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Rapid Large Volume 3D Mineral Processing and Liberation Characterization Technique to Sub Micron Resolution

Rapid Large Volume 3D Mineral Processing and Liberation Characterization Technique to Sub Micron Resolution
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摘要 We describe a novel lab based X-ray computed tomography system based on the architecture of X-ray Microscopes (XRM) used in synchrotron radiation facilities to be adapted for mineral processing and mineral liberation analysis. As this is a tomographic technique performed with an XRM, it is non-destructive and does not require complex preparation of polished sections typical of SEM-EDS techniques (such as MLA and QEMSCAN). It complements these existing techniques by providing 3D information and mineral liberation of multi-phase particles with much larger sample volume statistics but at a fraction of the time. In several applications, the technique is superior. These include the characterization of tailing loss in precious minerals; the characterization of porosity, particle size distribution, crack and pore network analysis during comminution, heap leaching and for texture and exposure/lock class analysis for floatation. We describe a novel lab based X-ray computed tomography system based on the architecture of X-ray Microscopes (XRM) used in synchrotron radiation facilities to be adapted for mineral processing and mineral liberation analysis. As this is a tomographic technique performed with an XRM, it is non-destructive and does not require complex preparation of polished sections typical of SEM-EDS techniques (such as MLA and QEMSCAN). It complements these existing techniques by providing 3D information and mineral liberation of multi-phase particles with much larger sample volume statistics but at a fraction of the time. In several applications, the technique is superior. These include the characterization of tailing loss in precious minerals; the characterization of porosity, particle size distribution, crack and pore network analysis during comminution, heap leaching and for texture and exposure/lock class analysis for floatation.
机构地区 Xradia Inc
出处 《矿物学报》 CAS CSCD 北大核心 2013年第S1期78-78,共1页 Acta Mineralogica Sinica
关键词 MINERAL LIBERATION analysis (MLA) 3D MINERAL processing X-ray microscopy (XRM) COMPUTED TOMOGRAPHY precious base and industrial MINERALS mineral liberation analysis (MLA) 3D mineral processing X-ray microscopy (XRM) computed tomography precious base and industrial minerals
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