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Rocktype classification and domaining of complex stratiform Zn-Pb-Ag mineralisation at the George Fisher Mine using high resolution XRF Core scanning

机译:使用高分辨率XRF核心扫描乔治渔业矿井复杂层状ZN-PB-AG矿化的Rocktype分类和统计

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Zinc-Lead-Silver (Zn-Pb-Ag) mineralisation at the George Fisher Mine occurs in multiple structurally-disrupted stratiform orebodies hosted within a mid-Proterozoic sequence of calcareous siltstones and variably pyritic shales (e.g. Valenta, 1994; Chapman, 2004). The geological model for the mine has been constructed based on a large number of stratigraphic domains which have been defined using recognised patterns of the constituent rocktypes, aided by recognition and mapping of K-rich tuff marker beds (TMBs). The continuity of these domains has been affected by the presence of several sets of faults which are extensional in the plane of stratigraphy, leading to the common occurrence of fault-related stratigraphic gaps in drillholes. Recent improvements to the detail of the geological model have led to significant improvements in the head grade of ore at George Fisher, with relatively small loss of metal. Recognition and accurate logging of these domains requires a high level of knowledge and expertise amongst mine geologists. In order to aid this process, the George Fisher mine installed a Minalyzer CS (core scanner) on site, with the aim of using high resolution X-ray fluorescence (XRF) geochemical data and core photography to increase the speed, accuracy and consistency of the site geological logging system.
机译:锌 - 铅 - 银(锌 - 铅 - 银)矿化在乔治费舍尔矿发生在石灰质粉砂岩和可变地黄铁矿页岩的中间宙序列内主持的多个结构被破坏的层状矿体(例如瓦伦塔,1994;查普曼,2004) 。为矿山地质模型已经基于大量已经使用所识别的组分的rocktypes模式限定地层结构域,通过的富钾凝灰岩标志层(条约监督机构)识别和映射辅助的被构造。这些结构域的连续性已经受到的几套故障这是在地层的平面伸展的存在,导致在钻孔断层相关地层间隙的共同发生。地质模型的细节的最新改进已经导致在乔治·费舍尔矿的原矿品位显著的改善,与金属的相对小的损失。识别与这些领域的准确记录需要之间矿地质高水平的知识和专长。为了帮助这个过程中,乔治费希尔矿在现场安装了Minalyzer CS(核心扫描仪),使用高分辨率X射线荧光(XRF)地球化学数据和核心摄影,以增加的速度,准确性和一致性的目的现场地质录井系统。

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