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Application of process mineralogy as a tool in sustainable processing

机译:工艺矿物学在可持续加工中的工具应用

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The observed behaviours of mineral particles in mineral processing operations have been exploited in the past to model comminution and concentration processes. In this work this concept has been taken a step further, exploiting the mineralogical characteristics of particles to link comminution, concentration and smelting. This approach is demonstrated using a laboratory-based case study of a Ni-Cu sulphide ore. The case study focused on the effect of shifting energy between the comminution and smelting stages on the overall energy consumption for the metal production process. To model this effect the mineral composition of the particles was linked to the behaviour of the ore particles in the primary grinding, regrinding and flotation stages. This application of process mineralogy provides a methodology to minimise energy use across mineral concentration and smelting processes, an important aspect of sustainable processing.
机译:过去,已利用在矿物加工操作中观察到的矿物颗粒行为来模拟粉碎和浓缩过程。在这项工作中,这一概念又迈进了一步,利用了颗粒的矿物学特征将粉碎,浓缩和冶炼联系起来。使用基于实验室的镍铜硫化物矿石案例研究证明了这种方法。该案例研究的重点是在粉碎和冶炼阶段之间转移能量对金属生产过程中总体能耗的影响。为了模拟这种影响,将颗粒的矿物组成与矿石颗粒在初步研磨,再研磨和浮选阶段的行为联系在一起。工艺矿物学的这种应用提供了一种方法,可将矿物浓缩和冶炼过程中的能耗降至最低,这是可持续加工的重要方面。

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