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Analysis of forest fire dangers of the Bryansk region in the zones of radioactive contamination and beyond

https://doi.org/10.21514/1998-426X-2024-17-3-133-141

Abstract

The purpose of the study is to analyze the forest fire dangers of the Bryansk region forests, taking into account their radioactive contamination and potential risks for forestry workers involved in forest fires extinguishing. Significant areas of radioactive contamination of forests with a predominance of sites belonging to the classes of high and very high natural fire danger, restrictions on economic activity and a long fire-hazardous period contribute to the occurrence of radioactive forest fires. The analysis of the combined data on forest fires and radioactive contamination of forest areas showed that most forest fires occur outside the zones of radioactive contamination and are not radioactive. The largest number of fires occurs at the beginning of the fire season. Radioactive forest fires in most cases arise from the burning of dry grassy vegetation, as a result of the transition from lands of other categories and through the fault of the population. The average effective dose of additional radiation per a workday can be estimated at 1.96 μSv, and the maximum at ~ 15.4 μSv. Most fires are extinguished in the early stages and do not have time to cover large areas. It indicates the effective work of the forest fire service

About the Authors

A. I. Radin
All-Russian Research Institute of Forestry and Mechanization; Mytischi Branch of Bauman Moscow State Technical University
Russian Federation

Alexander I. Radin - Head of the radiation control laboratory of All-Russian Research Institute of Forestry and Mechanization.

Institutskaya ul., 15, Pushkino, Moskovskaya obl., 141200



T. A. Marchenko
All-Russian Research Institute on Civil Defence and Emergency Situations of the Ministry of Emergency Situations of Russia (Federal Center for Science and High Technologies)
Russian Federation

Tatyana A. Marchenko - Doctor of medical sciences, professor, lead scientist of the 4th research center of All-Russian Research Institute on Civil Defence and Emergency Situations of the Ministry of Emergency Situations of Russia (Federal Center for Science and High Technologies).

Moscow



A. N. Razdaivodin
All-Russian Research Institute of Forestry and Mechanization
Russian Federation

Andrey N. Razdaivodin - Head of the department of the radiation ecology and ecotoxicology of the forests of All-Russian Research Institute of Forestry and Mechanization.

Moscow region, Pushkino



References

1. Radioecological consequences of the Chernobyl accident: biological effects, migration, rehabilitation of contaminated areas. Ed.: NI Sanzharova, SV Fesenko. Moscow, RIRAE; 2018. 278 p. (In Russian).

2. Razdaivodin AN, Maradudin II, Radin Al, Romashkin DYu. Radioecological Problems in the Forests of Russia. Lesokho-zyaystvennaya informatsiya = Forestry information. 2019;3: 116-133. (In Russian).

3. The atlas of modern and forecast aspects of consequences of the Chernobyl accident in affected territories of Russia and Belarus (AMFA Russia-Belarus). Ed.: Izrael YuA, Bogdevich IM. Moscow-Minsk, Infosfera Fund-Priroda Publ.; 2009. 139 p. (In Russian).

4. 35 years of the Chernobyl accident. Results and prospects of overcoming its consequences in Russia 1986-2021. Russian national report. Ed.: LA Bolshov. Moscow; 2021. 104 p. (In Russian).

5. Perepechina Yul, Glushenkov Ol, Korsikov RS, Glushenkov IS. Tasks of inventory of Russian forests during the second cycle. Aktualnye problemy lesnogo kompleksa = Actual problems of the forest complex. 2020;56: 67-72. (In Russian).

6. Marchenko TA, Radin Al, Razdaivodin AN. Retrospective and current state of forest territories of the border areas of the Bryansk region exposed to radioactive contamination. Radi-atsionnaya Gygiena = Radiation Hygiene. 2020; 13(2): 6-18. (In Russian). DOI: 10.21514/1998-426X-2020-13-2-6-18.

7. Gusev VG. On the method for assessing the possibility of occurrence and spread of fires in forests according to their actual burning. Trudy Sankt-Peterburgskogo nauchno-issledovatel’skogo instituta lesnogo khozyaystva = Proceedings of the Saint Petersburg Forestry Research Institute. 2018;2:40-52. (In Russian).

8. Marchenko TA, Radin Al, Razdaivodin AN. Estimation of ambient dose equivalent rate in forest sites in the south-west of the Bryansk region. Radiatsiya i risk = Radiation and Risk. 2023;32(4): 67-78. (In Russian). DOI: 10.21870/01313878-2023-32-4-67-78.

9. Ramzaev VP, Barkovsky AN, Bratilova AA, Gromov AV, Titov NV. Assessment of annual effective dose from external exposure in forests of the southwestern districts of the Bryansk region of Russia: 2015-2021. Radiatsionnaya Gygiena - Radiation Hygiene. 2022; 15(3): 58-71. (In Russian).

10. Korshunov N, Savchenkova V, Perminov A, Konyushenkov M. Promising Areas of Application of Unmanned Aircraft Systems in the Forest Complex. Lesokhozyaystvennaya informatsiya = Forestry information. 2022;2: 34-46. (In Russian). DOI: 10.24419/LHI.2304-3083.2022.2.03.

11. Belov AA, Razdaivodin AN, Radin Al, Romashkin DU. Adaptation of the video monitoring system for forest contaminated with radionuclides in adjacent territories of Russian Federation and Republic of Belarus. Problems and prospects of development of territories affected by the Chernobyl disaster at the present stage (Khoiniki, July 26-27, 2018) Materials of the International Scientific and Practical Conference / Ed.: Ph.D. of Biological Sciences Kudin MV. Khoiniki: State environmental research institution «Polesie State Radiation-Ecological Reserve». 2018. P. 192-196. (In Russian).

12. Kashparov VA, Mironyuk W, Zhurba MA, Zibtsev SV, Glukhovsky AS, Zhukova OM. Radiological Consequences of the Fire in the Chernobyl Exclusion Zone in April 2015. Radiatsionnaya biologiya. Radioekologiya = Radiation biology. Radioecology. 2017;57(5): 512-527. (In Russian).

13. Dvornik AA, Dvornik AM, Korol RA, Gaponenko SO. Radioactive contamination of air as a result of forest fires and its threat to a human health. Radiatsiya i risk = Radiation and Risk. 2016;25(2): 100-108. (In Russian).

14. Bruk GYa, Bazyukin AB, Bratilova AA, Vlasov AYu, Gromov AV, Zhesko TV, et al. The average accumulated effective doses (1986-2016) for the population of the settlements of the Russian Federation attributed to the zones of radioactive contamination according to the Russian Federation government resolution «On the approval of the list of the settlements being in the borders of the zones of radioactive contamination due to the Chernobyl NPP accident» No 1074 of 08.10.2015. Radiatsionnaya Gygiena - Radiation Hygiene. 2017;10(2): 57-105. (In Russian).

15. Panov AV, Komarova LN, Lyapunova ER, Melnikova AA. Peculiarities of the exposure dose formation on the population in the most affected regions of Russia after the Chernobyl NPP accident. Nuclear Energy and Technology. 2024;10(1): 41-46. DOI: 10.3897/nucet.10.122526.


Review

For citations:


Radin A.I., Marchenko T.A., Razdaivodin A.N. Analysis of forest fire dangers of the Bryansk region in the zones of radioactive contamination and beyond. Radiatsionnaya Gygiena = Radiation Hygiene. 2024;17(3):133-141. (In Russ.) https://doi.org/10.21514/1998-426X-2024-17-3-133-141

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ISSN 1998-426X (Print)
ISSN 2409-9082 (Online)