...
首页> 外文期刊>Mineralium deposita >Sequential evolution of Sn-Zn-In mineralization at the skarn-hosted Hammerlein deposit, Erzgebirge, Germany, from fluid inclusions in ore and gangue minerals
【24h】

Sequential evolution of Sn-Zn-In mineralization at the skarn-hosted Hammerlein deposit, Erzgebirge, Germany, from fluid inclusions in ore and gangue minerals

机译:Sn-Zn-in矿物化在矽卡岩锤子矿床,德国埃尔茨比尔格,德国的矿化中的顺序演变,来自矿石和煤矸石矿物质的流体夹杂物

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Skarn-hosted deposits can be important high-grade resources for a variety of metals, but Sn skarns are still of subordinate importance for global mining because of their complex mineralogy and evolution. As part of recent exploration efforts, the economic potential of the Sn-Zn-In mineralization at the Hammerlein skarn-hosted deposit is currently being re-evaluated. The temporal and spatial evolution of the ore-forming hydrothermal system is still debated. We analyzed fluid inclusion assemblages (FIA) in ore and gangue minerals using conventional and infrared microthermometry and laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS). We further estimated alteration temperatures with chlorite thermometry and compared the fluid inclusion (FI) record at Hammerlein with a mineralized greisen sample of the nearby Eibenstock granite. Cassiterite in skarn forms the major mineralization at Hammerlein during stage I and hosts FIs showing homogenization temperatures of up to 500 degrees C and salinities between 30 and 47 wt% NaCl eq. Cassiterite from schists and the additional greisen sample from the Eibenstock granite of the later stage II show lower homogenization temperatures (350-400 degrees C) and considerably lower salinities varying from 1.9 to 6 wt% NaCl eq. Despite the different homogenization temperatures and salinities, the chemical compositions of FIs hosted in both generations of cassiterite show that both (cassiterite in skarn and in schist and greisen) are similar, which points to a common source. The gangue minerals mainly contain low-temperature FIA (max. 330 degrees C and 2-9 wt% NaCl eq.) and are interpreted to form during further cooling of the system in stage III. Intergrown chlorite has compositions indicating similar temperatures of around 260 degrees C and is thus also related to stage III. FIA in sphalerite homogenize around 200 degrees C with salinities between 2 and 6.7 wt% NaCl eq. and show decreasing trace element contents despite having the same salinity range as the gangue minerals, indicating dilution of the ore-fluid during stage IV as a possible precipitation mechanism. Stage I inclusions are solely hosted in cassiterite from skarn, which shows the importance of fluid inclusion analyses in ore minerals, and record remarkable high mineralization temperatures, exceeding the typically temperature range reported in other studies by at least 100 degrees C. Our results suggest that this main ore stage is related to the early expulsion of a high-salinity brine phase from an underlying magmatic intrusion at depths greater than 3 km, which likely is a relatively short-lived event within the evolution of the hydrothermal system.
机译:Skarn-Hosted Procosits可以是各种金属的重要高档资源,但由于他们复杂的矿物学和演变,Sn Skarns对全球采矿的仍然是下属的重要性。作为最近勘探努力的一部分,目前正在重新评估HammerLein Skarn-Hosted押金处的SN-Zn-in矿化的经济潜力。矿石加热系统的时间和空间演化仍然讨论。我们使用常规和红外微液测定和激光烧蚀电感耦合等离子体质谱(La-ICP-MS)分析了矿石和膨胀矿物的流体包容性组装(FIA)。我们通过氯酸盐温度进一步估计改变温度,并将哈默蛋白的流体包容性(FI)记录与附近的Eibenstock花岗岩的矿化的Greisen样品进行了比较。 Skarn中的咔哒芽孢杆菌在阶段I期间形成哈伯利林的主要矿化,并宿主的FIS显示均质化温度高达500摄氏度,30至47wt%NaCl当量之间的盐度。来自分离的分组和来自后期阶段II的Eibenstock花岗岩的额外的Greisen样品显示出较低的均质化温度(350-400℃),并且从1.9〜6wt%的NaCl等式变化的显着降低的盐度。尽管均质化温度和盐度不同,但两种多种征征中托管的FIS的化学成分表明(Skarn和Schist和Greisen中的咔铝)都是相似的,这指向共同来源。煤矸石矿物主要含有低温FIA(最大330℃和2-9wt%NaCl等式),并在III期内进一步冷却系统期间形成形成。白杨氯酸盐具有表示相似温度约为260℃的组合物,因此也与第III阶段有关。斯普利特的FIA均质均匀化200℃,盐度在2和6.7wt%NaCl eq之间。并且表现出降低的痕量元素内容物尽管具有与甘蓝矿物相同的盐度范围,但在阶段IV期间表明矿石流体的稀释作为可能的沉淀机构。阶段I夹杂物仅载于Skarn中的卡斯塔,这表明矿石矿物质中的流体包涵体分析的重要性,并记录了显着的高矿化温度,超过其他研究中报告的典型温度范围至少100摄氏度。我们的结果表明我们的结果表明该主要矿石阶段与从大于3km的深度的潜在的岩石侵入的早期排出高盐度盐水相,这可能是水热系统的演变中的相对短暂的事件。

著录项

相似文献

  • 外文文献
  • 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