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Rb-Sr isochron age of fluid inclusions in quartz from the Fuwan super-large silver deposit is 68 - 6 Ma, the silver deposit is characterized by high μ values (10.67 - 10.95 ), which are much higher than those of the ore-hosted Paleozoic strata and are close to those of ores hosted in the Proterozoic metamorphic basement in western Guangdong Province. Based on the Pb isotopic characteristics, coupled with much high background silver contents (200-1000ng/g) in the Proterozoic basement and relatively low silver contents in the Paleozoic strata in the region of the Sanshui Basin, it is concluded that the ore-forming material of the super-large silver deposit came mainly from the old basement. The super-large silver deposit related genetically to the intense volcanic activities during the Upper Cretaceous to Eogene. The formation of the Fuwan super-large silver deposit is controlled by the following favorable geological conditions : ( 1 ) The intersection of deep faults and contemporaneous faults at the margin of the Sanshui Basin led to the formation of an excellent structure as passageway for ore fluids; (2) The special ore-hosted rock association forms a ore gathering-trap structure that favors the precipitation of ore; (3) The silver-rich old basement, multi-stage mineralization and multi-episode volcanic activities which constitute a geothermal convection system. 相似文献
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冀西北东坪金矿床成矿流体的来源研究 总被引:1,自引:0,他引:1
冀西北东坪金矿床成矿流体的来源研究*莫测辉王秀璋程景平梁华英(华南农业大学资源环境学院,广州510642)(中国科学院广州地球化学研究所,广州510640)关键词金矿床成矿流体来源岩浆热液大气降水热液侵入岩体中的金矿床乃至岩体接触带或附近地层中的金矿... 相似文献
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粤北大沟谷热水沉积钠长石岩岩石化学及稀土元素 总被引:3,自引:0,他引:3
大沟谷含金钠长石岩带上为层状下为脉状产于震旦系乐昌峡群片岩中,主要由钠长石岩及碳酸盐岩组成。钠长石岩多为块状及条带状构造。钠长石岩和片岩化学成分不同,钠长石岩相对富集Al2 O3 、TiO2 、MnO、Na2O、P2O5,而贫Fe2O3 、FeO、MgO、CaO、K2 O。在主要氧化物组成的直角坐标图上,钠长石岩和片岩位于不同的区域及具不同的变化趋势。钠长石岩稀土元素含量较低,在 12.5 6× 10 -6~ 5 5.6 6× 10 -6之间,具较低的La/Yb(1.82~ 6.42 )、La/Sm(0.96~ 2.99)、Gd/Yb(0.99~ 2.71)比值,较大的δEu异常范围 (0.41~ 0.8),弱的δCe异常。钠长石岩地质产状特征及稀土元素特征表明其主要是热水沉积形成的。 相似文献
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长坑-富湾超大型银矿床主要产在下石炭统灰岩与上三叠统页岩断层不整合面下的硅质岩及灰岩中,矿化多为脉状,主要由石英、方解石、方铅矿、闪锌矿及银矿物组成。成矿流体Rb-Sr 等时线年龄为68±8.5Ma,表明成矿发生在59.5-76.5 Ma 之间。(87Sr/86Sr)I= 0.7164.成矿流体δ18O 在-0.86‰-4.1‰之间,δD 在-39.8‰-59‰之间,表明成矿流体为循环大气降水或建造水。银矿床铅同位素组成和产于中新元古代地层中茶洞银矿床方铅矿的铅同位素组成基本一致。据成矿年龄、成矿流体氢氧同位素组成及铅同位素组成特点,认为长坑-富湾超大型独立银矿床是晚白垩世至第三纪火山及次火山活动加热循环大气降水及建造水溶解深部矿源岩中经过早期成矿富集的成矿物质,迁移至灰岩与硅质岩及硅质岩与页岩界面时沉淀析出形成的。 相似文献
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长坑金矿主要产在长坑下石炭统灰岩与上三叠统页岩断层不整合面下的硅质岩中,矿化可分为两期,早期金矿化为层状及透镜状,和硅质岩的产状一致,其δ34S‰。在─35.4~—0.3之间,极差大,变化大,具沉积硫的一般特征;成矿流体的δD‰为─80~—59。晚期矿化主要以辉锑矿-石英脉形式产出,其δ34S‰:0.8~2.3,均一,变化小,和早期矿化有明显差异,晚期矿化成矿流体的δD‰:─30~—46。两期矿化铅同位素组成相似,和下伏地层的基本一致。据矿床的地质地球化学特征及前人有关硅质岩成因认识,认为长坑金矿早期矿化主要是热水沉积形成的,晚期矿化是改造形成的,成矿物质主要来自下伏地层。 相似文献