Radionuclide activity in cryoconite from glaciers of the Central Caucasus, Russia

IF 2 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY Solid Earth Sciences Pub Date : 2022-12-15 DOI:10.1016/j.sesci.2022.08.001
Evgeny Abakumov , Albert Gangapshev , Ali Gezhaev , Rustam Tembotov
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引用次数: 3

Abstract

This work presents the results of a study of radionuclide activity in cryoconite from glacier and glacial soil of the Central Caucasus. Cryoconite were sampled from the surface of the Garabashi glacier, and soil samples were taken from the humus horizon of periglacial mountain forest-meadow soil. Measurements were performed with low-background germanium gamma spectrometers located inside a passive shield consisting of ∼20 cm of copper, ∼15 cm of lead, and ∼8 cm of borated polyethylene. The specific activity of radionuclides (Be-7, K-40, Th-232, U-235, U-238, Cs-137) was established. It was revealed that all measured spectra contain γ-lines from decays of K-40, decay chains of U-238, U-235 and Th-232. In addition, the spectra of cryoconite samples from the Garabashi glacier show a 477.6 keV line from the decay of the cosmogenic isotope Be-7, and in the soil sample a 661.7 keV line from the radionuclide Cs-137. No radionuclide Be-7 was detected in the mountain forest-meadow soil. Radionuclide Cs-137 is present in the soil sample, while in cryoconite, is not detected. Radioisotope activities in the Garabashi glacier cryoconite, except for the cosmogenic isotope Be-7, do not differ significantly in terms of mass, i.e., the content of K-40, U-238, U-235 and Th-232 in them is approximately the same. The activity of all the studied radionuclides in the soil sample compared to cryoconite samples is lower, although the differences are not significant, except for Th-232, whose activity in soil is almost two times lower.

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俄罗斯高加索中部冰川冰晶中的放射性核素活性
本文介绍了对中高加索冰川和冰川土壤中冰晶中放射性核素活性的研究结果。在Garabashi冰川表面采集冰晶,在冰缘山地森林-草甸土壤腐殖质层采集土壤样品。测量是用低背景锗伽马光谱仪进行的,该光谱仪位于由~ 20厘米的铜、~ 15厘米的铅和~ 8厘米的硼化聚乙烯组成的被动屏蔽内。测定了放射性核素(Be-7、K-40、Th-232、U-235、U-238、Cs-137)的比活度。结果表明,所有测得的光谱都含有K-40衰变的γ谱线,以及U-238、U-235和Th-232的衰变链。此外,Garabashi冰川冰晶样品的光谱显示来自宇宙成因同位素Be-7的477.6 keV谱线,土壤样品的光谱显示来自放射性核素Cs-137的661.7 keV谱线。山林草甸土壤中未检出Be-7放射性核素。放射性核素铯-137存在于土壤样品中,而在冰晶中未检测到。除宇宙成因同位素Be-7外,Garabashi冰川冰晶的放射性同位素活动在质量上没有显著差异,即其中K-40、U-238、U-235和Th-232的含量基本相同。土壤样品中所研究的所有放射性核素的活度都低于冰晶样品,但差异不显著,但Th-232在土壤中的活度几乎低2倍。
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来源期刊
Solid Earth Sciences
Solid Earth Sciences GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
3.60
自引率
5.00%
发文量
20
审稿时长
103 days
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