Diversity of Mineralization and Spectrum of the Gejiu Superlarge Tin-Copper Polymetallic Deposit, Yunnan, China

Zhang Shouting , Xia Qinglin , Zhao Pengda , Gao Yang
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引用次数: 9

Abstract

The Gejiu deposit is a superlarge tin-copper polymetallic ore-forming concentration area characterized by excellent metallogenic geological settings and advantageous ore-controlling factors. The deposit displays diverse mineralization properties due to different minerals and mineral deposit types. Based on the principal metallogenic factors, metallogenic mechanisms, mineralized components, and occurrence of mineral deposits or ore bodies, the Gejiu mineral district can be divided into 2 combinations of metallogenic series, 4 metallogenic series, 8 subseries, and 27 mineral deposit types. Spatial zonality is evident. The distribution regularity of the elements in both plane and section is Be-W, Sn (Cu, Mo, Bi, Be)-Sn, Pb, Ag-Pb, Zn around a granitic intrusion. The metallogenic epoch is mainly concentrated in the late Yanshanian. During this period, large-scale metallogenic processes related to movement caused by tectonics and magmatism occurred, and a series of magmatic hydrothermal deposits formed. The ore-forming processes can be divided into 4 stages: the silicate stage, the oxide stage, the sulphide stage, and the carbonate stage. Based on the orderliness and diversity (in terms of time, space, and genesis) of the mineralization, the authors have developed a comprehensive spectrum of ore deposits in the Gejiu area. This newly proposed diversity of mineralization and the spectrum developed in this work are useful not only for interpreting the genesis of the Gejiu deposit but also for improving mineral exploration in the area, and in particular, for finding large deposits.

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云南个旧特大锡铜多金属矿床成矿多样性及光谱特征
个旧矿床是一个超大型锡铜多金属成矿集中区,具有良好的成矿地质环境和有利的控矿因素。由于矿物和矿床类型的不同,矿床表现出不同的矿化性质。根据主要成矿因素、成矿机制、矿化成分、矿床或矿体的产状,个旧矿区可划分为2个成矿系列组合、4个成矿系列、8个亚系列、27种矿床类型。空间分带性很明显。花岗岩侵入体周围元素在平面和剖面上的分布规律为Be-W、Sn(Cu、Mo、Bi、Be)-Sn、Pb、Ag-Pb、Zn。成矿时代主要集中在燕山晚期。在此期间,发生了与构造和岩浆作用引起的运动有关的大规模成矿过程,形成了一系列岩浆热液矿床。成矿过程可分为4个阶段:硅酸盐阶段、氧化物阶段、硫化物阶段和碳酸盐阶段。根据矿化的有序性和多样性(在时间、空间和成因方面),作者开发了个旧地区矿床的综合谱。这一新提出的矿化多样性和本工作中开发的光谱不仅有助于解释个旧矿床的成因,而且有助于改进该地区的矿产勘探,特别是寻找大型矿床。
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