Gutiérrez-Cano José D, Catalá-Civera José M, López-Buendía Angel M, Plaza-González Pedro J, Penaranda-Foix Felipe L
Institute of Information and Communication Technologies (ITACA), Universitat Politècnica de València, Camino de Vera s/n, 46022 Valencia, Spain.
CEINNMAT Innovaciones, INNCEINNMAT, SL, C/Catedrático Agustín Escardino, 9, 46980 Valencia, Spain.
Sensors (Basel). 2022 Feb 2;22(3):1138. doi: 10.3390/s22031138.
The identification of the minerals composing rocks and their dielectric characterization is essential for the utilization of microwave energy in the rock industry. This paper describes the use of a near-field scanning microwave microscope with enhanced sensitivity for non-invasive measurements of permittivity maps of rock specimens at the micrometer scale in non-contact mode. The microwave system comprises a near-field probe, an in-house single-port vectorial reflectometer, and all circuitry and software needed to make a stand-alone, portable instrument. The relationship between the resonance parameters of the near-field probe and the dielectric properties of materials was determined by a combination of classical cavity perturbation theory and an image charge model. The accuracy of this approach was validated by a comparison study with reference materials. The device was employed to determine the permittivity maps of a couple of igneous rock specimens with low-loss and high-loss minerals. The dielectric results were correlated with the minerals comprising the samples and compared with the dielectric results reported in the literature, with excellent agreements.
识别构成岩石的矿物及其介电特性对于岩石工业中微波能量的利用至关重要。本文描述了一种具有增强灵敏度的近场扫描微波显微镜的使用,该显微镜用于在非接触模式下以微米尺度对岩石标本的介电常数图进行非侵入式测量。微波系统包括一个近场探头、一个内部单端口矢量反射计以及制造一台独立便携式仪器所需的所有电路和软件。通过经典腔微扰理论和镜像电荷模型相结合的方法确定了近场探头的共振参数与材料介电特性之间的关系。通过与参考材料的比较研究验证了该方法的准确性。该设备用于确定含有低损耗和高损耗矿物的几种火成岩标本的介电常数图。介电结果与构成样品的矿物相关,并与文献中报道的介电结果进行了比较,结果吻合良好。