4.6 Article

Effect on thermoluminescence parameters of biotite mineral due to thermal quenching

Journal

JOURNAL OF LUMINESCENCE
Volume 132, Issue 11, Pages 2952-2956

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jlumin.2012.06.009

Keywords

Thermoluminescence; Glow curves; Electron traps; Activation energy; Symmetry factor; Thermal quenching

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The Thermally Stimulated Luminescence (TSL) at room temperature X-ray irradiated natural biotite in form of micro-grain powder was studied under various heating rates. TSL peaks showed at temperatures 393 K, 399.6 K, 403.5 K, 404.5 K, 406.9 K at their respective heating rates 2 K/s, 4 K/s, 6 K/s. 8 K/s and 10 K/s. The effect of thermal quenching on thermoluminescence parameters such as peak maximum temperature, peak area, FWHM, geometrical symmetry factor, the activation energy were investigated. From the symmetry factor it is clear that the TL glow curve follows the first order kinetics for the lowest heating rate, but as the heating rate increases it defers from the first order. The activation energies for each heating rates were calculated by using Chen peak shape methods for general order kinetics and found to be decreased for higher heating rates. When activation energy is calculated by variable heating rate method it is observed that the method overestimated the value of activation energy and pre-exponential frequency factor significantly due to thermal quenching. (C) 2012 Elsevier B.V. All rights reserved.

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