Yücel H, Dikmen H
Turkish Atomic Energy Authority (TAEA), Besevler Yerleskesi, TR-06100 Tandogan, Ankara, Turkey.
Talanta. 2009 Apr 30;78(2):410-7. doi: 10.1016/j.talanta.2008.11.030. Epub 2008 Nov 27.
In this paper, the known multigroup gamma-ray analysis method for uranium (MGAU) as one of the non-destructive gamma-ray spectrometry methods has been applied to certified reference nuclear materials (depleted, natural and enriched uranium) containing (235)U isotope in the range of 0.32-4.51% atom (235)U. Its analysis gives incorrect results for the low component (235)U in depleted and natural uranium samples where the build-up of the decay products begins to interfere with the analysis. The results reveal that the build-up of decay products seems to be significant and thus the algorithms for the presence of decay products should be improved to resulting in the correct enrichment value. For instance, for the case of (235)U analysis in depleted uranium or natural ore samples, self-induced X-rays such as 94.6 keV and 98.4 keV lying in UXK(alpha) spectral region used by MGAU can be excluded from the calculation. Because the significant increases have been observed in the intensities of uranium self-induced X-rays due to gamma-ray emissions with above 100 keV energy arising from decay products of (238)U and (235)U and these parents. Instead, the use of calibration curve to be made between the intensity ratios of self-fluorescence X-rays to 92(*)keV gamma-ray and the certified (235)U abundances is suggested for the determination of (235)U when higher amounts of decay products are detected in the gamma-ray spectrum acquired for the MGAU analysis.
在本文中,已知的多组伽马射线铀分析方法(MGAU)作为一种无损伽马射线能谱法,已应用于含0.32 - 4.51%原子(235)U的(235)U同位素认证参考核材料(贫化铀、天然铀和浓缩铀)。对于贫化铀和天然铀样品中低含量的(235)U,其分析给出了错误结果,因为衰变产物的积累开始干扰分析。结果表明,衰变产物的积累似乎很显著,因此应改进衰变产物存在情况下的算法,以得到正确的浓缩值。例如,对于贫化铀或天然矿石样品中的(235)U分析,MGAU使用的UXK(α)能谱区域中94.6 keV和98.4 keV等自致X射线可从计算中排除。因为由于(238)U和(235)U及其母体的衰变产物产生的能量高于100 keV的伽马射线发射,已观察到铀自致X射线强度显著增加。相反,当在MGAU分析获得的伽马射线谱中检测到较多衰变产物时,建议使用自荧光X射线与92(*)keV伽马射线强度比和认证的(235)U丰度之间建立的校准曲线来测定(235)U。