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农坪金铜矿床位于吉林省珲春市春化境内,是一座中型富金斑岩型矿床。文章采用LA-ICP-MS锆石U-Pb定年方法,对农坪含矿花岗闪长斑岩进行了锆石U-Pb分析,获得加权平均年龄为(95.6±1.6)Ma,表明花岗闪长斑岩形成于晚白垩世。地球化学分析显示,农坪含矿斑岩富碱(5.6%~6.7%),高Mg#(47~55)、富集LILE和LREE,亏损HFSE和HREE,高Sr/Y(32~57)、(La/Yb)N(10~21)比值,具有埃达克质岩石的特点,岩浆的形成可能存在壳幔混合及分离结晶作用。结合区域大地构造背景和同一构造带上其他矿床的形成时代和特征,笔者认为农坪矿床是晚白垩世古太平洋板块向欧亚大陆斜向俯冲背景下陆缘弧岩浆作用及热液活动的产物。 相似文献
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农坪金(铜)矿床受控于东西向断裂构造带,产于英云闪长(斑)岩蚀变岩中,与闪长玢岩密切相关。矿床成因类型为次火山热液含金慢变岩型。矿床类型特殊,外围找矿潜力较大,对珲春地区金、铜找矿具有指导意义。 相似文献
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为确定农坪金铜矿床的成矿流体特征及矿床形成机制,采集细脉浸染状金铜矿石中的石英-硫化物细脉,对石英颗粒中的流体包裹体进行了岩相学、显微测温和激光拉曼光谱分析。结果表明:脉石英中主要发育Ⅰ型气液两相、Ⅱ型含CO2三相、Ⅲ型含子矿物多相、Ⅳ型纯气相和Ⅴ型纯液相等5种类型的原生流体包裹体。不同类型包裹体的均一温度变化范围为237.8℃~399.4℃,主要集中于310℃~370℃,盐度w ( NaCl )变化范围于1.39%~12.3%和33.32%~42.03%两个区间。代表性包裹体的激光拉曼光谱分析结果显示,成矿流体主要气相成分为H2 O、 CO2,并含有少量的CH4。综合研究后认为,农坪矿床成矿流体曾发生过沸腾作用,以至流体中的H2 O、 CO2等挥发组分大量逸出,引起金、铜等有用组分的沉淀富集。农坪金铜矿床与小西南岔金铜矿床在成矿条件及矿化特征等方面具有相似性,二者同为斑岩型金铜矿床,均属燕山晚期构造岩浆作用的产物。 相似文献
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为确定农坪金铜矿床的成矿流体特征及矿床形成机制,采集细脉浸染状金铜矿石中的石英--硫化物细脉,对石英颗粒中的流体包裹体进行了岩相学、显微测温和激光拉曼光谱分析。结果表明:脉石英中主要发育Ⅰ型气液两相、Ⅱ型含CO2三相、Ⅲ型含子矿物多相、Ⅳ型纯气相和Ⅴ型纯液相等5种类型的原生流体包裹体。不同类型包裹体的均一温度变化范围为237.8℃~399.4℃,主要集中于310℃~370℃,盐度w(NaCl)变化范围于1.39%~12.3%和33.32%~42.03%两个区间。代表性包裹体的激光拉曼光谱分析结果显示,成矿流体主要气相成分为H2O、CO2,并含有少量的CH4。综合研究后认为,农坪矿床成矿流体曾发生过沸腾作用,以至流体中的H2O、CO2等挥发组分大量逸出,引起金、铜等有用组分的沉淀富集。农坪金铜矿床与小西南岔金铜矿床在成矿条件及矿化特征等方面具有相似性,二者同为斑岩型金铜矿床,均属燕山晚期构造岩浆作用的产物。 相似文献
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The metallogenetic porphyry bodies in the Nongping Au-Cu deposit, in the eastern Yanbian area, mainly include porphyritic granodiorite and biotite granodiorite porphyry. They are featured with high silicon and enrichment in sodium, and classified into sodic rocks of low-K tholeiitic basalt series. Except slightly low Sr content, the rock basically has the geochemical characteristics of the adakite: relatively high A12O3 content, relatively low MgO content, depletion in Y and Yb; relative enrichment in large ion lithophile elements (LILEs) and light rare-earth elements (LREEs), relatively low content of high field strength elements (HFSEs); positive Eu anomaly or weak negative Eu anomaly. In situ zircon dating technology LA-MC-ICP-MS was used to conduct single-grain zircon dating of biotite granodiorite porphyry, and the results show that the age of metallogenetic porphyry body is 100.04±0.88 Ma, indicating that the porphyry bodies were emplaced in the late Cretaceous period. According to the regional tectonic setting and the comparison with the same kind of deposits, we think that the metallogenetic porphyry bodies in the Nongping Au-Cu deposit have a close genetic connection with the subduction of the Pacific plate in the late Yanshanian period. The adakitic magma generated from partial melting of the subducting plate has high formation temperature, high oxygen fugacity, and volatile constituents’ enrichment, so it is helpful for enrichment of metallogenetic elements and plays an important role in the formation of porphyry Au-Cu deposits in this region. 相似文献
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