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High accuracy in situ radiometric mapping

机译:高精度原位辐射测绘

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In situ and airborne gamma ray spectrometry have been shown to provide rapid and spatially representative estimates of environmental radioactivity across a range of landscapes. However, one of the principal limitations of this technique has been the influence of changes in the vertical distribution of the source (e.g. ~(137)Cs) on the observed photon fluence resulting in a significant reduction in the accuracy of the in situ activity measurement. A flexible approach for single gamma photon emitting radionuclides is presented, which relies on the quantification of forward scattering (or valley region between the full energy peak and Compton edge) within the gamma ray spectrum to compensate for changes in the ~(137)Cs vertical activity distribution. This novel in situ method lends itself to the mapping of activity concentrations in environments that exhibit systematic changes in the vertical activity distribution. The robustness of this approach has been demonstrated in a salt marsh environment on the Solway coast, SW Scotland, with both a 7.6 cm x 7.6 cm NaI(Tl) detector and a 35% n-type HPGe detector. Application to ploughed field environments has also been demonstrated using HPGe detector, including its application to the estimation of field moist bulk density and soil erosion measurement. Ongoing research work is also outlined.
机译:现场和机载伽马射线能谱仪已被证明可以对一系列景观提供快速且具有空间代表性的环境放射性估算。但是,该技术的主要局限性之一是源的垂直分布(例如〜(137)Cs)的变化对观察到的光子通量的影响,从而导致原位活度测量的准确性大大降低。 。提出了一种灵活的方法,用于发射单个伽马光子的放射性核素,该方法依赖于对伽马射线光谱内的前向散射(或整个能量峰和康普顿边缘之间的谷部区域)进行量化,以补偿〜(137)Cs垂直方向的变化。活动分布。这种新颖的原位方法适用于在垂直活动分布表现出系统变化的环境中绘制活动浓度。这种方法的鲁棒性已经在苏格兰西南部索尔韦海岸的盐沼环境中得到了证实,该环境同时具有7.6 cm x 7.6 cm NaI(Tl)检测器和35%n型HPGe检测器。使用HPGe检测器还证明了其在耕地环境中的应用,包括其在估算田间湿容密度和土壤侵蚀测量中的应用。还概述了正在进行的研究工作。

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