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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Exfoliation and diffusion following helium ion implantation in fluorapatite: implications for radiochronology and radioactive waste disposal
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Exfoliation and diffusion following helium ion implantation in fluorapatite: implications for radiochronology and radioactive waste disposal

机译:氟磷灰石中氦离子注入后的剥落和扩散:对放射年代学和放射性废物处置的影响

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The properties of fluorapatite, both a useful radiochronometer and a potential storage matrix specific for minor actinides produced by the reprocessing of spent nuclear fuel, have been investigated with emphasis to its response to alpha decay. Exfoliation, which occurs after implantation of high doses of 1.6-MeV He-ions (> 1.4 x 10(17) ions cm(-2), corresponding to 5% atomic proportion), could set an upper limit to the concentration of imbedded actinides (about 2 atoms % corresponding to 20 wt. %) or storage age unless significant diffusion of radiogenic He intervenes. This process has been studied by combining He implantation, thermal treatments in the temperature range 124-250 degrees C and measurement of the resulting He profile by an ion beam technique (ERDA) using 8.5-MeV C ions. The diffusion coefficient follows an Arrhenius' law with an activation energy of 120 (+/-2) KJ/mole and a frequency factor of 14.5 (+/-7) x 10(-3) cm(2) sec(-1) in agreement with literature data. The inferred closure temperature which validates the U,Th-He radiochronological method also fits previous values: 97 (+/-10)degrees C for grain size 165 mu m. With respect to radwaste disposal. He volume diffusion is too small to exclude the occurrence of exfoliation unless diffusion at grain boundary is much higher and a fine-grain matrix is deliberately chosen. (C) 1998 Elsevier Science Ltd. All rights reserved. [References: 24]
机译:已经研究了氟磷灰石的性质,既有用的辐射计时计,又是对废核燃料的后处理产生的次act系元素特有的潜在存储基质,并重点研究了其对α衰变的响应。高剂量的1.6 MeV He离子(> 1.4 x 10(17)离子cm(-2),对应于5%原子比例)植入后发生剥落,这可能为嵌入的act系元素浓度设置了上限(大约2原子%对应于20 wt。%)或储存期限,除非有放射性He的显着扩散介入。通过结合He注入,在124-250摄氏度温度范围内进行热处理以及通过使用8.5-MeV C离子的离子束技术(ERDA)测量所得的He分布,对这一过程进行了研究。扩散系数遵循阿伦尼乌斯定律,其活化能为120(+/- 2)KJ / mol,频率因子为14.5(+/- 7)x 10(-3)cm(2)sec(-1)与文献数据一致。推定的闭合温度验证了U,Th-He放射性年代学方法的有效性,也符合先前的值:对于165微米的晶粒,97(+/- 10)摄氏度。关于垃圾处理。体积扩散太小,不能排除剥离的发生,除非晶界的扩散高得多并且有意选择了细晶粒的基体。 (C)1998 Elsevier ScienceLtd。保留所有权利。 [参考:24]

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