花岗岩类(辉长岩-花岗岩)岩体成因及其成矿作用

Q4 Earth and Planetary Sciences
V. L. Khomichev
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引用次数: 0

摘要

大量花岗岩类深成岩体的深层地质和地球物理建模首次显示出与人们普遍认为的完全不同的性质。因此,关于矿化与它们之间联系的观点发生了巨大变化。许多岩石学上的矛盾和困惑都得到了合乎逻辑和科学依据的解决。对该问题从开始(初始岩浆的来源)到结束(花岗岩-矿石-岩浆系统的形成)进行了全面、全面的评述。在深成岩体形成史上,确立了挥发物和矿石浓度的三个阶段:第一个(行星)阶段——在初始玄武岩岩浆的室内分化过程中,与花岗岩类熔融隔离;第二个(区域性)-在残余白质花岗岩室形成期间第三个,主要(局部)-在室中侵入产矿质岩期间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
GENESIS OF GRANITOID (GABBRO-GRANITE) PLUTONS AND ASSOCIATED MINERALIZATION
Deep geological and geophysical modeling by a large number of granitoid plutons for the first time showed a completely different nature than was commonly believed. As a result, ideas about the connection of mineralization with them have changed dramatically. Many petrological contradictions and puzzles were solved logically and scientifically grounded. The complete and comprehensive review of the problem from the beginning (source of the initial magma) to the end (formation of the granite ore-magmatic system) is given. Three stages of the volatiles and ore matter concentration in the history of the plutons formation were established: the first (planetary) - during the intrachamber differentiation of the initial basalt magma with an isolation of granitoid melting; the second (regional) - during the formation of a residual leukogranite chamber the third, main (local) - during the intrusion of ore-generating apophyses from the chamber.
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来源期刊
Geology and Mineral Resources of Siberia
Geology and Mineral Resources of Siberia Earth and Planetary Sciences-Geology
CiteScore
0.30
自引率
0.00%
发文量
23
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