RADIONUCLIDES DISTRIBUTION NEAR FORMER URANIUM MINING
https://doi.org/10.21514/1998-426X-2016-9-4-37-42
Abstract
The paper shows, that radionuclides from the stony rocks of uranium mines can be leached by atmospheric precipitations. In acid conditions, a degree of leaching is greater.
Goal. The aim of this investigation was to study the distribution of radionuclides in uranium minings and their impact on the environmental contamination.
Materials and methods. The study was carried out in two stages. In the first stage, a blade of rock was mixed with distilled water in proportions of 0,3 kg of gravel and 1 liter of water. After thirty days of soaking, water was sent to the gamma-spectrometric analysis to Canberra’s spectrometer (USA) with a high-purity germanium detector. In the second stage, we carried out the similar experiment with water, wich was acidified to pH = 3. Contamination levels of areas near the in-situ leaching mine were determined. Intervention levels were used to estimate risk and possible water consumption by the population. Estimations were carried out taking into account the combined presence of several radionuclides in the water.
Results. The results of these studies have shown that the distribution of radionuclides from the source of the contamination is about 360 meters during the 30 y period. The stream, along which samples of soil were collected and studied, was formed by the miner waters that flow along small ruts towards a village, thereby increasing the likelihood of water use by the public.
Conclusions. The uranium mines are the source of radioactive contamination. Radionuclides are distributed due to the erosion of rocks and leached out of the stony rock by precipitations. The extent of leaching is significantly increased in an acidic environment, which takes place near the in-situ leaching mines.
About the Authors
D. A. ZaredinovUzbekistan
Doctor of Medical Science, Professor, Chief Radiologist of the Ministry of Health of the Republic of Uzbekistan, Head, Hygiene departmen,
Parkentskaya St., 51, Tashkent, Mirzo-Ulugbekskiy rayon, 100007
O. L. Ten
Uzbekistan
Magister, Senior Scientific Researcher – external student, Hygiene Department, Head, Scientific Research Testing Radiological Laboratory,
Tashkent
R. I. Radyuk
Uzbekistan
Candidate of Physical and Mathematical Sciences, Chief, Radiation Safety Service,
Tashkent
U. S. Salikhbaev
Uzbekistan
Doctor of Physical and Mathematical Sciences,
Tashkent
F. R. Usmanov
Uzbekistan
Chief, Navoijsk Regional Health department, the Republic of Uzbekistan, Ministry of Health of the Republic of Uzbekistan,
Navoiy, Navoiyskaya obl.
A. I. Boltaeva
Uzbekistan
Senior Scientific Researcher – external student, Hygiene Department,
Tashkent
References
1. Umarov N.M. Uzbekistan on the way to the sustainable development: National report. State Committee for Nature protection of the Republic of Uzbekistan. 2012, 75 p. (In Russ)
2. Yuldashev B.S., Passell H.D., Salikhbaev U.S., Radyuk R.I. Et al. Study of transboundary contamination of them Syr-Darya and Amu-Darya rivers and their inflows. Nuclear Risk in Central Asia. Ed.: Brit Salbu, Lindis Skipperud. Springer, Netherland, 2008, pp.181-189.
3. Passell H.D., Solodukhin V., Radyuk R.I. Et al. The Navruz project: cooperative, transboundary monitoring, data sharing and modelling of water resources in Central Asia. Nuclear Risk in Central Asia. Ed.: Brit Salbu, Lindis Skipperud. Springer, Netherland, 2008, pp. 191-199.
4. Bakhvalov L.A., Mogirev A.M. Development of Models and algorithms of imitation simulation of radionuclides distribution in rivers of Elcon uranium ores area. Gornyy informatsionno-analiticheskiy byulleten’ (nauchno-tekhnicheskiy zhurnal) = Mining Informational and Analytical Bulletin (scientific and technical journal), 2010, Vol. 5, №12, pp. 168-174. (In Russ)
5. Radiation Safety. Amplified. Genie™ 2000 Basic Spectroscopy Software – Available from: http://www.canberra.com/products/radiochemistry_lab/pdf/G2K-BasicSpect-SS-C40220.pdf (Accessed: August 15, 2016)
6. Ten O.L. The radioecological characteristic of the radioactive waste disposal sites of uranium production and recommendations for their improvement. Radiatsionnaya gigiena = Radiation Hygiene, 2015, Vol. 8, № 2, pp. 132-134. (In Russ)
7. IAEA – (IAEA RS-G-1.7). International cooperation on rehabilitation, IAEA, VIENNA, 2013. – Available from: http://wwwpub.iaea.org/MTCD/publications/PDF/te_1174_prn.pdf. (Accessed: August 15, 2016)
Review
For citations:
Zaredinov D.A., Ten O.L., Radyuk R.I., Salikhbaev U.S., Usmanov F.R., Boltaeva A.I. RADIONUCLIDES DISTRIBUTION NEAR FORMER URANIUM MINING. Radiatsionnaya Gygiena = Radiation Hygiene. 2016;9(4):37-42. (In Russ.) https://doi.org/10.21514/1998-426X-2016-9-4-37-42