Time changes of dose equivalent rate above the soil surface as indication of natural attenuation processes

Q3 Earth and Planetary Sciences
A. Konoplev, T. Yoshihara, Y. Wakiyama
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引用次数: 1

Abstract

Abstract. Eight sites in the Fukushima contaminated area were surveyed for long-term changes in D-shuttle dose equivalent rate above the soil surface during 2015–2017. D-shuttle readings in most cases decreased faster than if due to radioactive decay only. More rapid decrease can be explained by natural attenuation processes, such as erosion of the topsoil, the vertical migration of radionuclides in the soil and the deposition of cleaner sediments transported by surface runoff. According to the time dependencies of D-shuttle dose rate readings integral rate constants of the natural attenuation were estimated using the exponential trend-line. Estimated rate constants of natural attenuation ranged from 7.3×10-3 to 0.48 yr−1, while the correspondent a half-dose rate decrease was 1.4–95 years.
地表以上剂量当量率随时间变化的自然衰减过程
摘要研究了2015-2017年福岛核污染地区8个地点土壤表面d -穿梭剂量当量率的长期变化。在大多数情况下,D-shuttle的读数比仅仅由于放射性衰变而下降得更快。更迅速的减少可以用自然衰减过程来解释,例如表土的侵蚀、土壤中放射性核素的垂直迁移以及地表径流输送的清洁沉积物的沉积。根据d穿梭剂量率读数的时间依赖性,用指数趋势线估计了自然衰减的整体速率常数。估计的自然衰减速率常数范围为7.3×10-3至0.48 yr - 1,而相应的半剂量率下降为1.4-95年。
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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来源期刊
Proceedings of the International Association of Hydrological Sciences
Proceedings of the International Association of Hydrological Sciences Earth and Planetary Sciences-Earth and Planetary Sciences (all)
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12 weeks
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