Dose mapping of products with different density irradiated in 60co irradiation facility of the Vinca institute, Serbia
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The distribution of the absorbed dose within the irradiated product is a complex function of the product density and homogeneity, the position and shape of the radiation source, as well as the design of the irradiator. In this paper, detailed mapping of absorbed radiation doses in products of different density: gauze, plastic, and soil, is performed. Positions of minimum and maximum absorbed radiation dose were determined, and the homogeneity of irradiation of products was calculated using the ethanol-monochlorobenzene oscillotitrator dosimetry system.
Keywords:
gamma irradiation / dose mapping / ethanol-monochlorobenzene / ISO 11137Source:
Nuclear Technology and Radiation Protection, 2020, 35, 1, 56-63Publisher:
- VINČA Institute of Nuclear Sciences
Funding / projects:
- IAEA (Project RER1019 – Enhancing Standardized Radiation Technologies and Quality Control Procedures for Human Health, Safety, Cleaner Environment and Advanced Materials).
DOI: 10.2298/NTRP2001056R
ISSN: 1451-3994
WoS: 000549427000009
Scopus: 2-s2.0-85089583476
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Hemijski fakultet / Faculty of ChemistryTY - JOUR AU - Ranković, Bojan M. AU - Nikolić, Nikolina R. AU - Mašić, Slobodan B. AU - Vujčić, Ivica T. PY - 2020 UR - https://cherry.chem.bg.ac.rs/handle/123456789/4095 AB - The distribution of the absorbed dose within the irradiated product is a complex function of the product density and homogeneity, the position and shape of the radiation source, as well as the design of the irradiator. In this paper, detailed mapping of absorbed radiation doses in products of different density: gauze, plastic, and soil, is performed. Positions of minimum and maximum absorbed radiation dose were determined, and the homogeneity of irradiation of products was calculated using the ethanol-monochlorobenzene oscillotitrator dosimetry system. PB - VINČA Institute of Nuclear Sciences T2 - Nuclear Technology and Radiation Protection T2 - Nuclear Technology and Radiation Protection T1 - Dose mapping of products with different density irradiated in 60co irradiation facility of the Vinca institute, Serbia VL - 35 IS - 1 SP - 56 EP - 63 DO - 10.2298/NTRP2001056R ER -
@article{ author = "Ranković, Bojan M. and Nikolić, Nikolina R. and Mašić, Slobodan B. and Vujčić, Ivica T.", year = "2020", abstract = "The distribution of the absorbed dose within the irradiated product is a complex function of the product density and homogeneity, the position and shape of the radiation source, as well as the design of the irradiator. In this paper, detailed mapping of absorbed radiation doses in products of different density: gauze, plastic, and soil, is performed. Positions of minimum and maximum absorbed radiation dose were determined, and the homogeneity of irradiation of products was calculated using the ethanol-monochlorobenzene oscillotitrator dosimetry system.", publisher = "VINČA Institute of Nuclear Sciences", journal = "Nuclear Technology and Radiation Protection, Nuclear Technology and Radiation Protection", title = "Dose mapping of products with different density irradiated in 60co irradiation facility of the Vinca institute, Serbia", volume = "35", number = "1", pages = "56-63", doi = "10.2298/NTRP2001056R" }
Ranković, B. M., Nikolić, N. R., Mašić, S. B.,& Vujčić, I. T.. (2020). Dose mapping of products with different density irradiated in 60co irradiation facility of the Vinca institute, Serbia. in Nuclear Technology and Radiation Protection VINČA Institute of Nuclear Sciences., 35(1), 56-63. https://doi.org/10.2298/NTRP2001056R
Ranković BM, Nikolić NR, Mašić SB, Vujčić IT. Dose mapping of products with different density irradiated in 60co irradiation facility of the Vinca institute, Serbia. in Nuclear Technology and Radiation Protection. 2020;35(1):56-63. doi:10.2298/NTRP2001056R .
Ranković, Bojan M., Nikolić, Nikolina R., Mašić, Slobodan B., Vujčić, Ivica T., "Dose mapping of products with different density irradiated in 60co irradiation facility of the Vinca institute, Serbia" in Nuclear Technology and Radiation Protection, 35, no. 1 (2020):56-63, https://doi.org/10.2298/NTRP2001056R . .