The Investigation of Kinetic Characterization of Sea Salt via Thermoluminescence Method

A. Çetin, M. Türemiş, İ. Keski̇n, M. Kati, B. Taştekin, M. A. Çipiloğlu, R. Kibar
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Abstract

The calculation of the kinetic parameters of a thermoluminescence material (kinetic order (b), activation energy (E) and frequency factor (s)) by using the thermoluminescence (TL) method is extremely important in determining the kinetic characterization of the materials. Sodium Chloride (NaCl) is an inorganic salt. It is a crystal well known for its luminescent properties, with a simple cubic structure and its band gap is rather large (~ 8.5 eV). In this work, it was reported the TL response of the material in the range of 50– 400 o C and calculated kinetic parameters of sea salt. Two glow peaks were observed at 100 o C and 235 o C in the TL glow curve of sea salt with a heating rate 2 o C/s after X-ray irradiation. The T m -T stop method was used to determine the overlapping peaks under the main peak at 100 o C. With the computerized glow curve deconvolution (CGCD) method, the peak analysis was performed. In addition, kinetic parameters were calculated using various heating rates and peak shape. The b = 1.5, E = 0.88 eV and s = 1.7x10 11 s -1 values were calculated using the peak shape method.
海盐热释光动力学表征研究
用热释光(TL)方法计算热释光材料的动力学参数(动力学阶数(b)、活化能(E)和频率因子(s))对于确定材料的动力学特性是非常重要的。氯化钠(NaCl)是无机盐。它是一种以其发光特性而闻名的晶体,具有简单的立方结构和相当大的带隙(~ 8.5 eV)。本文报道了材料在50 ~ 400℃范围内的TL响应,并计算了海盐的动力学参数。x射线辐照后,海盐的TL发光曲线在升温速率为2℃/s的条件下,在100℃和235℃处观察到两个发光峰。采用T - m -T停止法确定100℃时主峰下的重叠峰,采用计算机辉光曲线反褶积(CGCD)方法进行峰分析。此外,利用不同的升温速率和峰形计算了动力学参数。采用峰形法计算b = 1.5, E = 0.88 eV和s = 1.7x10 11 s -1值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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