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安徽安庆铁铜矿床物质来源与演化——地质和硫、碳、氧同位素制约 被引量:8
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作者 杨光树 温汉捷 +4 位作者 胡瑞忠 范良伍 燕永锋 毛致博 王凯 《大地构造与成矿学》 EI CAS CSCD 北大核心 2018年第4期651-663,共13页
安庆铁铜矿床是安徽沿江地区具代表性的大型铁铜矿床之一,其形成机制一直存在较大争议。本文在分析成矿地质特征的基础上,研究了矿石和围岩的硫、碳、氧同位素组成特征,探讨了该矿床的成矿物质来源与成矿过程。研究结果表明,矿床具有显... 安庆铁铜矿床是安徽沿江地区具代表性的大型铁铜矿床之一,其形成机制一直存在较大争议。本文在分析成矿地质特征的基础上,研究了矿石和围岩的硫、碳、氧同位素组成特征,探讨了该矿床的成矿物质来源与成矿过程。研究结果表明,矿床具有显著的水平分带特征。矿石硫化物δ^(34)S值范围为-6.5‰~10.6‰,变化大,闪长岩浆为成矿提供了大部分硫,前三叠纪碎屑地层和三叠纪围岩提供了部分硫;从闪长岩体到围岩,δ^(34)S值呈V字型变化,是不同来源硫混合的结果。碳酸盐矿物δ^(13)C范围为-5.5‰~2.0‰,从外带到内带呈下降趋势,表明碳主要源自岩浆热液,混入了部分地层碳。近矿围岩中δ^(13)C和δ^(18)O值相对地层偏低,是流体改造作用的结果。外接触带致密块状磁铁矿体具有最低的δ^(18)O值和部分贯入成因地质特征,可能为高温流体沿接触带和断层贯入充填的产物。综合研究认为,该矿床可能存在流体贯入充填与热液交代两种成矿形式。高温富铁流体贯入接触带形成了外带块状磁铁矿体,其分异热液与闪长岩体的交代作用、地层流体混入等综合作用形成了矽卡岩型铜矿体和含铜蚀变闪长岩,二者在空间上的叠加构成了矽卡岩型铁铜矿床,不同成矿方式的叠加导致了矿床分带及元素迁移特征有别于典型矽卡岩矿床。 展开更多
关键词 安庆铁铜矿床 矽卡岩 硫、碳、氧同位素 成矿过程 成矿物质来源
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Sulfur isotopic composition of the Bainiuchang super-large Ag polymetallic deposit,Yunnan Province,China: Implications for the source of sulfur in ore-forming fluids 被引量:7
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作者 XIE Hongjing ZHU Chaohui +2 位作者 ZHANG Qian WANG Dapeng fan liangwu 《Chinese Journal Of Geochemistry》 EI CAS 2009年第3期284-292,共9页
The Bainiuchang deposit in Yunnan Province, China, is located geographically between the Gejiu ore field and the Dulong ore field. In addition to >7000 t Ag reserves, the deposit possesses large-scale Pb, Zn, Sn re... The Bainiuchang deposit in Yunnan Province, China, is located geographically between the Gejiu ore field and the Dulong ore field. In addition to >7000 t Ag reserves, the deposit possesses large-scale Pb, Zn, Sn reserves and a mass of dispersed elements (i.e., In, Cd, Ge, Ga, etc.). Based on systematic studies of sulfur isotopic composition, the authors conclude: The Bainiuchang deposit experienced two epochs of metallogenesis, i.e., the Middle-Cambrian sea-floor exhalative sedimentary metallogenic epoch and the Yanshanian magmatic hydrothermal superimposition metallogenic epoch. In the two metallogenic epochs, the δ34S values of sulfides were all near 0, showing a tendency of being enriched slightly in heavy sulfur. The δ34S values of sulfides in the early metallogenic epoch are within the range of 2‰–5‰ with a peak value range of 2‰–3‰ and an average of 3.0‰, and those of sulfides in the late metallogenic epoch are within the range of 2‰–6‰ with a peak value of 3‰–4‰ and an average of 3.9‰. For the single metallogenic epoch, sulfur in the ore-forming fluids in the early epoch already reached isotopic equilibrium and was derived mainly from underneath the magma chamber or basement metamorphic igneous rocks. Sulfur in the sulfides in the late epoch was derived mainly from magmatic hydrothermal fluids formed in the process of remelting of the basement metamorphic igneous rocks. 展开更多
关键词 硫同位素组成 银多金属矿床 成矿流体 白牛厂 云南省 中国 超大型 成矿时代
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