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Dose, dose rate and irradiation temperature effects in beta-irradiated simplified nuclear waste glasses by EPR spectroscopy

机译:EPR光谱法研究β辐射简化核废玻璃的剂量,剂量率和辐射温度效应

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摘要

The influence of dose, dose rate and irradiation or annealing temperature on the formation of paramagnetic centers has been investigated by electron paramagnetic resonance (EPR) spectroscopy on a series of beta -irradiated 4-, 5- and 6-oxide glasses in order to study the use of external beta -irradiation relative to simulate actual conditions during the storage of nuclear waste glasses. An unusual saturation of defect concentration occurs above 10(4) Gy. There is no dose rate dependence for the irradiation in a range between 2 x 10(3) and 2 x 10(4) Gy/s. The increase of irradiation temperature leads to an increase of Zr3+, a decrease of Fe3+ concentration, the formation of magnetic clusters and a strong decrease in the total concentration of paramagnetic defects. In addition, annealing and irradiation temperatures do not produce the same effects on the concentration of the various defects. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 27]
机译:为了研究,剂量,剂量率和辐照或退火温度对顺磁性中心形成的影响已通过一系列β辐照的4、5和6氧化物玻璃的电子顺磁共振(EPR)光谱进行了研究。使用外部β射线辐射来模拟核废玻璃储存期间的实际情况。缺陷浓度的异常饱和发生在10(4)Gy以上。在2 x 10(3)和2 x 10(4)Gy / s之间的范围内,辐照剂量率没有依赖性。辐照温度的升高导致Zr3 +的增加,Fe3 +浓度的降低,磁簇的形成以及顺磁缺陷总浓度的强烈降低。另外,退火和辐照温度对各种缺陷的浓度不会产生相同的影响。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:27]

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