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J4 ›› 2011, Vol. 17 ›› Issue (2): 327-336.

• 金属矿床 • 上一篇    下一篇

赣南茅坪钨矿流体包裹体研究

胡东泉,华仁民,李光来,韦星林,黄小娥   

  1. 内生金属矿床成矿机制研究国家重点实验室,南京大学 地球科学与工程学院
  • 收稿日期:2010-08-26 修回日期:2011-03-21 出版日期:2011-06-20 发布日期:2011-06-20
  • 通讯作者: 华仁民,教授,矿床学;E-mail: huarenmin@nju.edu.cn
  • 作者简介:胡东泉,男,1985年生,硕士研究生,矿床学专业;E-mail: easpring2010@163.com
  • 基金资助:

      国家自然科学基金项目(41073035)及国家重点基础研究发展计划(2007CB411404)

Study on the Fluid Inclusions of Maoping Tungsten Deposit, Southern Jiangxi Province

 HU Dong-Quan, HUA Ren-Min, LI Guang-Lai, WUI Xing-Lin, HUANG Xiao-E   

  1. State Key Laboratory for Mineral Deposits Research, Nanjing University
  • Received:2010-08-26 Revised:2011-03-21 Online:2011-06-20 Published:2011-06-20
  • Contact: Hua Renmin, Professor. E-mail: huarenmin@nju.edu.cn

摘要:

赣南茅坪钨矿是近年来探明的一个大型钨锡多金属矿床,矿床由石英脉型矿体和云英岩化花岗岩型矿体组成。本文
在详细的岩相学观察基础上,对该矿床含矿石英脉石英和黄玉中的流体包裹体进行了显微测温和拉曼探针分析,并尝试用
红外显微镜对黑钨矿中的流体包裹体进行了显微测温。结果表明,石英和黄玉中的流体包裹体主要为富液相的两相(H2O-
NaCl)型水溶液包裹体,其中石英中尚有极少量的含CO2三相水溶液包裹体。石英中流体包裹体的均一温度、盐度范围较宽
且均一温度分为较为明显的两个区间,石英中含CO2三相水溶液包裹体的均一温度与富液相两相水溶液包裹体的高温区间
较为一致,盐度则明显低于后者,但均一方式不同。黑钨矿中流体包裹体的均一温度及盐度最高,黄玉中流体包裹体的均
一温度及盐度较高且分布范围较窄。石英中流体包裹体的均一温度、盐度特征表明了成矿作用的多阶段性和流体演化的复
杂性。流体包裹体特征表明,流体的早期沸腾作用和晚期混合作用可能是茅坪钨矿床石英脉型黑钨矿形成的主要机制。

关键词: 流体包裹体, 显微测温, 拉曼探针, 茅坪钨矿, 赣南

Abstract:

Maoping  tungsten deposit  is a  large W-Sn-polymetallic deposit discovered  recently  in southern Jiangxi Province.
It comprises  two  types of ore-bodies,  i.e. quartz-vein  type and greisenized-granite  type. This paper studies  the  fluid  inclusions
in quartz and  topaz occurring  in wolframite-quartz-veins, which mainly  includes microthermometry and Laser Raman analysis.
Besides,  the homogenization  temperatures of  fluid  inclusions  in wolframite were determined under an  infra-red microscope.
Results show  that  fluid  inclusions  in both quartz and  topaz are mainly  liquid-rich  two-phase aqueous solution  (H2O-NaCl),  in
addition  to small amount of CO2-bearing  three-phase aqueous solution  in quartz. The homogenization  temperatures  from quartz
show a wider range variations and can be divided into two main periods, indicating two stages of ore precipitation. The CO2-bearing
three-phase inclusions have homogenization temperatures similar to those of the higher temperature period of the above inclusions,
but  lower salinities and different homogenizing ways. Fluid  inclusions  in wolframite have highest homogenization  temperatures
and salinities, whereas those in topaz also show high homogenization temperatures and salinities, and narrow variation range. The
characteristics of homogenization temperatures and salinities from fluid inclusions in quartz reveal multiple-stages of ore-forming process and  the complexity of  fluid evolution.  It  is concluded  from  fluid  inclusions  that  the early-stage boiling and  late-stage
mixing are probably the major mechanism of formation of wolframite-quartz-vein type ore in the Maoping deposit

Key words: fluid inclusion, microthermometry, Raman spectra, Maoping tungsten deposit, southern Jiangxi

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