Accuracy in determining absorbed irradiation dose at different temperature measurements using ethanol chlorobenzene - oscillotitrator system
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Elhanol-chlorobenzene/oscillolilralor dosimetry system is widely used in controlling the irradiation process in gamma facilities. The elhanol-chlorobenzene dosimetry system provides a reliable means of measuring absorbed dose. It is based on a process of radiolytic formation of hydrochloric acid in aqueous elhanolic solutions of chlorobenzene by ionizing radiation. The irradiation temperature dependence of dosimeter response is a complex function of dose and temperature for each concentration of chlorobenzene. At different temperature the mobility of conducting species from hydrochloric acid is changed leading to dilTerenl oscillolilralor deflections during high-frequency conduclomelric readout. In this paper, we examined the influence of temperature on the calculation of the radiation dose. We showed that the temperature significantly influenced the measurement results, and that the calibration curve has to be formed at the irradiation temperature in order to obtain precise values of ...the absorbed dose. © 2018; Vinca Inst Nuclear Sci. All rights reserved.
Кључне речи:
ethanol-chlorobenzene / oscillotitrator / dosimetryИзвор:
Nuclear Technology and Radiation Protection, 2018, 33, 4, 363-368Финансирање / пројекти:
- Материјали редуковане димензионалности за ефикасну апсорпцију светлости и конверзију енергије (RS-MESTD-Integrated and Interdisciplinary Research (IIR or III)-45020)
DOI: 10.2298/NTRP180316004V
ISSN: 1451-3994; 1452-8185
WoS: 000466815000006
Scopus: 2-s2.0-85063476249
URI
http://www.doiserbia.nb.rs/Article.aspx?ID=1451-39941800004Vhttps://vinar.vin.bg.ac.rs/handle/123456789/8121
Колекције
Институција/група
VinčaTY - JOUR AU - Vujčić, Ivica AU - Mašić, Slobodan AU - Spasevska, Hristina AU - Dramićanin, Miroslav PY - 2018 UR - http://www.doiserbia.nb.rs/Article.aspx?ID=1451-39941800004V UR - https://vinar.vin.bg.ac.rs/handle/123456789/8121 AB - Elhanol-chlorobenzene/oscillolilralor dosimetry system is widely used in controlling the irradiation process in gamma facilities. The elhanol-chlorobenzene dosimetry system provides a reliable means of measuring absorbed dose. It is based on a process of radiolytic formation of hydrochloric acid in aqueous elhanolic solutions of chlorobenzene by ionizing radiation. The irradiation temperature dependence of dosimeter response is a complex function of dose and temperature for each concentration of chlorobenzene. At different temperature the mobility of conducting species from hydrochloric acid is changed leading to dilTerenl oscillolilralor deflections during high-frequency conduclomelric readout. In this paper, we examined the influence of temperature on the calculation of the radiation dose. We showed that the temperature significantly influenced the measurement results, and that the calibration curve has to be formed at the irradiation temperature in order to obtain precise values of the absorbed dose. © 2018; Vinca Inst Nuclear Sci. All rights reserved. T2 - Nuclear Technology and Radiation Protection T1 - Accuracy in determining absorbed irradiation dose at different temperature measurements using ethanol chlorobenzene - oscillotitrator system VL - 33 IS - 4 SP - 363 EP - 368 DO - 10.2298/NTRP180316004V ER -
@article{ author = "Vujčić, Ivica and Mašić, Slobodan and Spasevska, Hristina and Dramićanin, Miroslav", year = "2018", abstract = "Elhanol-chlorobenzene/oscillolilralor dosimetry system is widely used in controlling the irradiation process in gamma facilities. The elhanol-chlorobenzene dosimetry system provides a reliable means of measuring absorbed dose. It is based on a process of radiolytic formation of hydrochloric acid in aqueous elhanolic solutions of chlorobenzene by ionizing radiation. The irradiation temperature dependence of dosimeter response is a complex function of dose and temperature for each concentration of chlorobenzene. At different temperature the mobility of conducting species from hydrochloric acid is changed leading to dilTerenl oscillolilralor deflections during high-frequency conduclomelric readout. In this paper, we examined the influence of temperature on the calculation of the radiation dose. We showed that the temperature significantly influenced the measurement results, and that the calibration curve has to be formed at the irradiation temperature in order to obtain precise values of the absorbed dose. © 2018; Vinca Inst Nuclear Sci. All rights reserved.", journal = "Nuclear Technology and Radiation Protection", title = "Accuracy in determining absorbed irradiation dose at different temperature measurements using ethanol chlorobenzene - oscillotitrator system", volume = "33", number = "4", pages = "363-368", doi = "10.2298/NTRP180316004V" }
Vujčić, I., Mašić, S., Spasevska, H.,& Dramićanin, M.. (2018). Accuracy in determining absorbed irradiation dose at different temperature measurements using ethanol chlorobenzene - oscillotitrator system. in Nuclear Technology and Radiation Protection, 33(4), 363-368. https://doi.org/10.2298/NTRP180316004V
Vujčić I, Mašić S, Spasevska H, Dramićanin M. Accuracy in determining absorbed irradiation dose at different temperature measurements using ethanol chlorobenzene - oscillotitrator system. in Nuclear Technology and Radiation Protection. 2018;33(4):363-368. doi:10.2298/NTRP180316004V .
Vujčić, Ivica, Mašić, Slobodan, Spasevska, Hristina, Dramićanin, Miroslav, "Accuracy in determining absorbed irradiation dose at different temperature measurements using ethanol chlorobenzene - oscillotitrator system" in Nuclear Technology and Radiation Protection, 33, no. 4 (2018):363-368, https://doi.org/10.2298/NTRP180316004V . .