Periodic variations in time of atmospheric radioactive nanoparticles

In the article the authors present the data of periodic variations in time of radon emanations in the ground layer of the atmosphere, which were measured for the period from January 1 to August 3, 2016. Harmonics of diurnal, 4-day and longer periods are revealed. The authors interpreted the 4-day v...

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Main Authors: V.V. Dyachkov, Yu.A. Zaripova, A.V. Yushkov, A.L. Shakirov, M.T. Bigeldiyeva, K.S. Dusebayeva, K.E. Abramov
Format: Article
Language:English
Published: Al-Farabi Kazakh National University 2018-06-01
Series:Physical Sciences and Technology
Online Access:http://phst/index.php/journal/article/view/119
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author V.V. Dyachkov
Yu.A. Zaripova
A.V. Yushkov
A.L. Shakirov
M.T. Bigeldiyeva
K.S. Dusebayeva
K.E. Abramov
author_facet V.V. Dyachkov
Yu.A. Zaripova
A.V. Yushkov
A.L. Shakirov
M.T. Bigeldiyeva
K.S. Dusebayeva
K.E. Abramov
author_sort V.V. Dyachkov
collection DOAJ
description In the article the authors present the data of periodic variations in time of radon emanations in the ground layer of the atmosphere, which were measured for the period from January 1 to August 3, 2016. Harmonics of diurnal, 4-day and longer periods are revealed. The authors interpreted the 4-day variations, which can occur due to "lunar tides", that is, from soil uplifts due to the increase in gravitational tidal forces. The mechanism of radon emanation to the Earth's surface is complex. The mechanism of radon emanation to the Earth's surface is complex. In particular, the transportation of radon from the inner surfaces of the earth's crust is carried out by the diffusion of aerosols onto the surface, to which the radon atoms coagulate, due to electrostatic attraction. Such radioactive aerosol nanoparticles located in the surface layer of the atmosphere have the greatest impact on the risks of cancer, since the probabilities of their settling on the lung tissues are several orders of magnitude higher than the radon itself in the atomic form.
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spelling doaj.art-a2681cdffa234e08b43d14e30510f9b12023-10-30T13:11:20ZengAl-Farabi Kazakh National UniversityPhysical Sciences and Technology2409-61212018-06-0141Periodic variations in time of atmospheric radioactive nanoparticlesV.V. DyachkovYu.A. ZaripovaA.V. YushkovA.L. ShakirovM.T. BigeldiyevaK.S. DusebayevaK.E. Abramov In the article the authors present the data of periodic variations in time of radon emanations in the ground layer of the atmosphere, which were measured for the period from January 1 to August 3, 2016. Harmonics of diurnal, 4-day and longer periods are revealed. The authors interpreted the 4-day variations, which can occur due to "lunar tides", that is, from soil uplifts due to the increase in gravitational tidal forces. The mechanism of radon emanation to the Earth's surface is complex. The mechanism of radon emanation to the Earth's surface is complex. In particular, the transportation of radon from the inner surfaces of the earth's crust is carried out by the diffusion of aerosols onto the surface, to which the radon atoms coagulate, due to electrostatic attraction. Such radioactive aerosol nanoparticles located in the surface layer of the atmosphere have the greatest impact on the risks of cancer, since the probabilities of their settling on the lung tissues are several orders of magnitude higher than the radon itself in the atomic form. http://phst/index.php/journal/article/view/119
spellingShingle V.V. Dyachkov
Yu.A. Zaripova
A.V. Yushkov
A.L. Shakirov
M.T. Bigeldiyeva
K.S. Dusebayeva
K.E. Abramov
Periodic variations in time of atmospheric radioactive nanoparticles
Physical Sciences and Technology
title Periodic variations in time of atmospheric radioactive nanoparticles
title_full Periodic variations in time of atmospheric radioactive nanoparticles
title_fullStr Periodic variations in time of atmospheric radioactive nanoparticles
title_full_unstemmed Periodic variations in time of atmospheric radioactive nanoparticles
title_short Periodic variations in time of atmospheric radioactive nanoparticles
title_sort periodic variations in time of atmospheric radioactive nanoparticles
url http://phst/index.php/journal/article/view/119
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