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Article

Evaluation of Microwave Synthesis of Ceramic Pigments Based on In Situ Dielectric Characterization

by
Beatriz García-Baños
1,*,
Juan R. Sánchez
1,
Jose L. Godes
2,
Cristina Leonelli
3 and
Jose M. Catalá-Civera
1
1
ITACA Institute, Universitat Politècnica de València, Camino de Vera, 46022 Valencia, Spain
2
Al Farben S.A., Ptda. Torreta, s/n, 12110 Alcora, Spain
3
Department of Engineering “Enzo Ferrari”, University of Modena and Reggio Emilia, Via Pietro Vivarelli 10, 41125 Modena, Italy
*
Author to whom correspondence should be addressed.
Materials 2023, 16(8), 2976; https://doi.org/10.3390/ma16082976
Submission received: 20 February 2023 / Revised: 4 April 2023 / Accepted: 6 April 2023 / Published: 8 April 2023
(This article belongs to the Special Issue Advances in Microwave Processing of Materials)

Abstract

The application of microwave technology for efficient and environmentally friendly synthesis of ceramic pigments is a successful and rapidly evolving area of research. However, a clear understanding of the reactions and their relationship with the material absorbance has not been fully achieved. The present study introduces an in situ permittivity characterization technique, which serves as an innovative and precise tool for assessing the microwave synthesis of ceramic pigments. Several processing parameters (atmosphere, the heating rate, raw mixture composition and particle size) were evaluated by studying the permittivity curves as a function of temperature to elucidate their effect on the synthesis temperature and the final pigment quality. The validity of the proposed approach was verified through correlation with other well-known analysis techniques, such as DSC or XRD, providing valuable information about the reaction mechanisms and the optimum conditions for the synthesis process. In particular, changes in permittivity curves were linked, for the first time, to undesired metal oxide reduction at too-high heating rates and could be used to detect pigment synthesis failures and ensure product quality. The proposed dielectric analysis was also found to be a useful tool for optimizing raw material composition for the microwave process, including the use of chromium with lower specific surface area and flux removal.
Keywords: permittivity; microwave process; pigment synthesis; in situ dielectric characterization; high temperature; ceramic pigment; mixed metal oxides permittivity; microwave process; pigment synthesis; in situ dielectric characterization; high temperature; ceramic pigment; mixed metal oxides

Share and Cite

MDPI and ACS Style

García-Baños, B.; Sánchez, J.R.; Godes, J.L.; Leonelli, C.; Catalá-Civera, J.M. Evaluation of Microwave Synthesis of Ceramic Pigments Based on In Situ Dielectric Characterization. Materials 2023, 16, 2976. https://doi.org/10.3390/ma16082976

AMA Style

García-Baños B, Sánchez JR, Godes JL, Leonelli C, Catalá-Civera JM. Evaluation of Microwave Synthesis of Ceramic Pigments Based on In Situ Dielectric Characterization. Materials. 2023; 16(8):2976. https://doi.org/10.3390/ma16082976

Chicago/Turabian Style

García-Baños, Beatriz, Juan R. Sánchez, Jose L. Godes, Cristina Leonelli, and Jose M. Catalá-Civera. 2023. "Evaluation of Microwave Synthesis of Ceramic Pigments Based on In Situ Dielectric Characterization" Materials 16, no. 8: 2976. https://doi.org/10.3390/ma16082976

APA Style

García-Baños, B., Sánchez, J. R., Godes, J. L., Leonelli, C., & Catalá-Civera, J. M. (2023). Evaluation of Microwave Synthesis of Ceramic Pigments Based on In Situ Dielectric Characterization. Materials, 16(8), 2976. https://doi.org/10.3390/ma16082976

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