首页> 外文学位 >A comparison of geochemistry, carbonate mineralogy, and argillic alteration between the Dome prospect and the main gold resource of the Donlin Creek project in southwest Alaska.
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A comparison of geochemistry, carbonate mineralogy, and argillic alteration between the Dome prospect and the main gold resource of the Donlin Creek project in southwest Alaska.

机译:阿拉斯加西南部Donlin Creek项目的穹顶远景与主要金资源之间的地球化学,碳酸盐矿物学和泥质蚀变的比较。

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摘要

The Donlin Creek project, located in southwestern Alaska, contains a measured and indicated resource of ∼35 Moz of Au, with an inferred resource of 4 Moz. This district is spatially associated with a base-metal prospect at Dome, 6 km to the north-northeast. Previous studies indicated differences in salinities, temperatures, and some isotopic signatures at Dome compared to the resource area. A paragenetic sequence showing the temporal relationship of through-going veins, sulfide and carbonate mineralogical associations, and sulfur, carbon, and oxygen isotopic analyses demonstrate the genetic relationship between these two dissimilar ore deposit types.;The precious-metal mineral assemblage is composed of auriferous arsenopyrite-pyrite +/- stibnite, realgar, and native arsenic intimately associated with Fe-dolomite. Crystallization of euhedral arsenopyrite on porous pyrite-marcasite +/- pyrrhotite grain boundaries, mainly in the resource area, demonstrates the late timing of the precious-metal minerals compared to the base-metal mineral assemblage. The base-metal district is noted for pyrrhotite-sphalerite-chalcopyrite-pyrite-marcasite +/- tetrahedrite stockwork veins. Relative vein ages exhibited in this study further subdivide and identify the vein assemblages currently logged in the resource area. Diagrams of trace elements obtained from LA-ICP-MS indicate four carbonate phases within veins that formed before, during, and after gold deposition. These include an early calcite phase, which has only been observed at Dome; a pre-mineralization manganiferous calcite event; Fe-dolomite, which is consistently found with auriferous arsenopyrite; and a late-stage post-mineralization ankerite phase. Diagrams of trace elements from LA-ICP-MS data also show two quartz phases that formed before and after gold deposition.;Previous studies have indicated overlapping sulfur (delta34 S -8 to -16‰) and carbon (delta13C -4.6 to -13.4‰) isotopic data from the ACMA/Lewis resource area and the Dome prospect. Additional carbon (delta13C 1.8 to -16.7‰) and oxygen (delta18O 2.2 to 24.9‰) isotopic analyses completed in this study also show overlapping data. These data suggest similar origins and evolution patterns for the carbonate and sulfide mineralogies associated with the through-going veins, and they further imply a genetic relationship between the precious- and base-metal districts at Donlin Creek.;Carbonate staining methods show broad associations between manganiferous calcite +/- ankerite and higher gold grades. Previous studies demonstrated that NH4-illite alteration is strongly associated with gold intervals. These mineral indicators provide methods for gold exploration at Donlin Creek. Fifty-meter elevation maps illustrate kriging of gold grades and clay alteration data and they show NNE- and NW-trending spatial patterns consistent with the orientation of dikes and sills in the district.;The geochemical and mineralogical analyses completed prior to and in this study demonstrate the lateral relationship between the precious and base-metal districts. In addition, these methods provide information for further classification of this district. As such, this study concludes that the Donlin Creek precious-metal resource and closely located Dome base-metal assemblage fall into the high-level intrusion-related ore deposit-type that is characteristic of the Kuskokwim Mineral Belt.
机译:位于阿拉斯加西南部的Donlin Creek项目包含约35 Moz的Au的实测和指示资源,推断资源为4 Moz。该区域在空间上与东北北部6公里处的Dome的贱金属矿床有关。先前的研究表明与资源区相比,圆顶的盐度,温度和一些同位素特征存在差异。共生序列显示了贯穿的脉,硫化物和碳酸盐矿物学矿物学联系的时间关系,硫,碳和氧同位素分析证明了这两种不同矿床类型之间的遗传关系。贵金属矿物组合由铁金刚砂-黄铁矿+/-辉锑矿,雄黄和天然砷与铁-白云石密切相关。主要在资源区中的多孔黄铁矿-镁铁矿+/-黄铁矿晶粒边界上的全金属毒砂的结晶表明,与贱金属矿物组合相比,贵金属矿物的时机较晚。贱金属区为黄铁矿-闪锌矿-黄铜矿-黄铁矿-黄铁矿+/-四面体储矿脉。本研究中显示的相对静脉年龄进一步细分并确定了当前在资源区域中记录的静脉组合。从LA-ICP-MS获得的痕量元素图显示金矿沉积之前,之中和之后形成的脉内有四个碳酸盐相。其中包括早期方解石阶段,仅在Dome观察到。矿化前的锰方解石事件;铁白云石,通常与金铁毒砂一起发现;和后期矿化后的白云母阶段。 LA-ICP-MS数据中的痕量元素图还显示了金沉积前后形成的两个石英相;先前的研究表明硫(δ34S -8至-16‰)和碳(δ13C-4.6至-13.4)重叠‰)来自ACMA /刘易斯资源区和Dome前景的同位素数据。在这项研究中完成的其他碳(δ13C1.8到-16.7‰)和氧(δ18O2.2到24.9‰)同位素分析也显示出重叠的数据。这些数据表明与贯穿脉相关的碳酸盐和硫化物矿物学的起源和演化模式相似,并且它们进一步暗示了Donlin Creek的贵金属区和贱金属区之间的遗传关系。锰方解石+/-铁矿和更高的金品位。先前的研究表明,NH4-伊利石蚀变与金层间隔强烈相关。这些矿物指标为在Donlin Creek进行金矿勘探提供了方法。五十米高程图说明了金品位的克里金法和粘土蚀变数据,并显示了与该地区堤坝和窗台的方向一致的NNE和NW趋势空间格局;在此研究之前和研究中完成了地球化学和矿物学分析展示了贵金属和贱金属区域之间的横向关系。另外,这些方法为该地区的进一步分类提供了信息。因此,本研究得出的结论是,Donlin Creek贵金属资源和紧邻的Dome基本金属组合属于Kuskokwim矿带特征性的高侵入性矿床类型。

著录项

  • 作者

    Drexler, Heidi L.;

  • 作者单位

    University of Nevada, Reno.;

  • 授予单位 University of Nevada, Reno.;
  • 学科 Geology.;Mineralogy.;Geochemistry.
  • 学位 M.S.
  • 年度 2010
  • 页码 152 p.
  • 总页数 152
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:36:41

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