首页> 外文期刊>Russian Geology and Geophysics >The behavior of ore elements in oxidized heterophase chloride and carbonate-chloride-sulfate fluids of porphyry Cu-Mo(Au) deposits (from experimental data)
【24h】

The behavior of ore elements in oxidized heterophase chloride and carbonate-chloride-sulfate fluids of porphyry Cu-Mo(Au) deposits (from experimental data)

机译:斑岩型Cu-Mo(Au)矿床的氧化多相氯化物和碳酸盐-氯化物-硫酸盐流体中矿元素的行为(来自实验数据)

获取原文
获取原文并翻译 | 示例
           

摘要

The spatial coexistence and synchronous formation of magmatogene porphyry Cu-Mo mineralization and epithermal gold mineralization are due to the genetic relationship between their formation processes. This relationship might be due to the generation of metal-bearing fluids of different geochemical compositions by the porphyry ore-magmatic system, which then participate in the formation of magmatogene porphyry Cu-Mo(Au) and associated epithermal gold deposits. Synthesis of fluid inclusions in quartz was performed for experimental study of the behavior of Cu, Mo, W, Sn, Au, As, Sb, Te, Ag, and Bi in heterophase fluids similar in composition and aggregate state to natural ore-forming fluids of porphyry Cu-Mo(Au) deposits. We have established that at 700 degrees C, a pressure decrease from 117 to 106 MPa leads to a significant enrichment of the gas phase of heterophase chloride fluid with Au, As, Sb, and Bi. The heterophase state of carbonate-chloride-sulfate fluids is observed at 600 degrees C and 100-90 MPa. It characterizes the highly concentrated liquid carbonate-sulfide phase-liquid chloride phase-low-density gas phase equilibrium. A decrease in the pressure of heterophase carbonate-chloride-sulfate fluid leads to a noticeable enrichment of its chloride phase with Cu, Mo, Fe, W, Ag, Sn, Sb, and Zn relative to the carbonate-sulfate phase. The processes of redistribution of ore elements between the phases of heterophase fluids can be considered a model of generation of metal-bearing chloride fluids, which occurs in nature during the formation of porphyry Cu-Mo(Au) deposits, as well as a model of generation of gas fluids supplying Au, Te, As, and other ore elements to the place of formation of epithermal Au-Cu and Au-Ag mineralization. (C) 2015, V.S. Sobolev IGM, Siberian Branch of the RAS. Published by Elsevier B.V. All rights reserved.
机译:岩浆岩斑岩Cu-Mo矿化和超热金矿化的空间共存和同步形成是由于它们形成过程之间的遗传关系。这种关系可能是由于斑岩矿石-岩浆系统生成了具有不同地球化学组成的含金属流体,然后参与岩浆成因斑岩Cu-Mo(Au)和相关的超热金矿床的形成。进行了石英中流体包裹体的合成,用于实验研究组成和聚集态与天然成矿流体相似的多相流体中Cu,Mo,W,Sn,Au,As,Sb,Te,Ag和Bi的行为斑岩状铜钼(金)矿床。我们已经确定,在700摄氏度时,压力从117 MPa降低到106 MPa会导致异相氯化物流体的气相中大量含有Au,As,Sb和Bi。在600摄氏度和100-90 MPa下观察到碳酸盐-氯化物-硫酸盐流体的多相状态。它表征了高浓度的液态碳酸盐-硫化物相-液态氯化物相-低密度气相的平衡。相对于碳酸盐-硫酸盐相,异相碳酸盐-氯化物-硫酸盐流体的压力降低导致其氯化物相明显富集有铜,钼,铁,钨,银,锡,锑和锌。可以将矿石元素在异相流体相之间的重新分布过程视为生成含金属氯化物流体的模型,该模型自然发生在斑岩型Cu-Mo(Au)矿床形成过程中。向Au,Te,As和其他矿石元素供应气热流体的地方,从而形成超热Au-Cu和Au-Ag矿化的地方。 (C)2015,V.S. Sobolev IGM,RAS的西伯利亚分公司。由Elsevier B.V.发布。保留所有权利。

著录项

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