首页> 外文期刊>Economic geology and the bulletin of the Society of Economic Geologists >Using Physical Volcanology, Chemical Stratigraphy, and Pyrite Geochemistry for Volcanogenic Massive Sulfide Exploration: An Example from the Blake River Group, Abitibi Greenstone Belt
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Using Physical Volcanology, Chemical Stratigraphy, and Pyrite Geochemistry for Volcanogenic Massive Sulfide Exploration: An Example from the Blake River Group, Abitibi Greenstone Belt

机译:使用物理火山学,化学地层学和硫铁矿地球化学进行火山成因的大规模硫化物勘探:以阿布蒂比绿石带布莱克河群为例

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An innovative approach to enhance volcanogenic massive sulfide (VMS) exploration in regions outside of mining camps is to first use physical volcanology with litho- and chemostratigraphy to establish the location of effusive centers in the volcanic units and use pyrite geochemistry in sulfide-bearing stratified intervals with whole-rock geochemistry in the underlying volcanic units to identify hydrothermal upflow zones. This methodology is illustrated by this study in the Archean Blake River Group within the Abitibi greenstone belt of Quebec and Ontario. The Blake River Group contains numerous VMS deposits, yet large segments remain underexplored, including the Hebecourt Formation which contains four tholeiitic units that range from basalt to rhyolite in composition. Effusive centers are located for three felsic units and subunits: (1) low Ti (porphyritic) subunit of the main rhyolite, (2) high Ti (aphyric) subunit of the main rhyolite, and (3) the upper rhyolite, and for a basaltic andesite unit. Stringer and disseminated Zn-Cu mineralization occurs within the flank breccia of the low Ti rhyolite dome. An inferred vent area for an overlying basaltic andesitic unit has also been identified in this area, illustrating the coincidence of hydrothermal upflow zones with volcanic vents. LA-ICP-MS analysis of pyrite grains from several sulfide-bearing stratified intervals indicates two broad areas of higher Cu, Zn, Au, and Ag contents. The eastern region corresponds to known volcanic vents and mineralization. The western region also indicates upflow of Cu-bearing hydrothermal fluids and corresponds to a possible effusive center for the high Ti subunit. The western region does not contain known mineralization at lower stratigraphic positions, but it has not been thoroughly explored.
机译:加强在采矿营地以外地区的火山性块状硫化物(VMS)勘探的创新方法是,首先利用物理火山学和岩石地层和化学地层学来确定火山单元中喷出中心的位置,并在含硫化物的分层区间内使用黄铁矿地球化学。在下面的火山岩单元中用全岩石地球化学来识别热液上流带。在魁北克和安大略省的阿比蒂比绿岩带内的太古宙斯布雷克河群中的这项研究说明了这种方法。布雷克河群含有众多的VMS沉积物,但仍有很大一部分尚未开发,其中包括Hebecourt组,该组包含4个成分从玄武岩到流纹岩的变质单元。冒泡中心位于三个长英质单元和亚基上:(1)主流纹岩的低Ti(斑状)亚基,(2)主流纹岩的高Ti(非卟啉)亚基,(3)上流纹岩,以及玄武安山岩单元。低钛流纹岩穹顶的侧面角砾岩中发生了纵梁和弥散的Zn-Cu矿化。在该区域还确定了上伏玄武岩单元的推测出风口区域,说明了火山喷口与热液上流带的重合。 LA-ICP-MS对几个含硫化物分层层段的黄铁矿晶粒的分析表明,Cu,Zn,Au和Ag含量较高的两个广阔区域。东部地区对应于已知的火山喷口和矿化。西部地区还表明含铜热液的上流,并对应于高Ti亚基的可能冒泡中心。西部地区在较低的地层位置没有已知的成矿作用,但尚未进行彻底的勘探。

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