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Reconciliation Principles for the Mining Industry

机译:矿业和解原则

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摘要

Reconciliation involves the collection of tonnage, grade (quality) and contained metal (product) data from disparate and hopefully independent sources. Examples are exploration data, production sampling data from blastholes or drawpoints, and process plant data. These data may be compared by means of ratios (factors). The F1 factor usually relates short-term (ore control) model tonnages, grades and metal content to ore reserves depleted. The F2 factor usually relates received-at-mill tonnages, grades and metal content to delivered-to-mill = production tonnages, grade and metal content. The F3 factor is F1 × F2 and enables a comparison of a mine’s ability to recover the tonnage, grade and metal content estimated in ore reserves. The F1 factor measures the accuracy of orebody knowledge in the ore reserves to the demarcation of ore and waste by ore control (short-term model). The F1 factor may be used to check and calibrate the selectivity of mineral resource models and/or planned dilution assumed in transfer from mineral resources to ore reserves. The F2 factor enables a check on unplanned dilution entering the ore stream between ore control and the mill. Using the factors it is possible to calculate a monetary value on improvements in the accuracy of orebody knowledge, selectivity and the effects of dilution and ore loss. Reconciliation should be an implicit part of the mining process, and reconciliation targets should be a key performance indicator for well-run mines.
机译:和解涉及收集来自不同和希望独立来源的吨位,等级(质量)和包含的金属(产品)数据。示例是探索数据,来自Blastholes或DrawPoints的生产采样数据,以及处理工厂数据。这些数据可以通过比率(因子)进行比较。 F1因子通常将短期(Ore Control)模型吨位,等级和金属含量涉及到矿石储备耗尽。 F2因子通常将接收的磨削吨位,等级和金属含量与换热=生产吨位,等级和金属含量相关联。 F3因子是F1×F2,并且可以比较矿山恢复矿石储量估计的吨位,等级和金属含量的能力。 F1因子测量矿石对矿石储备中的矿体知识的准确性,对矿石和矿石控制(短期模型)的矿区的划分。 F1因子可用于检查和校准从矿产资源转移到矿石储备中的矿产资源模型的选择性和/或计划稀释。 F2因子使得能够检查在矿石控制和研磨机之间进入矿石流的大计划稀释。使用因素可以计算矿体知识,选择性和稀释和矿石损失的准确性的改进的货币价值。和解应该是采矿过程的隐含部分,并且调和目标应该是良好的矿山的关键绩效指标。

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