中国自然资源航空物探遥感中心主办
地质出版社出版

河南灵宝董家埝银矿床流体包裹体特征及矿床成因

刘畅, 张参辉, 张鑫, 纵瑞. 2023. 河南灵宝董家埝银矿床流体包裹体特征及矿床成因. 物探与化探, 47(2): 343-352. doi: 10.11720/wtyht.2023.1095
引用本文: 刘畅, 张参辉, 张鑫, 纵瑞. 2023. 河南灵宝董家埝银矿床流体包裹体特征及矿床成因. 物探与化探, 47(2): 343-352. doi: 10.11720/wtyht.2023.1095
LIU Chang, ZHANG Can-Hui, ZHANG Xin, ZONG Rui. 2023. Fluid inclusions and formation mechanisms of the Dongjianian silver deposit in Lingbao City, Henan Province, China. Geophysical and Geochemical Exploration, 47(2): 343-352. doi: 10.11720/wtyht.2023.1095
Citation: LIU Chang, ZHANG Can-Hui, ZHANG Xin, ZONG Rui. 2023. Fluid inclusions and formation mechanisms of the Dongjianian silver deposit in Lingbao City, Henan Province, China. Geophysical and Geochemical Exploration, 47(2): 343-352. doi: 10.11720/wtyht.2023.1095

河南灵宝董家埝银矿床流体包裹体特征及矿床成因

  • 基金项目:

    河南省“探矿权、采矿权”价款(2018-22-06)

    河南省地质矿产勘查开发局地质科研项目(2017-01)

详细信息
    作者简介: 刘畅(1997-),男,河南开封人,硕士研究生,研究方向:固体矿产资源勘查、评价与综合利用
  • 中图分类号: P632

Fluid inclusions and formation mechanisms of the Dongjianian silver deposit in Lingbao City, Henan Province, China

  • 董家埝银矿位于小秦岭南缘,受小河断裂的次级构造控制,是小秦岭南带首次发现的大型贵金属矿床。矿床的热液成矿期分为3个阶段:石英—黄铁矿阶段(Ⅰ)、石英—多金属硫化物阶段(Ⅱ)和石英—碳酸岩化阶段(Ⅲ),其中石英—多金属硫化物阶段为主要成矿阶段。矿体主要发育气液两相包裹体(W型)、含CO2包裹体(C型)及纯CO2包裹体(PC型)3种类型,石英—黄铁矿阶段主要发育C型、W型和少量PC型包裹体,石英—多金属硫化物阶段主要发育W型和少量C型包裹体。第Ⅰ及第Ⅱ成矿阶段的石英流体包裹体的均一温度范围分别为151~270 ℃和126~240 ℃,且呈降低趋势;盐度范围分别为3.8%~22.42% NaCleqv和4.16%~20.48% NaCleqv,整体变化不大,属于低盐度环境;CO2由富转贫。估算成矿压力为22.08~76.6 MPa,成矿深度3.77~7.13 km,矿床类型为低盐度中低温中深成热液型银矿床。
  • 加载中
  • [1]

    王义天, 毛景文. 碰撞造山作用期后伸展体制下的成矿作用——以小秦岭金矿集中区为例[J]. 地质通报, 2002(Z2):562-566.

    [2]

    Wang Y T, Mao J W. Mineralization under the extension system after the collision orogenic period:A case study of the Xiaoqinling gold deposit area[J]. Geological Bulletin, 2002(Z2):562-566.

    [3]

    王晋定, 王大钊, 詹小飞, 等. 小秦岭金成矿区南矿带构造控矿规律和矿床定位样式[J]. 大地构造与成矿学, 2018, 42(6):1064-1077.

    [4]

    Wang J D, Wang D Z, Zhan X F, et al. Tectonic ore-controlling laws and deposit positioning styles in the southern ore belt of the Xiaoqinling gold metallogenic area[J]. Tectonics and Mineralization, 2018, 42(6):1064-1077.

    [5]

    刘宗彦, 张灯堂, 刘运华, 等. 小秦岭金矿田韧性剪切带的控矿规律及中深部成矿分析[J]. 矿产与地质, 2018, 32(4):605-615.

    [6]

    Liu Z Y, Zhang D T, Liu Y H, et al. Ore-controlling law and metallogenic analysis of the ductile shear zone in the Xiaoqinling gold ore field[J]. Mineral Resources and Geology, 2018, 32(4):605-615.

    [7]

    吴晓贵. 小秦岭东桐峪金矿床稳定同位素地球化学及成矿物质来源[J]. 西北地质, 2016, 49(4):91-98.

    [8]

    Wu X G. Stable isotope geochemistry and source of ore-forming materials of Dongtongyu gold deposit in Xiaoqinling[J]. Northwest Geology, 2016, 49(4):91-98.

    [9]

    铁健康, 董少波, 马林霄, 等. 小秦岭文峪金矿床深部地质特征及成矿规律[J]. 山东国土资源, 2015, 31(3):7-11,15.

    [10]

    Tie J K, Dong S B, Ma L X, et al. Deep geological characteristics and metallogenic regularity of the Wenyu gold deposit in Xiaoqinling[J]. Shandong Land and Resources, 2015, 31(3):7-11,15.

    [11]

    Mao J W, Qiu Y M, Goldfarb R J, et al. Gold deposits in the Xiaoqinling-Xiong'ershan region,Qinling Mountains, Central China[J]. Mineralium Deposita, 2002, 37:306-325.

    [12]

    Bi S J, Li J W, Zhou M F, et al. Gold distribution in As-deficient pyrite and telluride mineralogy of the Yangzhaiyu gold deposit,Xiaoqinling district,southern North China craton[J]. Mineralium Deposita, 2011, 46:925-941.

    [13]

    郭云成. 小秦岭大湖金钼矿床包裹体特征与成矿物质来源研究[D]. 北京: 中国地质大学(北京), 2018.

    [14]

    Guo Y C. Characteristics of inclusions and source of ore-forming materials in the Xiaohuling Dahu gold-molybdenum deposit[D]. Beijing: China University of Geosciences (Beijing), 2018.

    [15]

    曾昊. 河南省小秦岭地区灵金一矿成矿流体研究[D]. 北京: 中国地质大学(北京), 2016.

    [16]

    Zeng H. Research on the ore-forming fluid of Lingjin No.1 Mine,Xiaoqinling area,Henan Province[D]. Beijing: China University of Geosciences(Beijing), 2016.

    [17]

    倪智勇, 李诺, 管申进, 等. 河南小秦岭金矿田大湖金—钼矿床流体包裹体特征及矿床成因[J]. 岩石学报, 2008, 24(9):2058-2068.

    [18]

    Ni Z Y, Li N, Guan S J, et al. Characteristics of fluid inclusions and ore genesis of the Dahu Au-Mo deposit in the Xiaoqinling gold field,Henan Province[J]. Acta Petrologica Sinica, 2008, 24(9):2058-2068.

    [19]

    周振菊, 蒋少涌, 秦艳, 等. 小秦岭文峪金矿床流体包裹体研究及矿床成因[J]. 岩石学报, 2011, 27(12):3787-3799.

    [20]

    Zhou Z J, Jiang S Y, Qin Y, et al. Study on fluid inclusions and genesis of Wenyu gold deposit in Xiaoqinling[J]. Acta Petrologica Sinica, 2011, 27(12):3787-3799.

    [21]

    赵海香, 嵇静, 赵智, 等. 小秦岭大湖金钼矿流体包裹体研究及矿床成因[J]. 高校地质学报, 2017, 23(1):72-82.

    [22]

    Zhao H X, Yun J, Zhao Z, et al. Research on fluid inclusions and genesis of Dahu gold and molybdenum deposit in Xiaoqinling[J]. Geological Journal of China Universities, 2017, 23(1):72-82.

    [23]

    黎世美, 瞿伦全, 苏振邦, 等. 小秦岭金矿地质和成矿预测[M]. 北京: 地质出版社, 1996.

    [24]

    Li S M, Qu L Q, Su Z B, et al. The geology and metallogenic prediction of the gold deposit in Xiaoqinling[M]. Beijing: Geological Publishing House, 1996.

    [25]

    Jiang N, Xu J H, Song M X. Fluid inclusion characteristics of mesothermal gold deposits in the Xiaoqinling district,Shannxi and Henan Provinces,People’s Republic of China[J]. Mineralium Deposit, 1999, 34:150-162.

    [26]

    Fan H R, Xie Y H, Zhao R, et al. Dual origions of Xiaoqinling gold-bearing quartz veins:Fluid inclusion evidence[J]. Chinese Science Bulletin, 2000, 45(15):1424-1430.

    [27]

    Zhou Z J, Chen Y J, Jiang S Y, et al. Geology, geochemistry and ore genesis of the Wenyu gold deposit,Xiaoqinling gold field,Qinling Orogen, southern margin of North China Craton[J]. Ore Geology Reviews, 2014, 59(6):1-20.

    [28]

    Zhou Z J, Chen Y J, Jiang S Y, et al. Isotope and fluid inclusion geochemistry and genesis of the Qiangma gold deposit,Xiaoqinling gold field,Qinling Orogen,China[J]. Ore Geology Reviews, 2015, 66(2):47-64.

    [29]

    蒋少涌, 戴宝章, 姜耀辉, 等. 胶东和小秦岭:两类不同构造环境中的造山型金矿省[J]. 岩石学报, 2009, 25(11):2727-2738.

    [30]

    Jiang S Y, Dai B Z, Jiang Y H, et al. Jiaodong and Xiaoqinlinga:Two orogenic gold provinces formed in different tectonic settings[J]. Acta Petrologica Sinica, 2009, 25(11):2727-2738.

    [31]

    纵瑞, 董岘证, 张凯涛, 等. 豫西董家埝银矿床地质特征及矿床成因探讨[J]. 资源环境与工程, 2018, 32(3):367-372.

    [32]

    Zong R, Dong D Z, Zhang K T, et al. Geological characteristics and genesis of Dongjiayu silver deposit in western Henan[J]. Resources Environment & Engineering, 2018, 32(3):367-372.

    [33]

    郭保健, 徐孟罗, 王志光, 等. 熊耳山北坡拆离断层带地球化学特征及其与金银矿化的关系[J]. 矿产与地质, 1997, 11(1):21-26.

    [34]

    Guo B J, Xu M L, Wang Z G, et al. Geochemical characteristics of the detached fault zone on the northern slope of Xiong'er Mountain and its relationship with gold and silver mineralization[J]. Mineral Resources and Geology, 1997, 11(1):21-26.

    [35]

    栾世伟, 曹殿春, 方耀奎, 等. 小秦岭金矿床地球化学[J]. 矿物岩石, 1985(2):2-134.

    [36]

    Luan S W, Cao D C, Fang Y K, et al. Geochemistry of the Xiaoqinling gold deposit[J]. Mineral Rocks, 1985(2):2-134.

    [37]

    冯建之. 河南小秦岭金矿构造控矿规律及控矿模式[J]. 矿产与地质, 2009, 23(4): 302-307.

    [38]

    Feng J Z. Structural ore-controlling law and ore-controlling model of the Xiaoqinling gold deposit,Henan Province[J]. Mineral Resources and Geology, 2009, 23(4):302-307.

    [39]

    赵海香. 河南小秦岭金矿成矿作用地球化学研究[D]. 南京: 南京大学, 2011.

    [40]

    Zhao H X. Geochemical study of gold mineralization in Xiaoqinling, Henan Province[D]. Nanjing: Nanjing University, 2011.

    [41]

    国家能源局. SY/T 6010—2011中华人民共和国石油天然气行业标准:沉积盆地流体包裹体显微测温方法[S]. 2011.

    [42]

    National Energy Administration. SY/T 6010—2011 Petroleum and natural gas industry standards of the People ’s Republic of China:Microscopic temperature measurement method for fluid inclusions in sedimentary basins[S]. 2011.

    [43]

    Hall D L, Sterner S M, Bodnar R J. Freezing point depression of NaCl-KCl-H2O solutions[J]. Econ Geol, 1988, 83(1):197-202.

    [44]

    刘斌, 段光贤. NaCl-H2O溶液包裹体的密度式和等容式及其应用[J]. 矿物学报, 1987, 7(4):345-352.

    [45]

    Liu B, Duan G X. The density and isochoric formulae for NaCl-H2O fluid inclusions(salinity≤25wt%)and their applications[J]. Acta Mineralogica Sinica, 1987, 7(4):345-352.

    [46]

    Collins P L F. Gas hydrates in CO2-bearing fluid inclusions and the use of freezing data for estimation of sal inity[J]. Econ Geol, 1979, 74: 1435-1444.

    [47]

    孙丰月, 金巍, 李碧乐, 等. 关于脉状热液金矿床成矿深度的思考[J]. 长春科技大学学报, 2000, 30(S):27-30.

    [48]

    Sun F Y, Jin W, Li B L, et al. Thoughts on the mineralization depth of the vein hydrothermal gold deposit[J]. Journal of Changchun University of Science and Technology, 2000, 30(S):27-30.

    [49]

    李晶, 陈衍景, 李强之, 等. 甘肃阳山金矿流体包裹体地球化学和矿床成因类型[J]. 岩石学报, 2007, 23(9):2144-2154.

    [50]

    Li J, Chen Y J, Li Q Z, et al. Geochemistry and genesis types of fluid inclusions of Yangshan gold deposit in Gansu[J]. Acta Petrologica Sinica, 2007, 23(9):2144-2154.

    [51]

    陈衍景, 倪培, 范宏瑞, 等. 不同类型热液金矿系统的流体包裹体特征[J]. 岩石学报, 2007, 23(9):2085-2108.

    [52]

    Chen Y J, Ni P, Fan H R, et al. Diagnostic fluid inclusions of different types hydrothermal gold deposits[J]. Acta Petrologica Sinica, 2007, 23(9): 2085-2108.

    [53]

    张静, 陈衍景, 李国平, 等. 河南内乡县银洞沟银矿地质和流体包裹体特征及成因类型[J]. 矿物岩石, 2004, 24(3):55-64.

    [54]

    Zhang J, Chen Y J, Li G P, et al. Geological and fluid inclusion characteristics and genetic types of Yindonggou silver deposit in Neixiang County,Henan Province[J]. Mineral Rocks, 2004, 24(3):55-64.

    [55]

    陈衍景. 造山型矿床、成矿模式及找矿潜力[J]. 中国地质, 2006, 33(6):1181-1196.

    [56]

    Chen Y J. Orogenictype deposits and their metallogenic model and exploration potential[J]. Geology in China, 2006, 33(6):1181-1196.

  • 加载中
计量
  • 文章访问数:  435
  • PDF下载数:  58
  • 施引文献:  0
出版历程
收稿日期:  2022-03-02
修回日期:  2023-04-20
刊出日期:  2023-04-27

目录