High-resolution dielectric characterization of minerals: a step towards understanding the basic interactions between microwaves and rocks
Tamara Monti (1), Alexander Tselev (2), Ofonime Udoudo (1), Ilia N., Ivanov (2), Samuel W. Kingman (1) ((1) University of Nottingham, Nottingham -, UK, (2) Center for Nanophase Materials Sciences, Oak Ridge National, Laboratories, Oak Ridge - USA)

TL;DR
This paper introduces a high-resolution microwave microscopy method to measure dielectric properties of mineral inclusions, advancing understanding of microwave-mineral interactions crucial for energy-efficient mining processes.
Contribution
A novel scanning microwave microscopy technique is developed for precise dielectric characterization of mineral inclusions at micrometer scale, revealing fundamental interactions.
Findings
High spatial resolution dielectric measurements of mineral inclusions.
Correlation of dielectric properties with mineral composition and structure.
Potential for improved microwave-based mineral processing.
Abstract
Microwave energy has been demonstrated to be beneficial for reducing the energetic cost of several steps of the mining process. Significant literature has been developed about this topic but few studies are focused on understanding the interaction between microwaves and minerals at a fundamental level in order to elucidate the underlying physical processes that control the observed phenomena. This is ascribed to the complexity of such phenomena, related to chemical and physical transformations, where electrical, thermal and mechanical forces play concurrent roles. In this work a new characterization method for the dielectric properties of mineral samples at microwave frequencies is presented. The method is based upon the scanning microwave microscopy technique that enables measurement of the dielectric constant, loss factor and conductivity with extremely high spatial resolution and…
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