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    内蒙古阿贵庙地区地质构造演化与成矿响应探讨

    Metallogenic response to geological structural evolution in Aguimiao area, Inner Mongolia

    • 摘要: 提要:阿贵庙地区位于狼山造山带的西段,同狼山成矿带东段的东升庙、炭窑口、霍各乞等大型-超大型铜铅锌多金属矿区具有相似的成矿地质背景和其他有利的成矿地质条件。笔者在分析区域构造地质背景的基础上,重点研究了阿贵庙地区的地质构造演化过程与成矿作用。研究结果表明:阿贵庙地区经历了古太古代基底岩石建造的形成、太古宙晚期-古元古代早期结晶基底形成和变质与变形、中元古代陆缘裂解与接受沉积-成矿、新元古代末裂陷槽闭合、晚古生代(海西期)-中生代(印支期)以来的挤压造山变形、大量岩浆上侵、地壳增生与变形的多个构造演化阶段。在不同的构造演化阶段形成不同类型的矿床:新太古代主要形成海底火山热水沉积条带状铁矿、在中元古代主要形成了与被动陆缘裂解过程相关的热水沉积硫化物矿床、晚古生代则形成与次火山岩浆热液成矿作用相关的斑岩型铜金矿床以及其他与火山岩有关的多个铜矿点。

       

      Abstract: Abstract:Located in the western part of the Langshan orogenic belt, Aguimiao area is similar to the Dongshengmiao, Tanyaokou and Huogeqi large-superlarge Cu-Pb-Zn-Fe sulfide deposits in ore-forming structural geological setting and conditions. Based on an analysis of the geological setting of Langshan area and Aguimiao area, the authors studied the process of geological structural evolution and mineralization. Aguimiao area has experienced a long geological structural evolution and development process, which includes the following stages: ① the basement rock formation was formed in Neoarchean; ② the crystalline basement was formed, deformed and metamorphied in Upper Archean and Lower Proterozoic; ③ the passive continental margin aulacogen was broken up, received sediments and expereicned mineralization in Proterozoic; ④ the passive continental margin aulacogen was closed in late Neo-Proterozoic; ⑤ the development of compression and orogeny with considerable intrusion of acid-intermediate magma and the deformation occurred from Hercynian to Mesozoic. The different types of ore deposits were formed in different stages of geological structural evolution in Aguimiao area: ① the hydrothermal sedimentary banded-iron formation (BIF) deposits were formed in submarine volcanic environment in Neoarchean; ② the hydrothermal sedimentary sulfide deposits related to the Langshan passive continental margin aulacogenn were formed in Mesoproterozoic; ③ the middle-small sized porphyry copper-gold deposits were formed by the magmatic-hydrothermal activities,related to the process of compression and orogeny from Hercynian to Mesozoic.

       

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