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Automated Quantitative Mineralogy Optimized for Simultaneous Detection of (Precious/Critical) Rare Metals and Base Metals in A Production-Focused Environment

机译:自动定量矿物优化,用于同时检测(珍贵/批评)稀有金属和基础金属在生产的环境中

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摘要

Automated Scanning Electron Microscopy (ASEM) systems are applied in the mining industry to quantify the mineralogy of the ore feed and products. With society pushing towards sustainable mining, this quantification should be comprehensive and include trace minerals since they are often either deleterious or potential by-products. Systems like QEMSCAN® offer a mode for trace mineral analysis (TMS mode); However, it is unsuitable when all phases require analysis. Here, we investigate the potential of detecting micron-sized trace minerals in fieldscan mode using the QEMSCAN® system with analytical settings in line with the mining industry. For quality comparison, analysis was performed at a mining company and a research institution. This novel approach was done in full collaboration with both parties. Results show that the resolution of trace minerals at or below the scan resolution is difficult and not always reliable due to mixed X-ray signals. However, by modification of the species identification protocol (SIP), quantification is achievable, although verification by SEM-EDS is recommended. As an add-on to routine quantitative analysis focused on major ore minerals, this method can produce quantitative data and information on mineral association for trace minerals of precious and critical metals which may be potential by-products in a mining operation.
机译:自动扫描电子显微镜(亚马逊)系统应用于采矿业,以量化矿石饲料和产品的矿物学。随着社会推动可持续采矿,这种量化应全面地包括痕量矿物质,因为它们通常是有害或潜在的副产品。像QEMSCAN®这样的系统提供了一种痕量矿物分析(TMS模式)的模式;但是,当所有阶段都需要分析时,它是不合适的。在这里,我们研究了使用具有分析设置的QEMScan®系统在FieldScan模式下检测微米尺寸痕量矿物的可能性,该系统与矿业行业一致。对于质量比较,分析是在矿业公司和研究机构进行的。这种新方法是与双方完全合作完成的。结果表明,由于混合X射线信号,扫描分辨率或低于扫描分辨率的痕量矿物质的分辨率难以可靠。然而,通过修改物种识别协议(SIP),可以实现量化,尽管建议使用SEM-EDS验证。作为常规定量分析的加载项,该方法可以产生关于矿物质结合的定量数据和信息,用于贵重和关键金属的痕量矿物质,这可能是在采矿操作中潜在的副产品。

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