2020 Vol. 39, No. 11
Article Contents

FU Xu, Lü Guxian, KOU limin, LI Boyang, JIANG Dawei, WANG Lei, GAO Shuqi. Research on the zoning and distribution of ore-bearing tectono-deformation-lithofacies belt in the Weilasituo Li-Sn polymetallic deposit, Inner Mongolia[J]. Geological Bulletin of China, 2020, 39(11): 1752-1758.
Citation: FU Xu, Lü Guxian, KOU limin, LI Boyang, JIANG Dawei, WANG Lei, GAO Shuqi. Research on the zoning and distribution of ore-bearing tectono-deformation-lithofacies belt in the Weilasituo Li-Sn polymetallic deposit, Inner Mongolia[J]. Geological Bulletin of China, 2020, 39(11): 1752-1758.

Research on the zoning and distribution of ore-bearing tectono-deformation-lithofacies belt in the Weilasituo Li-Sn polymetallic deposit, Inner Mongolia

  • The Weilasito Li-Sn polymetallic deposit has been discovered in Hexigten Banner, Inner Mongolia. The deep part of the deposit consists of greisen and amazonite altered quartz porphyry type ore with Sn, Zn, Rb, Nb and Ta. The middle part is composed of cryptoexplosive breccia cylinder type ore (mineralized spot) with Li and associated metallogenic elements such as Sn and Mo. The shallow part has the hydrothermal vein-type Sn, W, Zn, Cu, Mo and Ag ore. The polymetallic mineralization is controlled both by fractures and magmatic hydrothermal alteration. The measured profile of the mineralized fault alteration belt shows that the alteration zone is symmetrically distributed on both sides of the fault. From the fault center, silicification, greisenization, fluoritization and carbonatization are developed in sequence, thereby determining the alteration zones: ①The inner part is a silicified alteration facies zone with a width of 2~5 m. The orebodies and the surrounding rocks have been silicified. The light-colored minerals increase, the dark-colored minerals decrease, the rock becomes harder and more brittle, and small quartz veins are locally visible; ②The middle part is a greisenization altered facies zone, with a width of 5~10 m. The greisenization zone is developed outside the silicified zone, and larger mica granules are generally developed at the contact part of the orebody and surrounding rocks, other parts of the mica are of fine-grained types and consist of such rocks as lepidolite, muscovite, phlogopite and sericite; ③The outer part is a fluoritization-carbonatization altered facies zone, generally with the width of 20~30 m, and the larger one can reach more than 100m; the fluoritization-carbonatization alteration zone is far away from the orebody, and most of them fill the fissures of the surrounding rocks in the form of veins or films. Sometimes it is not easy to distinguish and divide them due to the superposition of other mineralization alterations. Through the study of the three-dimensional characteristics of ore-bearing tectono-deformation-lithofacies zone, a typical ore-prospecting model is established to provide geological basis for the exploration in this region.

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  • [1] 王京彬, 王玉往, 王莉娟, 等.大兴安岭南段锡多金属成矿系列[J].地质与勘探, 2005, 6(5):15-20.

    Google Scholar

    [2] 王瑾, 侯青叶, 陈岳龙, 等.内蒙古维拉斯托铜多金属矿床流体包裹体研究[J].现代地质, 2010, 24(5):847-855.

    Google Scholar

    [3] 潘小菲, 郭利军, 王硕, 等.内蒙古维拉斯托铜锌矿床的白云母Ar/Ar年龄探讨[J].岩石矿物学杂志, 2009, 28(5):473-479.

    Google Scholar

    [4] 郑翻身, 蔡红军, 张振法, 等.内蒙古拜仁达坝维拉斯托超大型银铅锌矿的发现及找矿意义[J].物探与化探, 2006, 30(1):13-20, 25.

    Google Scholar

    [5] 李泊洋, 姜大伟, 付旭, 等.内蒙古维拉斯托矿区锂多金属矿床地质特征及找矿意义[J].矿产勘查, 2018, 9(6):1185-1191.

    Google Scholar

    [6] 吕古贤, 邓军, 郭涛, 等.玲珑-焦家式金矿构造变形岩相形迹大比例尺填图与构造成矿研究[J].地球学报(中国地质科学院院报), 1998, 19(2):177-186.

    Google Scholar

    [7] 吕古贤, 舒斌, 郭涛, 等.胶东阜山金矿床构造变形岩相形迹大比例尺填图[C]//"九五"全国地质科技重要成果论文集, 2000: 25-29.

    Google Scholar

    [8] 吕古贤, 郭涛.阜山金矿区构造变形岩相特征与成矿流体构造物理化学特征研究[J].地质地球化学, 2001, 29(3):90-93.

    Google Scholar

    [9] 吕古贤, 郭涛, 舒斌, 等.构造变形岩相形迹的大比例尺填图及其对隐伏矿床地质预测——以胶东玲珑-焦家式金矿为例[J].中国区域地质, 2001, 20(3):313-321.

    Google Scholar

    [10] 吕古贤, 郭涛, 刘杜鹃, 等.矿区构造变形岩相形迹填图、矿化趋势度的实测及其地质找矿[J].地质找矿论丛, 2002, 17(4):217-224.

    Google Scholar

    [11] 吕古贤, 郭涛, 舒斌, 等.构造变形岩相形迹大比例尺填图与深部外围成矿预测[C]//第八届全国矿床会议论文集, 2006: 693-699.

    Google Scholar

    [12] 郭利军, 葛昌宝, 冯贞, 等.内蒙古锡林浩特东部拜仁达坝银铅多金属矿勘查过程及远景评述[J].物探与化探, 2004, 28(5):394-397, 401.

    Google Scholar

    [13] 欧阳荷根.大兴安岭南段拜仁达坝-维拉斯托银多金属矿床成矿作用及动力学背景[D].中国地质大学(北京)博士学位论文, 2013.

    Google Scholar

    [14] 祝新友, 张志辉, 付旭, 等.内蒙古赤峰维拉斯托大型锡多金属矿的地质地球化学特征[J].中国地质, 2016, 43(1):188-208.

    Google Scholar

    [15] 郭贵娟.内蒙古维拉斯托锡多金属矿床地质特征及成因探讨[D].中国地质大学(北京)硕士学位论文, 2016: 1-82.

    Google Scholar

    [16] 翟德高, 刘家军, 李俊明, 等.内蒙古维拉斯托斑岩型锡矿床成岩、成矿时代及其地质意义[J].矿床地质, 2016, 35(5):1011-1022.

    Google Scholar

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