3D Ore Characterization as a Paradigm Shift for Process Design and Simulation in Mineral Processing3D-Erzcharakterisierung als Paradigmenwechsel für Prozessentwurf und Simulation in der Mineralaufbereitung

被引:0
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作者
Pratama Istiadi Guntoro
Yousef Ghorbani
Jan Rosenkranz
机构
[1] Luleå University of Technology,Division of Minerals and Metallurgical Engineering
[2] Kaunis Iron AB,undefined
关键词
X‑ray microcomputed tomography; Mineralogy; Texture; Liberation; Geometallurgy; Mikro-Röntgen-Computertomographie; Mineralogie; Mikrostruktur; Aufschluß; Geometallurgie;
D O I
10.1007/s00501-021-01135-w
中图分类号
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摘要
Current advances and developments in automated mineralogy have made it a crucial key technology in the field of process mineralogy, allowing better understanding and connection between mineralogy and the beneficiation process. The latest developments in X‑ray micro-computed tomography (µCT) have shown a great potential to let it become the next-generation automated mineralogy technique. µCT’s main benefit lies in its capability to allow 3D monitoring of the internal structure of the ore sample at resolutions down to a few hundred nanometers, thus excluding the common stereological error in conventional 2D analysis. Driven by the technological and computational progress, µCT is constantly developing as an analysis tool and successively it will become an essential technique in the field of process mineralogy. This study aims to assess the potential application of µCT systems, for 3D ore characterization through relevant case studies. The opportunities and platforms that µCT 3D ore characterization provides for process design and simulation in mineral processing are presented.
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页码:384 / 389
页数:5
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