Using γγ-Coincidence Spectroscopy to Identify Natural Radiation in Soils Near the Mississippi River

Pranjal Singh, Daniel Valmassei, Anthony Kuchera, Ben Crider
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Abstract

Naturally radioactive nuclides present in soils contain background radiation that humans are exposed to every day. Previous research suggests that there are high background radiation areas (HBRAs) caused by climate, geography, wind, and water currents that accumulate a higher concentration of these radionuclides. An investigation of the Nile Delta confirms the presence of minerals rich in U and Th from monazite and zircon, further suggesting that certain locations have a higher concentration of these radionuclides. The present work is a search for monazite in Great River Road State Park, near the Mississippi River. The acquired samples were measured with a low-background NaI(Tl) spectrometer and digital data acquisition system. Using γγ-coincidence spectroscopy to reduce background radiation, we were able to apply coincidence gates of known gamma-ray energies originating from 238U and 232Th decay chains to identify the presence of the radionuclides in the soil samples. From our results, we confirmed that there is an accumulation of minerals containing 238U and 232Th near the river. Our next steps will focus on calculating activities for quantitative results and collecting samples from an extended region along the river.
用γ-γ重合光谱法识别密西西比河附近土壤中的自然辐射
土壤中存在的天然放射性核素含有人类每天暴露在其中的背景辐射。先前的研究表明,存在由气候、地理、风和水流引起的高背景辐射区(HBRA),这些辐射区积累了更高浓度的这些放射性核素。对尼罗河三角洲的调查证实了独居石和锆石中富含U和Th的矿物的存在,进一步表明某些地方的这些放射性核素浓度更高。目前的工作是在密西西比河附近的大河路州立公园寻找独居石。用低背景NaI(Tl)光谱仪和数字数据采集系统对采集的样品进行了测量。使用γγ-符合光谱来减少背景辐射,我们能够应用来自238U和232Th衰变链的已知伽马射线能量的符合门来识别土壤样品中放射性核素的存在。根据我们的结果,我们确认在河流附近有一个含有238U和232Th的矿物堆积。我们接下来的步骤将侧重于计算活动以获得定量结果,并从河流沿岸的一个扩展区域收集样本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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