EN
The Structural Characterization, Radioluminescence Results, and Thermoluminescence Kinetic Parameters of Aventurine
Abstract
In this study, in which the optical and luminescence properties of aventurine, a silicate-based mineral, were examined, the crystal structure of the mineral was examined by XRD analysis, its rheological properties and the elements it contained were determined by SEM-EDX analysis, and its structural properties were examined by FT-IR analysis. In order to determine the luminescence properties, radioluminescence (RL) and thermoluminescence (TL) methods were used and kinetic parameters were calculated. In the measurements taken in bulk and powder form of Aventurine, it was observed that the powder sample had a much better spectrum intensity, it was observed that the emission around 570 nm became much more pronounced in the powder sample. On the other hand, similar emissions were detected in both samples, though at different intensities. In TL analysis, it was observed that Aventurine was responsive to both X-ray and ultraviolet radiation at three different doses. While after X-ray irradiation, Aventurine exhibited TL glow curves with peaks at maximum temperatures of 90 oC and 250 oC, under UV irradiation the TL glow curves concentrated in the high-temperature region which is around 300 oC observed. Also; the TL kinetic parameters were reported; activation energy (E), the order of kinetics (b), and frequency factor (s) of the first peak have been determined in detail by using Computerized Glow Curve Deconvolution (CGCD) method.
Keywords
References
- [1] B. Karasu, B. Sarıcaoğlu, Aventurin Sırlarına Genel Bir Bakış, El-Cezeri Fen ve Mühendislik Derg. 2019 (2019) 140–155. doi:10.31202/ecjse.460093.
- [2] M.J.O. Donoghue, eJournal of Gemmology Gemmologıcal Assocıatıon Of Great Brıtaın, 20 (1986).
- [3] A. Gozalbo, M.J. Orts, S. Mestre, P. Agut, F. Lucas, A. Belda, C. Blanco, Ceramic Glazes With Aventurine Effect, Cycle. (2006) 189–202.
- [4] M.D. Shcheglova, M e c h a n i s m of a v e n t u r i n e f o r m a t i o n 1~ c o p p e r - c o n t a i n i n g a l k a l i - l e a d silicate glass, Glas. Ceram. 53 (1996) 14–17.
- [5] M.I. Kati, M. Türemis, I.C. Keskin, B. Tastekin, R. Kibar, A. Çetin, N. Can, Luminescence behaviour of beryl (aquamarine variety) from Turkey, J. Lumin. 132 (2012). doi:10.1016/j.jlumin.2012.03.058.
- [6] İ.Ç. Keskin, M.İ. Katı, M. Türemiş, A. Çetin, Y. Tuncer Arslanlar, R. Kibar, Determination of Thermoluminescence Kinetic Parameters of White and Blue Chalcedony Exposed to X-ray Irradiation, Radiat. Phys. Chem. (2018). doi:10.1016/j.radphyschem.2018.05.031.
- [7] M.I. Teixeira, D.N. Souza, L.V.E. Caldas, Onyx as radiation detector for high doses, Radiat. Meas. 46 (2011) 1894–1896. doi:10.1016/j.radmeas.2011.07.021.
- [8] S. Gültekin, S. Yıldırım, O. Yılmaz, İ.Ç. Keskin, M.İ. Katı, E. Çelik, Structural and optical properties of SrAl2O4: Eu2+/Dy3+ phosphors synthesized by flame spray pyrolysis technique, J. Lumin. 206 (2019) 59–69. doi:10.1016/j.jlumin.2018.10.011.
Details
Primary Language
English
Subjects
Engineering
Journal Section
Research Article
Authors
Publication Date
December 31, 2022
Submission Date
April 13, 2022
Acceptance Date
June 10, 2022
Published in Issue
Year 1970 Volume: 6 Number: 2
APA
Keskin, İ. Ç. (2022). The Structural Characterization, Radioluminescence Results, and Thermoluminescence Kinetic Parameters of Aventurine. Journal of Innovative Science and Engineering, 6(2), 175-189. https://doi.org/10.38088/jise.1102935
AMA
1.Keskin İÇ. The Structural Characterization, Radioluminescence Results, and Thermoluminescence Kinetic Parameters of Aventurine. JISE. 2022;6(2):175-189. doi:10.38088/jise.1102935
Chicago
Keskin, İlker Çetin. 2022. “The Structural Characterization, Radioluminescence Results, and Thermoluminescence Kinetic Parameters of Aventurine”. Journal of Innovative Science and Engineering 6 (2): 175-89. https://doi.org/10.38088/jise.1102935.
EndNote
Keskin İÇ (December 1, 2022) The Structural Characterization, Radioluminescence Results, and Thermoluminescence Kinetic Parameters of Aventurine. Journal of Innovative Science and Engineering 6 2 175–189.
IEEE
[1]İ. Ç. Keskin, “The Structural Characterization, Radioluminescence Results, and Thermoluminescence Kinetic Parameters of Aventurine”, JISE, vol. 6, no. 2, pp. 175–189, Dec. 2022, doi: 10.38088/jise.1102935.
ISNAD
Keskin, İlker Çetin. “The Structural Characterization, Radioluminescence Results, and Thermoluminescence Kinetic Parameters of Aventurine”. Journal of Innovative Science and Engineering 6/2 (December 1, 2022): 175-189. https://doi.org/10.38088/jise.1102935.
JAMA
1.Keskin İÇ. The Structural Characterization, Radioluminescence Results, and Thermoluminescence Kinetic Parameters of Aventurine. JISE. 2022;6:175–189.
MLA
Keskin, İlker Çetin. “The Structural Characterization, Radioluminescence Results, and Thermoluminescence Kinetic Parameters of Aventurine”. Journal of Innovative Science and Engineering, vol. 6, no. 2, Dec. 2022, pp. 175-89, doi:10.38088/jise.1102935.
Vancouver
1.İlker Çetin Keskin. The Structural Characterization, Radioluminescence Results, and Thermoluminescence Kinetic Parameters of Aventurine. JISE. 2022 Dec. 1;6(2):175-89. doi:10.38088/jise.1102935
