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作 者:门兰静[1] 孙景贵[1] 陈冬[1] 陈雷[1] 梁树能[1] 逄伟[1] 常艳[1] 张朋[1] 聂喜涛[1]
出 处:《矿床地质》2010年第2期243-252,共10页Mineral Deposits
基 金:国家自然科学基金(批准号:40472050;40772052);南京大学内生金属成矿机制国家重点实验室基金(2006-2005;2006-2008;2008-2010)资助
摘 要:闹枝铜金矿床是延边内生金铜矿集区内的典型矿床之一,矿体主要为含金黄铜矿黄铁矿石英脉型。笔者运用显微测温、激光拉曼探针,对其矿物内的流体包裹体进行了系统研究。实验结果表明:①流体包裹体的类型主要为气液两相包裹体,其次为纯气相、富气相包裹体及纯液相包裹体,还有少量含子晶的多相包裹体;②流体包裹体的均一温度为150~410℃,与黄铁绢英岩、石英-黄铁矿、石英-多金属硫化物及石英方解石脉4个矿化蚀变阶段相对应的流体包裹体的均一温度分别为350~410℃、290~350℃、210~290℃、150~210℃;③流体包裹体的盐度w(NaCleq)为1.74%~20.97%,Ⅰ、Ⅱ、Ⅲ、Ⅳ矿化阶段成矿流体的盐度w(NaCleq)分别为2.396%~5.548%、2.24%~8.68%、1.74%~20.97%和6.3%;④流体包裹体的气体成分主要为H2O和CO2。结合前人的研究成果,笔者进一步确定该矿床的成矿流体具有深源岩浆热流体性质,在流体上升过程中曾发生过弱的沸腾作用,并在硫化物石英脉、多金属硫化物石英脉、方铅矿脉以及石英方解石脉形成过程中,伴有少量地下水或大气水的加入。The Naozhi Au-Cu deposit is a typical endogenic deposit in Yanbian and consists mainly of quartz vein-auriferous ore bodies. The fluid phases associated with auriferous quartz veins were investigated using microthermometry and Raman microprobe. Some conclusions have been reached through petrographic observation: ① there are mainly gas-liquid biphase (L+V) inclusions, subordinately pure volatile (V), volatile-rich (RV) and pure liquid inclusions (L), and minor daughter minerals-bearing polyphase inclusions (L+V+S); ② homogenization temperatures of fluid inclusions range from 150 ℃to 410℃, and the homogenization temperatures of four successive ore-forming stages characterized respectively by pyritization-sericitization- silification (stage Ⅰ), quartz-pyrite (stage Ⅱ), quartz-polymetallic sulfides (stage Ⅲ), and quartz-calcite (stage Ⅳ) are 350~410℃, 290~350℃, 210~290℃, and 150~210℃ respectively; ③ the salinities w(NaCleq) of these fluid inclusions vary between 1.74% to 20.97%, and the salinities w(NaCleq) of Ⅰ,Ⅱ, Ⅲ, Ⅳ ore-forming stages are 2.396%~5.548%, 2.24%~8.68%, 1.74%~20.97% and 6.3%,respectively; ④ the volatiles are mainly composed of H2O and CO2. Combined with previous researches on Naozhi deposit fluid inclusions, the authors have further confirmed that the ore-forming fluids from the upper-mantle or lower-crust boiled slightly during their upward migration to the earth's surface, that sulfide quartz veins, polymetallic sulfides-rich quartz veins and galena veins were formed successively with the evolution of the ore fluids, with the participation of a bit of groundwater or meteoric water, and that the formation of quartz and calcite veins meant the end of the ore-forming process.
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