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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 Deposit, Western Transbaikal Region, Russia: Isotopic and Geochemical Parameters and Sources of Beryllium-Bearing Granitoids and Other Rocks
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The Yermakovsky Deposit, Western Transbaikal Region, Russia: Isotopic and Geochemical Parameters and Sources of Beryllium-Bearing Granitoids and Other Rocks

机译:俄罗斯西贝贝加尔地区Yermakovsky矿床:含铍的花岗岩和其他岩石的同位素和地球化学参数及来源

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摘要

An isotopic study of igneous and metamorphic rocks has been carried out at the Yermakovsky ber-trandite-phenakite-fluorite deposit. It has been established that the model age of the schists pertaining to the Zun-Morino Formation is 1360-1260 Ma. In Nd and Sr isotopic composition, these schists deviate from the isotopic composition of the continental crust and are close in this respect to the enriched mantle reservoir (EM-II). The model age of carbonate rocks of the Zun-Morino Formation is 1330-1020 Ma. The Middle Riphean model age of the Zun-Morino Formation is interpreted as the age of its protolith. According to the Sr and Nd isotopic data, all preore igneous rocks (granitic dikes, gabbroic rocks, and gneissose granite of the Tsagan Complex) were formed with the participation of continental crustal material. Synore basic dikes, alkali leucogranite stock, and syenite intrusion are considered to be mixtures of mantle components (DM+HIMU) and various continental crustal components (Tsagan gneissose granite, crystalline schists, the mean composition of granitoids of the Angara-Vitim batholith as an estimate of average composition of the regional continental crust). Synore igneous rocks are genetically cognate and related to the magmatic activity in the Western Transbaikal Rift Zone presumably formed in the Triassic under effect of a mantle plume.
机译:Yermakovsky ber-tliteite-phenakite-fluorite矿床进行了火成岩和变质岩的同位素研究。已经确定,与准-莫里诺组有关的片岩的模型年龄为1360-1260 Ma。在Nd和Sr同位素组成中,这些片岩偏离了大陆壳的同位素组成,并且在这方面与富集的地幔储层(EM-II)十分接近。 Zun-Morino组碳酸盐岩的模型年龄为1330-1020 Ma。 Zun-Morino组的中里菲亚模范时代被解释为它的原石时代。根据Sr和Nd同位素数据,在大陆地壳物质的参与下,形成了所有先有的火成岩(碎屑岩,辉长岩和Tsagan复杂的片麻岩花岗岩)。 Synore的基本堤防,碱白花岗石储层和正长岩侵入被认为是地幔组分(DM + HIMU)和各种大陆地壳组分(Tsagan片麻岩花岗岩,晶体片岩,安加拉-维蒂姆岩基的花岗岩类平均组成)的混合物。区域大陆壳平均组成的估算值)。 Synore火成岩具有遗传同源性,并且与西部跨贝加尔湖裂谷带的岩浆活动有关,该区域可能是在地幔柱作用下在三叠纪形成的。

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