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Evolution of magmatic-hydrothermal systems below boiling conditions: Evidence from the Copler Au-cu deposit, east central Turkey.

机译:沸腾条件下岩浆热液系统的演化:来自土耳其中东部Copler Au-cu矿床的证据。

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摘要

The 7.5 Moz Copler Au-(Cu) deposit, located in the Tauride mountain range of east central Turkey, represents a sub-economic porphyry-style vein stockwork system that is overprinted by an intermediate-sulfidation state vein zone. The deposit is hosted by the middle Eocene Copler--Kabatas intrusive complex that is hosted by late Paleozoic-Mesozoic basement rocks.;To unravel fluid evolution at the deposit, detailed paragenetic studies were conducted integrating optical petrography, fluid inclusion petrography, optical cathodoluminescence microscopy, and scanning electron microscopy. These investigations showed that repeated reopening and reactivation of veins occurred throughout the entire evolution of the magmatic-hydrothermal system. The earliest quartz generation present in the porphyry-style veins formed under lithostatic and super-lithostatic pressure conditions at temperatures above 400°C. The second generation of quartz present in the porphyry-style veins records a pressure transition from lithostatic to hydrostatic conditions at a minimum paleodepth of 1.4 km. Both quartz types are associated with potassic alteration. Coarse chalcopyrite and pyrite were the first ore minerals that formed at Copler and are associated with chlorite and sericite alteration, respectively. Coarse chalcopyrite, accounting for the bulk of the secondary copper resource, precipitated at ca. 400°C under hydrostatic pressure conditions. Fluid inclusions and mineral stabilities record a consistent cooling trend of lower-salinity liquids. Base metal Zn-Cu-Pb-Sb mineralization at Copler occurred between 300?250°C, and Au mineralization below 250°C. Backscattered electron imaging and trace element analysis of pyrite showed that Au enrichment at Copler can be related to the hydrothermal alteration of earlier formed pyrite and the formation of small Au-bearing euhedral pyrite crystals late in the paragenesis. No evidence for boiling was identified in the veins.;It is proposed here that the Copler deposit formed from a single cooling magmatic-hydrothermal system. The deposit represents a rare example of the transition from an early porphyry system to a porphyry-related intermediate-sulfidation state hydrothermal system. The results of the study provide exploration vectors that could be used in the search for peripheral deposits around Copler, and generally for intermediate-sulfidation state hydrothermal vein deposits.
机译:位于土耳其中部东部Tauride山脉的7.5 Moz Copler Au-(Cu)矿床是亚经济斑岩型静脉储层系统,被中等硫化状态的脉状带覆盖。该矿床由中古始新世科普勒-卡巴塔斯侵入复合物主控,晚古生代-中生代基底岩主控。和扫描电子显微镜。这些研究表明,在岩浆热液系统的整个演化过程中,都反复发生了静脉的重新开放和重新活化。存在于斑岩型脉中的最早的石英世代是在高于400°C的岩石静压和超静压条件下形成的。斑岩型脉中存在的第二代石英记录了在最低古深度1.4 km处从岩石静压到静水压的转变。两种石英类型都与钾质蚀变有关。粗黄铜矿和黄铁矿是在科普勒形成的第一批矿石矿物,分别与绿泥石和绢云母蚀变有关。粗黄铜矿,约占二次铜资源的大部分。在静水压力条件下为400°C。流体包裹体和矿物稳定性记录了低盐度液体的一致冷却趋势。 Copler的贱金属Zn-Cu-Pb-Sb矿化发生在300-250°C之间,Au矿化在250°C以下。黄铁矿的反向散射电子成像和微量元素分析表明,在Copler富集金可能与较早形成的黄铁矿的水热蚀变以及在共生后期形成含金的小全平面黄铁矿晶体有关。在静脉中没有发现沸腾的证据。;在此提出,科普勒沉积物是由单个冷却岩浆-热液系统形成的。该矿床代表了从早期斑岩系统向斑岩相关的中间硫化态水热系统过渡的罕见例子。研究结果提供了可用于搜索Copler周围外围沉积物,以及通常用于中等硫化状态热液脉沉积物的勘探载体。

著录项

  • 作者

    Skewes, Wiley Boulden.;

  • 作者单位

    Colorado School of Mines.;

  • 授予单位 Colorado School of Mines.;
  • 学科 Geology.;Geochemistry.;Sedimentary geology.
  • 学位 M.S.
  • 年度 2016
  • 页码 74 p.
  • 总页数 74
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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