Abstract A correlative approach employing optical microscopy and scanning electron microscopy is proposed for the quantification of phases and pores in iron ore pellets. Combining mosaic images covering the full cross-sections of pellets, obtained with both techniques, it is possible to improve the discrimination of pores, quartz and silicates. First, the images must be carefully registered to show the exact same regions. The procedure for registration, discrimination and quantification was developed with Fiji open source software. A qualitative and quantitative analysis confirmed the advantages of the correlative method as compared to the individual techniques
Opticalimageanalysis is a very convenient tool for obtaining comprehensive information about fine ir...
Quantitative mineral characterisation is one of the fundamental subjects in mineral processing studi...
This work has been a part of the development of a method where x-ray microtomography and image analy...
Abstract A correlative approach employing optical microscopy and scanning electron microscopy is pro...
Knowledge about pellet microstructure such as porosity and oxidation degree is essential in improvin...
Knowledge about pellet micro structure is essential in improving their macro behavior. Manual optic...
This paper presents an automatic system for mineralogical and textural characterization of iron ores...
In this thesis, image processing tools are used for analysing properties of iron ore pellets, with t...
Sintering occurs in many types of material such as iron, ceramics and snow, typically during thermal...
Cryogenic scanning electron microscopy (cryo-SEM), image analysis (IA) of SEM micrographs and X-ray ...
<div><p>This work proposes a three-dimensional methodology to characterize porosity in iron ore pell...
The aim of this thesis work was to develop new methodologies to characterize iron ore green pellets,...
Opticalimageanalysis is a very convenient tool for obtaining comprehensive information about fine ir...
Quantitative mineral characterisation is one of the fundamental subjects in mineral processing studi...
This work has been a part of the development of a method where x-ray microtomography and image analy...
Abstract A correlative approach employing optical microscopy and scanning electron microscopy is pro...
Knowledge about pellet microstructure such as porosity and oxidation degree is essential in improvin...
Knowledge about pellet micro structure is essential in improving their macro behavior. Manual optic...
This paper presents an automatic system for mineralogical and textural characterization of iron ores...
In this thesis, image processing tools are used for analysing properties of iron ore pellets, with t...
Sintering occurs in many types of material such as iron, ceramics and snow, typically during thermal...
Cryogenic scanning electron microscopy (cryo-SEM), image analysis (IA) of SEM micrographs and X-ray ...
<div><p>This work proposes a three-dimensional methodology to characterize porosity in iron ore pell...
The aim of this thesis work was to develop new methodologies to characterize iron ore green pellets,...
Opticalimageanalysis is a very convenient tool for obtaining comprehensive information about fine ir...
Quantitative mineral characterisation is one of the fundamental subjects in mineral processing studi...
This work has been a part of the development of a method where x-ray microtomography and image analy...