首页> 外文学位 >Geochemistry and Au Mineralization within the Kakagi-Rowan Lakes Greenstone Belt: A Study of the Angel Hill Gold Zone.
【24h】

Geochemistry and Au Mineralization within the Kakagi-Rowan Lakes Greenstone Belt: A Study of the Angel Hill Gold Zone.

机译:Kakagi-Rowan湖绿石带内的地球化学和金矿化:对天使山金矿区的研究。

获取原文
获取原文并翻译 | 示例

摘要

The Angel Hill Gold Zone of the West Cedartree Gold Project has been exposed over 300 meters along the internal contact of ultramafic and gabbroic rocks within the Kakagi Sill. The sill lies within the Kakagi-Rowan Lakes greenstone belt and has intruded the mafic metavolcanic rocks of the Snake Bay Formation and the felsic to intermediate etavolcanic rocks of the Emm Bay Formation. The Snake Bay Formation consists of pillowed and massive basalts and fine-grained tuffs. The Emm Bay Formation stratigraphically overlies the Snake Bay Formation and consists of tuffs and tuff breccias. Trace element geochemistry and primitive mantle normalised plots suggest that both the rocks of the Kakagi Sill and the Snake Bay Formation are comprised of metasomatsed island arc tholeiite basalts whereas the rocks of the Emm Bay Formation are characterised of a back island arc affinity.;The Angel Hill Gold Zone occurs as extensive carbonate and quartz flooding within a zone of brittle deformation termed the master fault. A distinguishing feature of the gold zone is the presence of extensive fuchsite alteration forming large mats up to 20 meters wide. Mineralization in the Angel Hill Gold Zone consists of free gold and sylvanite occurring as inclusions within and rimming pyrite grains, as well as precipitated along small fractures in quartz. Associated mineralization includes pyrite as well as galena and sphalerite. Textural relationships and stable isotope analyses of carbonate (delta 18O 13.6 to 17.9 ‰), quartz (delta18O 8.8 to 13.1 ‰), pyrite (delta34S -0.8 to 1.0 ‰), sphalerite (delta34S 1.3 to 5.4 ‰), and galena (delta 34S 5.9 to 7.3 ‰) suggest multiple episodes of brittle deformation and fluid influx within a protracted lode gold system. The combination alteration assemblages and stable isotope characteristics suggest that the Angel Hill Gold Zone formed as a result of listwanite metasomatism with input of fluids from both magmatic and metamorphic sources. These fluids propagated as a result of the brittle faulting that occurred due to a competency contrast between the ultramafic footwall and the gabbro hangingwall during regional deformation
机译:西雪松树金矿项目的天使山金矿带已经在卡卡吉山台内的超镁铁质和辉长岩的内部接触中暴露了300多米。基石位于卡卡吉-罗万湖绿岩带内,侵入了蛇湾组的镁铁质中火山岩和埃姆湾组的长英质至中层的火山岩。蛇湾组包括枕形和块状玄武岩以及细密的凝灰岩。艾姆湾地层在地层上覆盖着蛇湾地层,由凝灰岩和凝灰岩角砾岩组成。痕量元素地球化学和原始地幔归一化图表明,卡卡吉基尔和蛇湾组的岩石均由变质岛弧型辉绿岩玄武岩组成,而埃姆湾组的岩石则具有背岛弧亲和力。希尔金矿区发生在称为主断层的脆性变形区内,是碳酸盐岩和石英的泛滥。黄金地带的一个显着特征是,广泛的烟灰石蚀变形成了宽达20米的大垫层。天使山金矿区的矿化包括游离金和石云母,它们是作为包裹体存在于黄铁矿晶粒中并呈边缘状,并沿着石英的小裂缝而沉淀。相关的矿化包括黄铁矿以及方铅矿和闪锌矿。碳酸盐(δ18O 13.6至17.9‰),石英(δ18O8.8至13.1‰),黄铁矿(δ34S-0.8至1.0‰),闪锌矿(δ34S1.3至5.4‰)和方铅矿(δ34S)的织构关系和稳定同位素分析5.9至7.3‰)表示在延长的金矿系统中多次发生脆性变形和流体涌入。组合蚀变组合和稳定的同位素特征表明,天使山金矿带是由李斯特白云岩交代作用形成的,岩浆和变质源均输入了流体。这些流体是由于脆性断裂而传播的,脆性断裂是由于在区域变形过程中超镁铁质底盘和辉长岩上盘壁之间的能力差异引起的

著录项

  • 作者

    Secord, Scott Robert.;

  • 作者单位

    Lakehead University (Canada).;

  • 授予单位 Lakehead University (Canada).;
  • 学科 Geology.;Geochemistry.;Mineralogy.
  • 学位 M.S.
  • 年度 2011
  • 页码 175 p.
  • 总页数 175
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号