在罗斯托夫地区特别保护的自然区域伽马辐射的环境剂量当量率的分布

E. Buraeva, N. Malomyzheva
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引用次数: 0

摘要

监测特别受保护的自然区域生态系统中伽马辐射的环境剂量当量率对于确定高辐射本底地区和估计邻近地区辐射污染的本底水平是必要的。本文介绍了干旱半干旱草原生态系统环境辐射剂量当量率的研究结果。为此,罗斯托夫地区的六个特别保护的自然区域被用作研究对象。采用行人伽玛射线照射现场法,用剂量计-辐射计估算了伽玛辐射的环境剂量当量率。采用统计学方法对所得结果进行分析。结果表明,特殊保护区内γ辐射的环境剂量当量率分布在0.01 ~ 0.32µSv/h之间。在所有研究的特别保护的自然区域,伽马辐射的环境剂量当量率的算术平均值、几何平均值、模态值和中位数为0.128 μ Sv/h;0.120µSv / h;分别为0.135µSv/h和0.135µSv/h。研究发现,在罗斯托夫地区特别保护的自然区域,伽马辐射的环境剂量当量率不取决于土壤类型。研究结果使我们能够得出以下结论:在审议的领土内,伽马辐射的环境剂量当量率的算术平均值的微小差异可能是由于其保护和使用制度的特殊性,以及由于切尔诺贝利事故释放的放射性沉降物和放射性测量的不确定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distribution of the ambient dose equivalent rate of gamma radiation in specially protected natural areas of the Rostov region
To monitor the ambient dose equivalent rate of gamma radiation in the ecosytems of the specially protected natural areas is necessary for identification of the areas with high radiation background and estimation of the background level of radiation contamination in the adjacent territories. The paper presents results of the study of ambient dose equivalent rate of gamma radiation in the dry and semidry steppes ecosystems. For these purposes six specially protected natural areas located in the Rostov Region were used as research objects. The ambient dose equivalent rate of gamma radiation was estimated with dosimeters-radiometers by the field method of pedestrian gamma ray shooting. For the analysis of the obtained results statistical methods were used. It was found that the distribution of the ambient dose equivalent rate of gamma radiation in the specially protected natural areas varied from 0.01 to 0.32 µSv/h. Arithmetic mean, geometric mean, modal and median values of the ambient dose equivalent rate of gamma radiation for all studied specially protected natural areas are 0.128 µSv/h; 0.120 µSv/h; 0.135 µSv/h and 0.135 µSv/h, respectively. It was found that the ambient dose equivalent rate of gamma radiation in the specially protected natural areas in the Rostov Region did not depend on soil types. The study results allow us to make the following conclusion: insignificant differences in the arithmetic mean values of the ambient dose equivalent rate of gamma radiation in the territories under consideration may be due to the peculiarities of their protection and use regimes, as well as due to the radioactive fallout released by the Chernobyl accident and the uncertainty in radioactivity measurement.
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