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THERMOCHRONOLOGY AND MATHEMATICAL MODELING OF THE FORMATION DYNAMICS OF RARE‐METAL‐GRANITE DEPOSITS OF THE ALTAI COLLISION SYSTEM

Authors :
N. G. Murzintsev
I. Yu. Annikova
A. V. Travin
A. G. Vladimirov
B. A. Dyachkov
V. I. Maslov
T. A. Oitseva
O. A. Gavryushkina
Source :
Геодинамика и тектонофизика, Vol 10, Iss 2, Pp 375-404 (2019)
Publication Year :
2019
Publisher :
Russian Academy of Sciences, Siberian Branch, Institute of the Earth's crust, 2019.

Abstract

The article presents an event correlation of the Permian‐Triassic granites of the Altai collision system, which are associated with industrial ore deposits and occurrences (Mo‐W, Sn‐W, Li‐Ta‐Be). The multi‐system and multi‐mineral isotope datings of igneous rocks and ore bodies (U/Pb, Re/Os, Rb/Sr, Ar/Ar‐methods) suggest the postcollisional (intraplate) formation of ore‐magmatic systems (OMS), the duration of which depended on the crustmantle interaction and the rates of tectonic exposure of geoblocks to the upper crustal levels.Two cases of the OMS thermal history are described: (1) Kalguty Mo‐W deposit associated with rare‐metal granite‐leucogranites and ongonite‐ elvan dykes, and (2) Novo‐Akhmirov Li‐Ta deposit represented by topaz‐zinnwaldite granites and the contemporary lamprophyre and ongonit‐elvan dykes. For these geological objects, numerical modeling was carried out. The proposed models show thermal cooling of the deep magmatic chambers of granite composition, resulting in the residual foci of rare‐metal‐granite melts, which are known as the petrological indicators of industrial ore deposits (Mo‐W, Sn‐W, Li‐Ta‐Be). According to the simulation results concerning the framework of a closed magmatic system with a complex multistage development history, the magmatic chamber has a lower underlying observable massif and a reservoir associated with it. A long‐term magmatic differentiation of the parental melt (a source of rare‐metal‐granite melts and ore hydrothermal fluids) takes place in this reservoir.

Details

Language :
English, Russian
ISSN :
2078502X
Volume :
10
Issue :
2
Database :
Directory of Open Access Journals
Journal :
Геодинамика и тектонофизика
Publication Type :
Academic Journal
Accession number :
edsdoj.0241af8de4c490a980684b02c05aa8b
Document Type :
article
Full Text :
https://doi.org/10.5800/GT-2019-10-2-0419