Applications of SEM Automated Mineralogy : From Ore Deposits over Processing to Secondary Resource Characterization

During the last decade, software developments in Scanning Electron Microscopy (SEM) provoked a notable increase of applications to the study of solid matter. The mineral liberation analysis (MLA) of processed metal ores was an important drive for innovations that led to QEMSCAN, MLA and other softwa...

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Year of Publication:2021
Language:English
Physical Description:1 electronic resource (226 p.)
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245 1 0 |a Applications of SEM Automated Mineralogy  |b From Ore Deposits over Processing to Secondary Resource Characterization 
246 |a Applications of SEM Automated Mineralogy 
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520 |a During the last decade, software developments in Scanning Electron Microscopy (SEM) provoked a notable increase of applications to the study of solid matter. The mineral liberation analysis (MLA) of processed metal ores was an important drive for innovations that led to QEMSCAN, MLA and other software platforms. These combine the assessment of the backscattered electron (BSE) image to the directed steering of the electron beam for energy dispersive spectroscopy (EDS) to automated mineralogy. However, despite a wide distribution of SEM instruments in material research and industry, the potential of SEM automated mineralogy is still under-utilised. The characterisation of primary ores, and the optimisation of comminution, flotation, mineral concentration and metallurgical processes in the mining industry by generating quantified data, is still the major application field of SEM automated mineralogy. However, there is interesting potential beyond these classical fields of geometallurgy and metal ore fingerprinting. Slags, pottery and artefacts can be studied in an archeological context for the recognition of provenance and trade pathways; soil, and solid particles of all kinds, are objects in forensic science. SEM automated mineralogy allows new insight in the fields of process chemistry and recycling technology. 
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650 7 |a Research & information: general  |2 bicssc 
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653 |a gold 
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653 |a comminution 
653 |a multi-stage flotation 
653 |a EDX spectra 
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653 |a iron ore 
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653 |a Raman spectroscopy 
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653 |a hematite 
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653 |a scanning electron microscopy 
653 |a ZEISS Mineralogic 
653 |a Fiskenæsset complex 
653 |a Feret angle 
653 |a element concentration map 
653 |a visualization 
653 |a mineral association 
653 |a bulk composition 
653 |a grain size 
653 |a waste of electrical and electronic equipment 
653 |a X-ray computed tomography 
653 |a mineral liberation analysis 
653 |a indicator minerals 
653 |a heavy mineral concentrates 
653 |a till sampling 
653 |a VMS 
653 |a Izok Lake 
653 |a sewage sludge ashes (SSA) 
653 |a phosphate 
653 |a recycling 
653 |a recovery 
653 |a SEM-automated mineralogy 
653 |a mineral liberation analysis (MLA) 
653 |a scanning electron microscope 
653 |a raw materials 
653 |a resource technology 
653 |a granular material 
653 |a petrology 
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