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首页> 外文期刊>Optical Materials >X-ray irradiated thermo- and radioluminescence, structural and thermal characterization of septarian (powder&bulk) from Madagascar
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X-ray irradiated thermo- and radioluminescence, structural and thermal characterization of septarian (powder&bulk) from Madagascar

机译:马达加斯加的隔壁(粉末和散装)的X射线辐射热和放射致发光,结构和热表征

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The luminescence properties of septarian have been investigated for the first time in this study, which has been the subject of many studies in both geological and geophysical fields. This sediment with a calcium carbonate structure exhibited high luminescence properties with X-ray excitation. The radioluminescence (RL) and thermoluminescence (TL) properties were investigated as well as their structural (FT-IR, XRD), morphological (SEM), thermal (TG-DTA) and absorption (UV-Vis-NIR) properties of this sediment. The broad RL peak of septarian was observed at 640 nm. There was a significant increase in the RL intensities of the sifted samples compared with the bulk sample. The TL glow curves of septarian irradiated with X-rays exhibited intense main TL glow peak having the maximum temperatures at 116 degrees C and about 390 degrees C with a heating rate of 2 degrees C/s. Also; the TL kinetic parameters were reported; activation energy (E), frequency factor (s) and the order of kinetics (b) of the first peak have been determined in detail by using peak shape (PS) and Computerized Glow Curve Deconvolution (CGCD) methods. SEM and EDS analysis were performed for the two different layers of septarian. The light colored side with the amorphous structure of the sample has more impurities (such as Fe, Al, Zr, K) than the crystallized and darker side.
机译:在本研究中首次研究了隔片的发光特性,这已成为地质和地球物理领域许多研究的主题。该具有碳酸钙结构的沉积物在X射线激发下显示出高发光性能。研究了该沉积物的放射致发光(RL)和热致发光(TL)特性及其结构(FT-IR,XRD),形态(SEM),热(TG-DTA)和吸收(UV-Vis-NIR)特性。在640 nm处观察到了九broad的宽RL峰。与散装样品相比,筛分样品的RL强度显着增加。用X射线辐照的隔壁的TL辉光曲线显示出强烈的主TL辉光峰,其最高温度为116摄氏度和约390摄氏度,加热速率为2摄氏度/秒。也;报道了TL动力学参数;通过使用峰形(PS)和计算机辉光曲线反褶积(CGCD)方法详细确定了第一个峰的活化能(E),频率因子(s)和动力学顺序(b)。 SEM和EDS分析针对两层不同的隔垫层进行。与结晶且较暗的一面相比,具有非晶态结构的样品的浅色一面具有更多的杂质(例如Fe,Al,Zr,K)。

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