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Uranium, radium and thorium in soils with high-resolution gamma spectroscopy, MCNP-generated efficiencies, and VRF non-linear full-spectrum nuclide shape fitting

机译:高分辨率伽马能谱,MCNP产生的效率和VRF非线性全谱核素形状拟合对土壤中的铀,镭和th的拟合

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A new method for analysis of uranium and radium in soils by gamma spectroscopy has been developed using VRF (“Visual RobFit”) which, unlike traditional peak-search techniques, fits full-spectrum nuclide shapes with non-linear least-squares minimization of the chi-squared statistic. Gamma efficiency curves were developed for a 500 mL Marinelli beaker geometry as a function of soil density using MCNP. Collected spectra were then analyzed using the MCNP-generated efficiency curves and VRF to deconvolute the 90 keV peak complex of uranium and obtain 238U and 235U activities. 226Ra activity was determined either from the radon daughters if the equilibrium status is known, or directly from the deconvoluted 186 keV line. 228Ra values were determined from the 228Ac daughter activity. The method was validated by analysis of radium, thorium and uranium soil standards and by inter-comparison with other methods for radium in soils. The method allows for a rapid determination of whether a sample has been impacted by a man-made activity by comparison of the uranium and radium concentrations to those that would be expected from a natural equilibrium state.
机译:已经开发出一种使用伽玛光谱法分析土壤中铀和镭的新方法,该方法使用了VRF(“ Visual RobFit”),与传统的峰搜索技术不同,该方法将全光谱核素形状与非线性最小二乘最小化拟合在一起。卡方统计量。使用MCNP绘制了500 mL Marinelli烧杯几何形状随土壤密度变化的伽马效率曲线。然后使用MCNP生成的效率曲线和VRF分析收集的光谱,对铀的90 keV峰配合物进行去卷积,获得238U和235U活性。 226Ra活性是由the子(如果已知道平衡状态)确定的,或直接从去卷积的186keV谱线确定的。从228Ac子代活性确定228Ra值。该方法通过分析镭,th和铀土壤标准品以及与土壤中镭的其他方法进行比较得到了验证。通过将铀和镭的浓度与自然平衡状态所预期的浓度进行比较,该方法可以快速确定样品是否受到人为活动的影响。

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