的新数据。这些岩石以高铁素体过铝酸盐岩为代表,可与A-花岗岩或高度分化的I-花岗岩相媲美。它们的成分从正常花岗岩演变为亚碱性花岗岩和白花岗岩,其特征是高电荷和放射性元素浓度增加。岩石的同位素(锶、钕)特征表明,它们产生于古老的地壳基质,平均年龄相当于古近代。这些花岗岩形成于中新元古代边界(1013±9.9Ma),相当于格勒尼维尔造山运动的早期阶段和罗迪尼亚超大陆结构的形成时间。这一区域地壳演化过程与前寒武纪大型陨石坑(劳伦西亚和波罗的海)外围的同步演替和类似构造热事件相关,从而证实了所提出的将西伯利亚陨石坑纳入罗迪尼亚的古大陆重建的可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EARLY NEOPROTEROZOIC GRANITOIDS IN THE RYAZANOVSKY MASSIF OF THE YENISEI RIDGE AS INDICATORS OF THE GRENVILLE OROGENY AT THE WESTERN MARGIN OF THE SIBERIAN CRATON
Studies of the geological history of the Yenisei Ridge are important not only for understanding the tectonic evolution of mobile belts at the boundaries of ancient cratons but also for problem solving whether the Siberian craton was a part of the Rodinia supercontinent. The mineralogical-petrological, geochemical and isotope-geochronological studies yielded new data on the petrogeochemical composition, petrogenesis features, U-Pb age of zircon, and Sr and 147Sm-143Nd isotopic parameters for the rocks of the Ryazanovsky granitoid massif located near the Yenisei fault zone of the Yenisei Ridge. These rocks are represented by high-ferruginous peraluminous varieties and are comparable to A-granites or highly differentiated I-granites. Their composition evolves from normal to subalkaline granites and leucogranites, characterized by increased concentrations of highly charged and radioactive elements. Isotopic (Sr, Nd) characteristics of the rocks indicate generation from an ancient crustal substrate, the average age of which corresponds to the Paleoproterozoic. The formation of these granites at the Meso-Neoproterozoic boundary (1013±9.9 Ma) corresponds to the early stage of the Grenville orogeny and the formation time of the structure of the Rodinia supercontinent. This episode of regional crustal evolution is correlated with the synchronous successions and similar style of tectonothermal events on the periphery of large Precambrian cratons (Laurentia and Baltica), thus confirming the reliability of the proposed paleocontinental reconstructions of incorporation of the Siberian craton into the Rodinia.
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