

Construction of a liquid radioactive waste processing complex at beloyarsk NPP
https://doi.org/10.15518/isjaee.2020.09.006
Abstract
The tasks of ensuring the safety of the population and the environment during the operation of nuclear facilities are formulated. The necessity of the final isolation of conditioned radioactive waste generated as a result of production activities of enterprises and decommissioning of nuclear facilities is substantiated. Modern technologies for the safe management of liquid radioactive waste are considered. The experience of operation of liquid radioactive waste processing facilities at nuclear power plants is summarized.
The capabilities of ion-selective sorption for the reduction of final radioactive product volume and its advantages in comparison with other methods of radioactive waste treatment are given.
A description is given of a complex for liquid radioactive waste reprocessing which is being built at the Beloyarsk NPP in order to increase the reliability of operation and environmental protection. The methods chosen for the implementation of the liquid radioactive waste reprocessing program are listed as well as the processing lines forming the facility.
The description is presented of a block-module facility of ion-selective treatment designed for the reprocessing of the residuum from the tanks of the liquid radioactive waste storages. Described is the block-module facility for the conditioning of the ion-exchange resins which were utilized for the purification of the residuum and discharged water from cobalt and cesium radionuclides and corrosion products of other transition metals, in order to gain the concentrated non-radioactive saline product and to pack it in the primary containers.
A cementation facility is described which is designed for reprocessing of the sludge of radioactive waste from the tanks and vessels of the storages and the sludge of the ion-selective treatment facility by inclusion of radioactive waste into the cement blocks.
The measures to prevent emissions into the environment during the operation of the liquid radioactive waste reprocessing complex are described. The data are presented on the systems of static and dynamic barriers preventing the ingress of radionuclides into the environment during the operation of the liquid radioactive waste reprocessing complex. The technical and managerial means are presented intended to protect the barriers and to preserve its efficiency in accordance with the general regulations of nuclear power plants safety ensuring.
About the Authors
V. I. BulatovRussian Federation
Bulatov Vladimir Ivanovish - radioactive waste treatment department, superintendent
Zarechny, Sverdlovsk Reg., 624250
Tel.: +7(34377)30074
A. O. Tashlykov
Russian Federation
Tashlykov Anton Olegovish - radioactive waste treatment department, engineer
Zarechny, Sverdlovsk Reg., 624250
Tel.: +7(34377)30074
O. L. Tashlykov
Russian Federation
Tashlykov Oleg Leonidovish - Associate Professor of “Nuclear Power Plants and Renewables” Department; Cand. Sci (Engineering)
19 Mira street, Yekaterinburg, 620002
Tel.: +7 (343) 375-95-08
References
1. Novikov G.A. Obespechenie bezopasnosti v oblasti ispol'zovaniya atomnoi ehnergii: uchebnik / G.A. Novikov, O.L. Tashlykov, S.E. Shcheklein. – Ekaterinburg : Izd-vo Ural. Un-ta, 2017. – 552 s.
2. O kriteriyakh otneseniya tverdykh, zhidkikh i gazo-obraznykh otkhodov k radioaktivnym otkhodam, krite-riyakh otneseniya radioaktivnykh otkhodov k osobym radioaktivnym otkhodam i k udalyaemym radioaktiv-nym otkhodam i kriteriyakh klassifikatsii udalyaemykh radioaktivnykh otkhodov. Postanovlenie Pravitel'-stva Rossiiskoi Federatsii № 1069 ot 19 oktyabrya 2012 g. M.:. 2012. https://base.garant.ru/70247038/
3. Nosov, Y.V. Decommissioning Features of BN- 350, -600 Fast Reactors / Y.V. Nosov [et al.] // Atomic Energy. – 2019. – Vol. 125. – No. 4. – Pp. 219-223.
4. https://pris.iaea.org/PRIS/
5. Kropachev YU.A. Optimizatsiya radiatsionnoi zashchity na ehtape vyvoda ehnergoblokov AEHS iz ehks-pluatatsii / YU.A. Kropachev, O.L. Tashlykov, S.E. Shcheklein // Izvestiya vuzov. Yadernaya ehnergetika. – 2019. – №1. – S.119-130.
6. NP-093-14. Kriterii priemlemosti radioaktivnykh otkhodov dlya zakhoroneniya (v red. prikaza Ro-stekhnadzora ot 17 noyabrya 2017 g. № 481). – M.: FBU «NTTS YARB», 2017. 36 s.
7. Adamovich D.V. Sovremennye podkhody k kom-pleksam pererabotki i konditsionirovaniya RAO dlya vnov' stroyashchikhsya AEHS / D.V. Adamovich [i dr.] // Doklady XI mezhdunarodnoi konferentsii «Bezopas-nost', ehffektivnost' i ehkonomika atomnoi ehnerge-tikI» – M.: AO «Kontsern RosehnergoatoM». – 2018. – S.276-279.
8. Tashlykov O.L. Ehkspluatatsiya i remont yadernykh paroproizvodyashchikh ustanovok AEHS: uchebnik / O.L.Tashlykov [i dr.]. V 2 kn. –M.: Ehnergoatomizdat, – 1995. – Kn.1 – 256 s.
9. Atomnye ehlektrostantsii s reaktorami na bystrykh neitronakh s natrievym teplonositelem: uchebnoe posobie. V 2 ch. CH. 1 / pod red. S.E.Shchekleina, O.L. Tashlykova. – Ekaterinburg: URFU, – 2013. – 548 s.
10. Tashlykov O.L. O probleme snizheniya dozovykh zatrat personala AEHS / O.L. Tashlykov, S.E. Shchekle-in, V.I. Bulatov // Izvestiya vuzov. Yadernaya ehnerge-tika. – 2011. – №1. – S.55-60.
11. Tashlykov O.L. Dozovye zatraty personala v atomnoi ehnergetike. Analiz. Puti snizheniya. Optimizatsiya: monografiya / Tashlykov O.L. Saarbrüsken, Germany: LAP LAMBERT Academic Publishing GmbH & Co. RG. 2011. 232 c.
12. Tashlykov O.L. Remont oborudovaniya atomnykh stantsii: uchebnik / O.L. Tashlykov. – Ekaterinburg: Izd-vo Ural. Un-ta, 2018. – 352 s.
13. Pererabotka i konditsionirovanie RAO na AEHS dlya podgotovki k okonchatel'noi izolyatsii / M.R. Stakhiv [i dr.]. – M.: VNIIAEHS. 2013/ https://www.atomic-energy.ru/technology/40756
14. Arustamov A. EH. Metod ionoselektivnoi ochistki zhidkikh radioaktivnykh otkhodov atomnykh stantsii / Arustamov A. EH. [i dr.] // Bezopasnost' zhiznedeyatel'nosti. – 2005. – №11. – S. 13 – 16.
15. Remez V.P. Povyshenie Ehffektivnosti lokalizatsii radionuklidov kobal't-60 i tsezii-137 iz zhidkikh radioaktivnykh otkhodov v reshenii proble-my obespecheniya radiatsionnoi bezopasnosti AEHS / Remez V.P. [i dr.] // Yadernaya fizika i inzhiniring. – 2016. – Tom 7. – № 2. – S. 129–137.
16. Avezniyazov S. R. Opyt raboty po obrashcheniyu s ZHRO na Kol'skoi AEHS / S.R. Avezniyazov, M. R. Stakhiv // Radioaktivnye otkhody. – 2018. – № 4 (5). – S.49-54.
17. Lur'e YU.YU. Spravochnik po analiticheskoi khi-mii / YU.YU. Lur'e. – M.: Khimiya, – 1971. – 456 c.
18. SaNPin 2.6.1.24-03. Sanitarnye pravila proektirovaniya i ehkspluatatsii atomnykh stantsii (SP AS-03). – M.: – 2003.
19. NP-001-15. Obshchie polozheniya obespecheniya bez-opasnosti atomnykh stantsii. Utverzhdeny prikazom Federal'noi sluzhby po ehkologicheskomu, tekhnolo-gicheskomu i atomnomu nadzoru ot 17 dekabrya 2015 g. № 522
20. Tashlykov, O. Ecological foresight in the nuclear power of XXI century / O. Tashlykov [et al.] // Interna-tional journal of energy production and management. – 2016. – V. 1. – No. 2. – Pp. 133-140.
Review
For citations:
Bulatov V.I., Tashlykov A.O., Tashlykov O.L. Construction of a liquid radioactive waste processing complex at beloyarsk NPP. Alternative Energy and Ecology (ISJAEE). 2020;(25-27):62-72. (In Russ.) https://doi.org/10.15518/isjaee.2020.09.006