Evaluation of mineral liberation and stereological bias based on X-ray microtomography and scanning electron microscopy for an iron ore tailing

Guilherme José Ramos Oliveira, D. G. Horta, Fabiane Leocádia da Silva, F. L. von Krüger, Guilherme Jorge Brigolini Silva, D. Mazzinghy
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引用次数: 3

Abstract

ABSTRACT A key factor in mineral concentration is mineral liberation. Scanning electron microscope-based (SEM-based) automated image analysis systems have been used to obtain information concerning liberation. One of the limitations of SEM-based techniques is the unavoidable loss of 3D information, leading to significant stereological errors. X-ray microtomography (μCT) emerges as an alternative that permits three-dimensional imaging and direct measurement of spatial characteristics of particles, eliminating stereological issues. We used high-resolution μCT and a microscope-based system to evaluate the characteristics of liberation of an iron ore waste. Grade and surface exposure have been overestimated by the 2D assessment. The stereological effect was more pronounced in surface exposure quantification. We found a linear relationship between (i) grade and surface exposure and (ii) particle size and surface exposure. A comparison of SEM-based and μCT techniques showed that a 3D technique is better for the purpose of particulate systems characterisation.
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基于x射线显微层析成像和扫描电镜的铁矿尾矿矿物解离和立体偏置评价
矿物质浓度的一个关键因素是矿物质的释放。基于扫描电子显微镜(SEM)的自动图像分析系统已被用于获得关于解放的信息。基于SEM的技术的局限性之一是不可避免的3D信息损失,导致显著的立体误差。X射线显微摄影术(μCT)是一种替代方法,可以进行三维成像和直接测量颗粒的空间特征,消除了立体学问题。我们使用高分辨率μCT和基于显微镜的系统来评估铁矿石废料的释放特性。2D评估高估了坡度和表面暴露。立体效应在表面暴露定量中更为明显。我们发现(i)品位和表面暴露量以及(ii)粒度和表面暴露度之间存在线性关系。基于SEM和μCT技术的比较表明,3D技术更适合颗粒系统的表征。
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CiteScore
3.50
自引率
0.00%
发文量
6
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