提格里诺耶和扎比托耶锡-锡矿床(滨海边疆区锡霍特-阿林中部)矿石-岩浆系统源中稀有金属锂-F花岗岩熔体的演变

IF 0.8 4区 地球科学 Q3 GEOLOGY
O. A. Gavryushkina, E. N. Sokolova, S. Z. Smirnov, N. N. Kruk, A. V. Ponomarchuk, V. G. Tomas
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引用次数: 0

摘要

摘要 本文论述了 Tigrinoe 和 Zabytoe 矿床岩石的岩石学和地球化学特征,提供了它们的矿物成分、对石英中的云母和矿物形成包裹体的详细研究结果。研究表明,Zabytoe 和 Tigrinoe 矿床的矿石-岩浆系统(OMS)的发展与相同的稀有金属 Li-F 熔体有关。经证实,Tigrinoe 矿床的花岗岩可被视为 Zabytoe 矿床花岗岩的分化程度较高的类似物。研究还提供了有关这些矿床的 OMSs 岩浆发展阶段历史差异的新数据。这两个矿床熔体的演化都是在高流体压力下进行的。所研究的两个岩浆岩矿床在矿石成矿规模上的差异可能是由于岩浆源演化的流体机制不同,以及在提格里诺岩浆岩矿床的开发过程中,跨岩浆流的参与程度更高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Evolution of Rare-Metal Li–F Granite Melts in Sources of Ore-Magmatic Systems of Tigrinoe and Zabytoe Sn–W deposits (Central Sikhote-Alin, Primorye)

Evolution of Rare-Metal Li–F Granite Melts in Sources of Ore-Magmatic Systems of Tigrinoe and Zabytoe Sn–W deposits (Central Sikhote-Alin, Primorye)

Abstract

The present paper considers petrographic and geochemical features of rocks of the Tigrinoe and Zabytoe stocks, provides their mineral composition, the results of the detailed study of micas and mineral-forming inclusions in quartz. It is shown that the development of ore-magmatic systems (OMSs) of the Zabytoe and Tigrinoe deposits is associated with the same rare-metal Li–F melts. It is confirmed that granitoids of the Tigrinoe stock can be considered as more differentiated analogs of granitoids of the Zabytoe stock. New data concerning the differences in the history of the magmatic stage of development of the OMSs of these deposits are presented. The evolution of melts of both deposits took place at high fluid pressure. Differences in the scale of ore mineralization of the two RMSs under consideration could be due to different fluid regime of magmatic sources evolution and more significant participation of transmagmatic fluid flows in the development of the Tigrinoe OMS.

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来源期刊
Geology of Ore Deposits
Geology of Ore Deposits 地学-地质学
CiteScore
1.10
自引率
14.30%
发文量
24
审稿时长
6-12 weeks
期刊介绍: Geology of Ore Deposits is a periodical covering the topic of metallic and nonmetallic mineral deposits, their formation conditions, and spatial and temporal distribution. The journal publishes original scientific articles and reviews on a wide range of problems in theoretical and applied geology. The journal focuses on the following problems: deep geological structure and geodynamic environment of ore formation; distribution pattern of metallogenic zones and mineral deposits; geology and formation environment of large and unique metallic and nonmetallic deposits; mineralogy of metallic and nonmetallic deposits; physicochemical and isotopic characteristics and geochemical environment of ore deposition; evolution of ore-forming systems; radiogeology and radioecology, economic problems in exploring, developing, and mining of ore commodities.
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