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基于因子分析的云南都龙锡锌多金属矿床矿化规律研究 被引量:2
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作者 邹超 贾福聚 +7 位作者 燕永锋 念红良 崔东豪 秦德先 高建国 孙柱兵 李凌霄 杨卓 《矿物岩石地球化学通报》 CAS CSCD 北大核心 2019年第6期1170-1176,共7页
为了解都龙锡锌多金属矿床的矿化规律,以矿区勘查形成的570组主、微量元素分析数据为研究对象,在样品三维空间定位的基础上,进行了元素因子分析和空间分带研究。因子分析结果显示,F1因子高载荷元素为Ag、As和Cu,为中-低温前缘晕元素组合... 为了解都龙锡锌多金属矿床的矿化规律,以矿区勘查形成的570组主、微量元素分析数据为研究对象,在样品三维空间定位的基础上,进行了元素因子分析和空间分带研究。因子分析结果显示,F1因子高载荷元素为Ag、As和Cu,为中-低温前缘晕元素组合;F2因子高载荷元素为Zn、Cd和S,为中温矿上晕元素组合;F3因子高载荷元素为Sn、Ga和In,为高温矿上晕元素组合;F4由元素Ge单独组成,Cd、Ga和In也有一定载荷,为稀散金属元素组合。据矿体走向因子得分结果推测,都龙矿区成矿元素分带的关键因素可能是在矿区中部侵位的晚期花岗斑岩脉。矿体垂向因子得分结果显示,F1出现了多个高值,显示多期成矿作用的叠加。空间上稀散金属具有随主量金属元素Zn、Sn共同沉淀富集的特征,对稀散金属的综合回收利用十分有利。 展开更多
关键词 稀散金属 因子分析 矿化规律 都龙锡锌多金属矿床
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Ar-Ar Dating of Baimazhai Nickel-Copper-(PGE) Sulphide Deposit and Its Significance, Southeast Yunnan Province, China 被引量:1
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作者 ZHANG Xue-shu qin de-xian +1 位作者 Franco Pirajno NIAN Hong 《Journal of China University of Mining and Technology》 EI 2006年第2期200-205,共6页
The Baimazhai Ni-Cu- (PGE) sulphide deposit in southeast Yunnan Province is hosted in mafic-ultramafic intrusions associated with the Permian Emeishan large igneous province. The deposit, one of several in the provinc... The Baimazhai Ni-Cu- (PGE) sulphide deposit in southeast Yunnan Province is hosted in mafic-ultramafic intrusions associated with the Permian Emeishan large igneous province. The deposit, one of several in the province, exhibits field and petrographic features suggestive of post-magmatic modification. The mafic-ultramafic intrusions that host the Baimazhai sulphide ores show near-pervasive to pervasive hydrothermal alteration, with the sulphides be- ing spatially associated with hydrothermal minerals such as biotite, amphibole and chlorite. This intimate association suggests that the sulphide ores were subjected to deformational and hydrothermal redistribution and textural changes resulting in disseminated and brecciated ores. Geochemically the Baimazhai sulphide ores are enriched in Cu, Pd and Au which, according to published studies, reflects the action of hydrothermal fluids. Interestingly, Ar-Ar age data yielded plateau ages of about 160-170 Ma, which also supports the modification features of the sulfide ores. 展开更多
关键词 mafic-ultramafic intrusions Ni-Cu-(PGE) mineralization Ar-Ar dating sulphide remobilization Baimazhai
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