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龙门山铜多金属矿床成矿地质条件和控矿因素及其成因分析 被引量:1
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作者 邹林 赵晓霞 +3 位作者 刘忠法 张普斌 疏志明 郑明泓 《中南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2011年第9期2783-2789,共7页
通过对成矿地质条件进行分析,对地层、构造、岩浆岩与成矿的关系进行探讨,对矿床形成的控矿因素及矿床成因进行分析和总结。研究结果表明:矿区内与成矿有关的地层主要为三叠系中统月山组(T2y)含膏盐白云质灰岩和下统南陵湖组(T1n)灰岩;... 通过对成矿地质条件进行分析,对地层、构造、岩浆岩与成矿的关系进行探讨,对矿床形成的控矿因素及矿床成因进行分析和总结。研究结果表明:矿区内与成矿有关的地层主要为三叠系中统月山组(T2y)含膏盐白云质灰岩和下统南陵湖组(T1n)灰岩;控矿构造主要为月山岩体与围岩的接触带构造体系;成矿母岩主要为来自于上地幔的中酸性钙碱性燕山早期月山岩体;岩浆带来了大量的成矿流体、成矿物质和巨大的热能,是成矿的先决条件;构造为岩浆的侵位和就位以及成矿流体的运移和沉淀提供了良好的通道和场所;地层主要以其有利的岩性参与了成矿活动;矿体形态主要为透镜状、似层状,矿石组构主要为交代结构和块状、稠密浸染状构造,成矿作用主要为接触交代作用,围岩蚀变主要为石榴子石、透辉石等矽卡岩化及大理岩化,认为矿床的形成与燕山早期岩浆活动有密切关系,矿床成因属于以接触交代作用为主形成的矽卡岩型铜多金属矿床。 展开更多
关键词 成矿地质条件 控矿因素 矿床成因 龙门山铜多金属矿床
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Fluid inclusion characteristics of Longmenshan copper-polymetallic deposit in Yueshan,Anhui Province,China 被引量:1
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作者 刘忠法 邵拥军 +3 位作者 疏志明 彭南海 谢友良 张宇 《Journal of Central South University》 SCIE EI CAS 2012年第9期2627-2633,共7页
The types, composition and physico-chemical conditions of primary fluid inclusions were researched. The results show that the primary fluid inclusions contain vapor and liquid phase type (Type I), daughter mineral-b... The types, composition and physico-chemical conditions of primary fluid inclusions were researched. The results show that the primary fluid inclusions contain vapor and liquid phase type (Type I), daughter mineral-bearing type (Type II) and pure liquid phase type (Type III). The compositions of vapor are mainly H20 and CO2 with a tiny amounts of CH4 and H2; the liquid phase mainly contains Mg2+, Ca2+, Na+, K+, CI- and SO]-, and w(Na+)/w(K+)〉l; the homogenization temperatures of the primary fluid inclusions can be divided into 190-250 ℃, 250-340 ℃ and 360-420 ℃, corresponding to the salinities of 4%-9%, 9%-14%, and 14%-20.43% (NaC1 equivalent mass fraction), respectively. The mineralization process can be divided into three episodes: the silicatization stage, the quartz-sulfide stage, and the carbonatization stage, and all of them are associated with the ore-forming hydrothermal fluid activity. The origin of the hydrothermal fluid is from magrnatic water mainly, and later it mixes with the groundwater and meteoric water, which lead to the decrease of temperature and salinity. The decrease of salinity, temperature and pressure are the main causes of the metallogenic elements unloading and enriching in the favorable position. 展开更多
关键词 fluid inclusions metallogenic physico-chemical condition ore-forming fluid Longmenshan copper-polymetallic deposit
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