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西藏努日铜多金属矿南矿段地质特征及短波红外光谱的勘查应用
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作者 汤立伟 王艺云 +5 位作者 陈文庆 陈斌 吴志山 缪恒毅 吴波 陈龙照 《地质与勘探》 CAS CSCD 北大核心 2024年第5期932-943,共12页
西藏努日斑岩-矽卡岩型矿床作为冈底斯成矿带上发现的唯一具有Cu-W-Mo矿化组合的大型矿床,带上找矿潜力较大,成果丰硕。随着区带成矿理论和矿区研究程度的深入,亟需使用新的方法和技术手段来满足区内深部找矿的需要。本次研究利用短波... 西藏努日斑岩-矽卡岩型矿床作为冈底斯成矿带上发现的唯一具有Cu-W-Mo矿化组合的大型矿床,带上找矿潜力较大,成果丰硕。随着区带成矿理论和矿区研究程度的深入,亟需使用新的方法和技术手段来满足区内深部找矿的需要。本次研究利用短波红外光谱技术SWIR(Short wave infrared),对努日铜多金属矿床南矿段中典型蚀变矿物进行研究,根据其矿床地质特征、蚀变矿物组合、分带特征以及光谱分析结果,总结了矿区典型蚀变矿物短波红外光谱特征值分布规律,进而确定其勘查标志。研究认为白云母的吸收峰位值Pos2200>2208 nm、伊利石的吸收峰位值Pos2200>2203 nm、绿泥石的吸收峰位值Pos2250>2249 nm的大量或连续出现,可以作为努日矿区矽卡岩型铜多金属矿床有效的蚀变矿物勘查指标;在此基础上,综合努日南矿段地质特征分析、蚀变矿物分布规律分析,对矿区深部斑岩型铜矿进行成矿预测,认为南矿段45线东侧深部的石英闪长(玢)岩具有斑岩型铜矿找矿的潜力,为矿区下一步的找矿提供了方向与思路。 展开更多
关键词 短波红外光谱 蚀变矿物 铜多金属 努日南矿段 冈底斯成矿带
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Genesis of the Nuri Cu-W-Mo Deposit,Tibet,China:Constraints from in situ Trace Elements and Sr Isotopic Analysis of Scheelite 被引量:1
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作者 WANG Yiyun WU Zhishan +8 位作者 CHEN Wenqing DU Qing’an TANG Liwei SHI Hongzhao MA Guotao ZHANG Zhi LIANG Wei WU Bo miao hengyi 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2024年第1期117-131,共15页
The Nuri deposit is the only Cu-W-Mo polymetallic deposit with large-scale WO3 resources in the eastern section of the Gangdese metallogenic belt,Tibet,China.However,the genetic type of this deposit has been controver... The Nuri deposit is the only Cu-W-Mo polymetallic deposit with large-scale WO3 resources in the eastern section of the Gangdese metallogenic belt,Tibet,China.However,the genetic type of this deposit has been controversial since its discovery.Based on a study of the geological characteristics of the deposit,this study presents mineralization stages,focusing on the oxide stage and the quartz-sulfide stage where scheelite is mainly formed,referred to as Sch-A and Sch-B,respectively.Through LA-ICP-MS trace element and Sr isotope analyses,the origin,evolutionary process of the oreforming fluid and genesis of the ore deposit are investigated.Scanning Electron Microscope-Cathodoluminescence(SEMCL)observations reveal that Sch-A consists of three generations,with dark gray homogenous Sch-A1 being replaced by relatively lighter and homogeneous Sch-A2 and Sch-A3,with Sch-A2 displaying a gray CL image color with vague and uneven growth bands and Sch-A3 has a light gray CL image color with hardly any growth band.In contrast,Sch-B exhibits a‘core-rim’structure,with the core part(Sch-B1)being dark gray and displaying a uniform growth band,while the rim part(Sch-B2)is light gray and homogeneous.The normalized distribution pattern of rare earth elements in scheelite and Sr isotope data suggest that the early ore-forming fluid in the Nuri deposit originated from granodiorite porphyry and,later on,some country rock material was mixed in,due to strong water-rock interaction.Combining the O-H isotope data further indicates that the ore-forming fluid in the Nuri deposit originated from magmatic-hydrothermal sources,with contributions from metamorphic water caused by water-rock interaction during the mineralization process,as well as later meteoric water.The intense water-rock interaction likely played a crucial role in the precipitation of scheelite,leading to varying Eu anomalies in different generations of scheelite from the oxide stage to the quartz-sulfide stage,while also causing a gradual decrease in oxygen fugacity(fO2)and a slow rise in pH value.Additionally,the high Mo and low Sr contents in the scheelite are consistent with typical characteristics of magmatic-hydrothermal scheelite.Therefore,considering the geological features of the deposit,the geochemical characteristics of scheelite and the O-H isotope data published previously,it can be concluded that the genesis of the Nuri deposit belongs to porphyry-skarn deposit. 展开更多
关键词 trace elements in situ Sr isotopes tungsten mineralization Gangdese metallogenic belt TIBET
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