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Aspects of resource estimation for mineral sands deposits

机译:矿砂矿床资源估算的各个方面

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Mineral sand deposits being economically exploited around the world fall into three main deposit styles; palaeo shorelines and marine placers, dunal and aeolian deposits, and alluvial deposits. Resource estimation for mineral sands follows standard estimation principles as applied to commodities throughout the Mineral Resource sector. There are, however, characteristics of mineral sands that require a slightly different approach and more emphasis on the geometallurgical characterisation to support the evaluation, Resource estimation and eventual reporting of the Mineral Resource estimate. Drilling is the main exploration and Resource definition tool used in the mineral sands industry and aside from logging and sampling, observation of hardness and induration attributes are critical aspects of drilling mineral sands deposits. Assaying is conducted on drill samples for heavy mineral (HM) content and for various particle size ranges and then further assaying or mineralogical assessment is undertaken on the HM to determine valuable heavy mineral components (typically zircon, ilmenite, rutile). The estimation of mineral sands resources requires a sound geological model before the determination of any geometallurgy based sub-domains within the mineralisation. Understanding the mineralogy and quality characteristics of deposits influences the confidence in subsequent Mineral Resource and Ore Reserve estimation and will in turn assist the Competent Person to select the appropriate cut-off-grade for Mineral Resource reporting.
机译:在世界范围内被经济开采的矿物砂矿床可分为三种主要的矿床类型。古海岸线和海洋砂矿,晚生和风积物以及冲积物。矿砂资源估算遵循标准估算原则,该原则适用于整个矿产资源部门的商品。但是,矿砂的特征需要稍微不同的方法,并且更多地侧重于地球冶金特征,以支持评估,资源估算以及最终报告矿产资源估算。钻探是矿物砂行业中使用的主要勘探和资源定义工具,除了测井和采样外,观察硬度和硬结属性是钻探矿物砂沉积的关键方面。在钻探样品上进行重矿物(HM)含量和各种粒度范围的测定,然后对HM进行进一步测定或矿物学评估,以确定有价值的重矿物成分(通常为锆石,钛铁矿,金红石)。在确定矿化中任何基于地质冶金的子域之前,矿砂资源的估算需要一个完善的地质模型。了解矿床的矿物学和质量特征会影响对随后的矿产资源和矿石储量估算的信心,进而将有助于胜任人员为矿产资源报告选择适当的品位等级。

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