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Prediction of mineral liberation characteristics of comminuted particles of high grade ores

机译:高品位矿石粉碎颗粒矿物释放特征的预测

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摘要

In mineral processing, the liberation of valuable mineral is of key importance in achieving high recoveries from downstream separation processes such as froth flotation and gravity concentration. To quantify mineral liberation, information on ore texture of the parent rock as well as properties of comminuted particles is essential. These properties have been quantified by statistical measures such as the proximity function and covariance function, which were extracted from SEM images of parent rock and particle polished sections, using convenient and efficient image analysis techniques based on Labview~(?) software. To quantify fully liberated particles, a phase specific line segment function has been introduced and evaluated by placing random line segments on the image. It was also found that the ore texture assumptions made by Barbery are not valid for the high grade sulphide ore tested and the general applicability of these assumptions is therefore questionable. Using the measured information above, predictive liberation models to quantify volumetric grade distribution of particles in ID and 3D have been developed based on Barbery's work. Results show that the grade distributions of composite particles predicted from the proposed ID model is closest to measured data than those of Barbery's ID model. The predictions using the proposed 3D model are similar to those predicted from Barbery's model and are considered more realistic as the model does not rely on assumed ore texture but on measurements made on the parent rock and particle sections.
机译:在矿物加工中,有价值的矿物的释放对于实现下游分离过程(如泡沫浮选和重力浓缩)的高回收率至关重要。为了量化矿物的释放,有关母岩矿石质地以及粉碎后的颗粒的特性的信息至关重要。这些特性已通过统计手段进行了量化,例如,使用基于Labview〜(?)软件的便捷高效的图像分析技术,从母岩和颗粒抛光切片的SEM图像中提取了接近函数和协方差函数。为了量化完全释放的粒子,引入了特定相线段函数,并通过在图像上放置随机线段进行评估。还发现Barbery所作的矿石质地假设对于所测试的高品位硫化矿石无效,因此这些假设的普遍适用性值得怀疑。利用上述测量的信息,基于Barbery的工作,开发了预测性的解放模型来量化ID和3D中颗粒的体积梯度分布。结果表明,与Barbery的ID模型相比,从提出的ID模型预测的复合颗粒的梯度分布最接近实测数据。使用建议的3D模型进行的预测与根据Barbery模型进行的预测相似,并且由于该模型不依赖于假定的矿石质地而是依赖于对母体岩石和颗粒截面的测量,因此被认为更为现实。

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