MONITORING OF RADIOACTIVITY AT DNURT CAMPUS

Authors

DOI:

https://doi.org/10.15802/stp2016/74712

Keywords:

radioactive irradiation, monitoring of the university campus, building materials, radon

Abstract

Purpose. The research paper aims to determine radioactive contamination on the territory of campus of Dnipropetrovsk National University of Railway Transport named after Academician V. Lazaryan (DNURT). Methodology. The dosimeters measured the radioactive contamination in different places (points) of DNURT campus, focusing on public places. The centres of measurements became dormitories, monuments, stops, main entrances of the new and the old buildings, classrooms, basements, a swimming pool, boiler room and others. Findings. The conducted radiation monitoring for the first time in the history of the University discovered the source of radioactive contamination on DNURT territory and campus. The highest radiation background is observed on three points, namely: the pedestal of the monument, the monument to students-soldiers, the main entrance of the new building (columns). This can be explained by granite materials, which the pedestals and the stairs are made of. Originality. The largest contribution to the total value of annual effective dose of human exposure is made by ionizing radiation sources (IRS) of building materials (65 - 70%). The radioactivity level of building materials is determined by the content of natural radionuclides that are included in uranium-radium and thorium decay series (18 and 12 radionuclides) as well as potassium-40. Radioactivity of building materials is evaluated by the content of dominant radionuclides radium-226, thorium-232 and potassium-40. Their dominant role is explained by the fact that these long-lived high-energy  - emitters are the products of decay of radium-226 in uranium series of and radium-224 in thorium series, exposing radioactive gases (radon-222 and radon-220). Radioactive gases are accumulated in the basements of educational buildings; their decay is accompanied by 100% alpha radiation, which is the most dangerous. Practical value. It is necessary to set radioactivity signs near the objects with high radiation and to prohibit students with children walking there. In order to reduce radon radiation exposure to students and staff the university should be equipped with more effective ventilation of educational building basements, swimming pool and dormitories. 

Author Biographies

L. F. Dolina, Dnipropetrovsk National University of Railway Transport named after Academician V. Lazaryan

Dep. «Hydraulics and Water Supply», Lazaryan St., 2, Dnipropetrovsk, Ukraine, 49010, tel. +38 (056) 373 15 09

V. P. Kilovyi, Dnipropetrovsk National University of Railway Transport named after Academician V. Lazaryan

Civil Defence, Lazaryan St., 2, Dnipropetrovsk, Ukraine, 49010, tel. +38 (0562) 47 19 72

D. V. Astakhov, Dnipropetrovsk National University of Railway Transport named after Academician V. Lazaryan

Dep. «Industrial and Civil Construction», Lazaryan St., 2, Dnipropetrovsk, Ukraine, 49010, tel. +38 (056) 373 15 09

M. V. Kalimbet, Dnipropetrovsk National University of Railway Transport named after Academician V. Lazaryan

Dep. «Industrial and Civil Construction», Lazaryan St., 2, Dnipropetrovsk, Ukraine, 49010, tel. +38 (056) 373 15 09

References

Belikov A.S., Zaprudin V.F. Radiatsionno-gigiyenicheskiye zashchitnyye svoystva stroitelnykh materialov [Radiation and hygienic protective properties of building materials]. Visnyk Prydniprovskoi derzhavnoi akademii budivnytstva ta arkhitektury [Bulletin of Prydniprovs’ka State Academy of Civil Engineering and Architecture], 2010, no. 8, pp. 7-12.

Bilous S.Ya., Timofeyev N.I. Opredeleniye radiatsionnoy temperatury pomeshcheniya s nagrevatelnymi elementami v naruzhnoy stene [Determination of radiation room temperature with a heating elements in the outer wall]. Budivnytstvo Ukrainy – Construction of Ukraine, 2011, no. 1, pp. 23-25.

Dolina L.F. Monitoring okruzhayushchey sredy i inzhenernyye metody okhrany biosfery. Chast 1. Osnovy monitoring [Environmental monitoring and engineering methods of biosphere protection. Part 1: The Basics Monitoring]. Dnepropetrovsk, Konspekt Publ., 2002. 208 p.

Dolina L.F. Monitoring okruzhayushchey sredy i inzhenernyye metody okhrany biosfery. Chast 2. Proyektirovaniye monitoringa [Environmental monitoring and engineering methods of biosphere protection. Part 2: Monitoring design]. Dnepropetrovsk, Konspekt Publ., 2002. 105 p.

Kulichenko I.I., Lyvenko O.S., Shapar A.H., Pavlov V.A., Peremetchik N.N. Ekolohiia mehapolisa. Ekolohichni aspekty promyslovoho rozvytku Dnipropetrovska [Ecology of metropolis. Environmental aspects of industrial development in Dnipropetrovsk]. Dnipropetrovsk, IMA-pres Publ., 2002. 368 p.

Zashchita ot radona-222 v teplykh zdaniyakh i na rabochikh mestakh [Protection against radon-222 in warm buildings and workplaces]. Moscow, Energoatomizdat Publ., 1995. 36 p.

Kerbueova (Gorbunov) A.M. Dialog s traditsiey [Dialogue with tradition]. Nikolayev, Superpoligrafiya Publ., 2000, issue 1. 40 p.

Kramarev S.V., Shtangret B.S. Otsenka radioaktivnosti gornykh porod i gruntov na territorii Dnepropetrovskoy oblasti [Assessment of radioactivity of rocks and soil on the territory of the Dnipropetrovsk region]. Stroitelstvo, materialovedeniye, mashinostroeniye : sbornik nauchnykh trudov Pridneprovskoy gosudarstvennoy akademii stroitelstva i arkhitektury [Proc. «Construction, Material Science, Engineering»of Prydniprovs’ka State Academy of Civil Engineering and Architecture], 2004, issue 28. 542 p.

Kozlov V.N. Spravochnik po radioaktivnoy bezopasnosti [Guide on Radiation Safety]. Moscow, Energoatomizdat Publ., 1991. 352 p.

NRBU-97. Normy radiatsionnoy bezopasnosti Ukrainy [Radiation Safety Standards of Ukraine.]. Kiev, MOZ Publ, 1997. 121 p.

NRBU-97/D-2000. Normy radiatsionnoy bezopasnosti Ukrainy. Dopolneniye: Radiatsionnaya zashchita ot istochnikov potentsialnogo oblucheniya [NRBU-97 / A-2000. Radiation Safety Standards of Ukraine. Supplement: Radiation protection from potential exposure sources]. Kiev, MOZ Publ., 2000.

Osnovnyye sanitarnyye pravila protivoradiatsionnoy zashchity Ukrainy (OSPU). 6. Radiatsionnaya gigiena: GSP 6.074.120-01 (Basic sanitary rules of radiation protection in Ukraine (BSPU). 6. Radiation Hygiene: SSE 6.074.120-01). Available at: http://neldon.narod.ru/rabfile/ospu/titul.htm (22 May 2016).

Pshinko O.M., Dolyna L.F., Prystynska O.M. Ekolohiia zhytla. Radioaktyvnist zhytla [Ecology of housing. Radioactivity of housing]. Dnipropetrovsk, DNURT Publ., 2007. 176 p.

Slovnyk terminiv (Glossary). Available at: http://npa.iplex.com.ua/doc.php?uid=1078.22180.0 (Accessed 22 May 2016).

Smirnov S.N. Radiatsionnaya ekologiya. Seriya: Fizicheskiye osnovy ekologii [Radiation ecology. Series: Physical basics of ecology]. Moscow, MYePU Publ., 2000. 134 p.

Tekhnichna entsyklopediia TechTrend (Technical encyclopedia TechTrend). Available at: http://techtrend.com.ua/index.php?newsid=9507 (Accessed 22 May 2016).

Moharram B.M., Suliman M.N., Zahran N.F., Shennawy S.E., El Sayed A.R. External exposure doses due to gamma emitting natural radionuclides in some Egyptian building materials. Applied Radiation and Isotope, 2012, vol. 70, issue 1, pp. 241-248. doi: 10.1016/j.apradiso.2011.07.013.

Khandaker M.U., Jojo P.J., Kassim H.A., Amin Y.M. Radiometric analysis of construction materials using HPGe gamma-ray spectrometry. Radiation Protection Dosimetry, 2012, vol. 152, issue 1-3, pp. 33-37. doi: 10.1093/rpd/ncs145.

Radioactive Waste Management Glossary. Vienna, Intern. Atomic Energy Agency Publ., 2003. 54 р.

Published

2021-05-14

How to Cite

Dolina, L. F., Kilovyi, V. P., Astakhov, D. V., & Kalimbet, M. V. (2021). MONITORING OF RADIOACTIVITY AT DNURT CAMPUS. Science and Transport Progress, (3(63), 49–59. https://doi.org/10.15802/stp2016/74712

Issue

Section

ECOLOGY AND INDUSTRIAL SAFETY