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首页> 外文期刊>Geology of Ore Deposits: A Journal of Theoretical and Applied Papers on All Aspects of Ore Genesis >The Yermakovsky Beryllium Deposit, Western Transbaikal Region, Russia: Geochronology of Tgneous Rocks
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The Yermakovsky Beryllium Deposit, Western Transbaikal Region, Russia: Geochronology of Tgneous Rocks

机译:俄罗斯西贝贝加尔地区Yermakovsky铍矿床:针状岩年代学

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摘要

The sequence of rock and ore formation at the Yermakovsky beryllium deposit is established on the basis of geological relationships and Rb-Sr and U-Pb isotopic dating. The Rb-Sr age of amphibolite-facies regional metamorphism is determined for quartz-biotite-plagioclase schist (266 ± 18 Ma) and dolo-mitized limestone (271 ± 12 Ma) of the Zun-Morino Formation. The U-Pb zircon age of premineral gabbro is 332 ± 1 Ma. The Rb-Sr age of gabbro is somewhat younger (316 ± 8.3 Ma), probably owing to the effect of Hercynian metamorphism on sedimentary rocks of the Zun-Morino Formation and gabbroic intrusion that cuts through it. The U-Pb zircon age of gneissose granite of the Tsagan Complex at the Yermakovsky deposit is 316 ± 2 Ma, i.e., close to the age of metamorphism superimposed on gabbro rocks. The U-Pb zircon age of preore granitic dikes, estimated at 325 ± 3 and 333 ± 10 Ma, is close to the age of gabbro. The Ar/Ar age of amphibole from a granitic dike (302.5 ± 0.9 Ma) probably displays a later closure of this isotopic system or the effect of superimposed processes. The Rb-Sr age of alkali syenite intrusion is 227 ±1.9 Ma. The U-Pb zircon age of alkali leucogranite stock pertaining to the Lesser Kunalei Complex is 226 ± 1 Ma, while the Rb-Sr age of beryllium ore is 225.9 ±1.2 Ma. These data indicate that beryllium ore mineralization is closely related in space and time to igneous rocks of the Lesser Kunalei Complex dated at 224 ± 5 Ma and varying from gabbro to alkali granite in composition. Thus, the preore Hercynian magmatism at the Yermakovsky deposit took place ~330 Ma ago and was completed by metamorphism dated at 271-266 Ma. The ore-forming magmatism and beryllium ore mineralization are dated at 224 ± 5 Ma. Postore magmatic activity is scarce and probably correlated with tectonic melange of host rocks.
机译:根据地质关系以及Rb-Sr和U-Pb同位素测年建立了Yermakovsky铍矿床的岩石和矿石形成序列。确定Zun-Morino组的石英-黑云母-斜长岩片岩(266±18 Ma)和白云岩化石灰岩(271±12 Ma)的Rb-Sr年龄。矿物辉长岩的U-Pb锆石年龄为332±1 Ma。辉长岩的Rb-Sr年龄要年轻一些(316±8.3 Ma),这可能是由于海西变质作用对Zun-Morino组沉积岩和辉长岩侵入的影响。 Yermakovsky矿床的Tsagan复杂的片麻岩花岗岩的U-Pb锆石年龄为316±2 Ma,即接近叠加在辉长岩上的变质年龄。普雷雷花岗岩堤的U-Pb锆石年龄估计为325±3和333±10 Ma,与辉长岩的年龄接近。花岗岩堤坝上的闪石的Ar / Ar年龄(302.5±0.9 Ma)可能表明该同位素系统的后期封闭或叠加过程的影响。碱性正长岩侵入的Rb-Sr年龄为227±1.9Ma。与小库纳雷伊矿床有关的碱白花岗石储量的U-Pb锆石年龄为226±1 Ma,铍矿石的Rb-Sr年龄为225.9±1.2 Ma。这些数据表明,铍矿石的矿化在空间和时间上与小库纳雷伊情结的火成岩(时间为224±5 Ma)密切相关,其成分从辉长岩到碱性花岗岩不等。因此,耶尔马科夫斯基矿床的前海西岩浆作用发生在〜330 Ma以前,并由271-266 Ma的变质作用完成。成矿岩浆作用和铍矿成矿的年代为224±5 Ma。 Postore岩浆活动很少,可能与宿主岩的构造混杂体有关。

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