中乌拉尔巴日诺夫辉长-超基岩地块的辉长岩:物质组成和年龄

Yu. V. Erokhin, K. Ivanov, V. Smirnov, A. V. Zakharov, A. E. Chugaev
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摘要

研究课题。中乌拉尔东段巴治诺夫辉长岩-超基岩地块的索氏闪孔岩(变辉长岩)。材料和方法。在俄罗斯科学院(叶卡捷琳堡)乌拉尔分院地质地质研究所、乌拉尔国立矿业大学(叶卡捷琳堡)、俄罗斯科学院(米斯)乌拉尔分院矿物学研究所、俄罗斯科学院(莫斯科)矿床地质、岩石学、矿物学和地球化学研究所和莫斯科国立大学(莫斯科)的分析实验室中,研究了metagabbroids的物质组成及其矿物学。锆石的同位素分析是在圣彼得堡VSEGEI同位素研究中心的SHRIMP-II离子微量分析仪上进行的。所研究的偏辉长岩的矿物组成包括:斜黝帘石(黝帘石、绿帘石)、镁角闪石(寄生石、透闪石)、钠长石、斜辉石和白云石。岩石地球化学资料显示,辉长岩-角闪岩是在辉长岩和橄榄辉长-辉长岩之后形成的,属于辉长岩-超玄武岩杂岩的高岭山型构造。U-Pb测年结果显示,这些锆石的年龄大多集中在康考迪亚线以下,形成一条不康考迪亚线,其上部与康考迪亚线的交点对应的年龄为1992 Ma。图中位于concordia线下方的两个点虽然没有落在discordia线的延长线上,但明显反映了变质作用的中间阶段的影响,256 Ma和251 Ma的两个一致年龄点记录了最后一次构造-热事件的时间。闪石-角闪岩是在绿片岩相条件下形成的。局部变质作用达到沸石相,有热液改造的迹象。巴治诺夫地块的原生辉长岩极有可能形成于上俯冲盆地条件下。U-Pb法测定的锆石年龄约为2 Ga,表明锆石结晶发生在地幔岩中。目前尚不能明确地解释这些锆石颗粒在巴治诺夫地块的变质斑岩中的存在;人们提出了几种可能的解释。年龄最小的锆石(256和251 Ma)很可能是在附近Aduy花岗岩-浅花岗岩杂岩的热作用下变质而形成的。
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Gabbroids of the Bazhenov gabbro-hyperbasite massif (Middle Urals): Material composition and age
Research subject. Saussurite-amphibole rocks (metagabbroids) of the Bazhenov gabbro-hyperbasite massif (eastern sector of the Middle Urals).Materials and methods. The material composition of metagabbroids and their mineralogy were studied in the analytical laboratories of the Institute of Geological Geology, Ural Branch, Russian Academy of Sciences (Ekaterinburg), Urals State Mining University (Ekaterinburg), Institute of Mineralogy, Ural Branch, Russian Academy of Sciences (Miass), Institute of Geology of Ore Deposits, Petrography, Mineralogy and Geochemistry, Russian Academy of Sciences (Moscow), and Moscow State University (Moscow). Isotope analyzes of zircon were performed on a SHRIMP-II ion microanalyzer at the Center for Isotope Research of VSEGEI (St.Petersburg).Results. The metagabbroids under study feature the following mineral composition: clinozoisite (zoisite, epidote), magnesian hornblende (pargasite, tremolite), albite, clinochlore, and dolomite. According to petro-geochemistry data, saussurite-amphibole rocks were formed after gabbronorites and olivine gabbro-norites, belonging to the alpine-type formation of gabbro-hyperbasite complexes. U-Pb dating showed the ancient age of zircons from metagabbroids, most of the analyzes are grouped below the concordia line, forming a discordia line, the upper intersection of which with the concordia corresponds to the age of 1992 Ma. Two points on the diagram located below the concordia line, although not falling on the continuation of the discordia line, apparently reflect the influence of intermediate stages of metamorphism, and two points with concordant ages of 256 and 251 Ma record the time of the last tectono-thermal episode.Conclusions. The formation of saussurite-amphibole rocks took place under the conditions of greenschist facies. In local areas of the massif, metamorphism reached the zeolite facies with signs of hydrothermal reworking. The primary gabbroids of the Bazhenov massif were most likely formed under the conditions of a suprasubduction basin. The age of zircons of about 2 Ga obtained by the U-Pb method indicates that the crystallization of the studied zircons occurred in the mantle rocks. It is not yet possible to unambiguously explain the presence of grains of these zircons in the metagabbroids of the Bazhenov massif; several possible explanations have been proposed. Zircons with the youngest age (256 and 251 Ma) were most likely formed as a result of metamorphic transformations under thermal influence from the nearby Aduy granite-leucogranite complex.
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