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首页> 外文期刊>Radiation measurements >Influence of preheating treatment on the luminescence properties of adularia feldspar (KAlSi3O8)
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Influence of preheating treatment on the luminescence properties of adularia feldspar (KAlSi3O8)

机译:预热处理对长石(KAlSi3O8)发光性能的影响

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During the firing of ceramics that contain alkali feldspar grains (up to 900 degreesC in bricks and 1200 degreesC in porcelains) the metastable equilibrium of these natural materials is altered (refractory minerals, neo-formed minerals and new glassy components). Hence, potassium rich feldspar lattices, which are being used in some routines of archaeological dating and retrospective dosimetry, suffer minor modifications by preheating and irradiation treatments (K-selfdiffusion, stretching, etc.). In this paper, some pre-heatings of a K-feldspar (adularia) from Saint Gothard (Switzerland) attempted to simulate the temperatures and conditions undergone in brick manufacturing processes (1000 degreesC for 24 h and 1200 degreesC for 240 h). Some changes in the behavior of the TL and RL spectral curves were detected after combinations of thermal pretreatments (at 400 degreesC for 48 h; 500 degreesC for 72 h; 600 degreesC for 96 h and 700 degreesC for 144 h) and irradiations. Comparisons between high temperature annealed (1000 and 1200 degreesC) and non-annealed adularias show spectacular changes in the shape of the TL glow curves: natural-irradiated adularia displays a single large peak at similar to 100 degreesC, whereas annealed adularias show a very complex structure. The observed modifications, probably due to thermal alkali self-diffusion through the lattice interfaces, tilting of the Al-Si crankshafts and phase exsolutions, have been detected by X-ray diffraction. (C) 2000 Elsevier Science Ltd. All rights reserved. [References: 24]
机译:在烧制含有碱性长石晶粒的陶瓷时(砖中最高900摄氏度,瓷器中最高1200摄氏度),这些天然材料的亚稳态平衡发生了变化(难熔矿物,新形成的矿物和新的玻璃状成分)。因此,在一些考古测年和回顾性剂量测定中使用的富含钾的长石晶格,由于预热和辐照处理(K自扩散,拉伸等)而发生了细微的变化。在本文中,对来自瑞士圣哥德的钾长石(adularia)进行了一些预热,以模拟砖制造过程中所经历的温度和条件(1000摄氏度持续24 h,1200摄氏度持续240 h)。结合热预处理(400℃48小时; 500℃72小时; 600℃96小时和700℃144小时)和照射后,检测到TL和RL光谱曲线的行为发生了一些变化。高温退火(1000和1200℃)与未退火的杜鹃花之间的比较显示TL发光曲线的形状发生了惊人的变化:自然辐照的杜鹃花在接近100摄氏度时显示出一个大的峰值,而退火的杜鹃花则显示非常复杂结构体。观察到的变化可能是由于热碱通过晶格界面的自扩散,Al-Si曲轴的倾斜和相分离引起的,已通过X射线衍射进行了检测。 (C)2000 Elsevier ScienceLtd。保留所有权利。 [参考:24]

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