Accesso libero

Measurement of 238U, 232Th and 222Rn concentrations in different table oils samples. Determination of committed effective doses received by consumers following the ingestion of table oil.

   | 26 dic 2019
INFORMAZIONI SU QUESTO ARTICOLO

Cita

[1] United Nations Scientific Committee on the Effects of Atomic Radiation. Rapport du Comité scientifique des Nations Unies pour l’étude des effets des rayonnements ionisants. Rapport de l’assemblée générale. Documents officiels. Cinquante cinquième sessions. Supplément n- 46 (A/55/46). New York: UNSCEAR; 2000 (in French).Search in Google Scholar

[2] Yu KN, Mao SY. Assessment of radionuclide contents in food in Hong Kong. Health Phys. 1999;77:686-696.10.1097/00004032-199912000-00013Search in Google Scholar

[3] Shiraishi K, Tagami K, Muramatsu Y, Yamamoto M. Contributions of 18 food categories to intakes of 232Th and 238U in Japan. Health Phys. 2000;78(1):28-36.10.1097/00004032-200001000-00006Search in Google Scholar

[4] Misdaq MA, Khajmi H, Aitnouh F, at al. A new method for evaluating uranium and thorium contents in different natural material samples by calculating the CR-39 and LR-115 type II SSNTD detection efficiencies for the emitted alpha-particles. Nuclear Instruments and Methods in Physics Research B. 2000;171(3):350-359.10.1016/S0168-583X(00)00292-5Search in Google Scholar

[5] Misdaq MA, Touti R. Annual committed effective dose from olive oil (due to 238U, 232Th and 222Rn) estimated for members of the Moroccan public from ingestion and skin application. Health Phys. 2012;102(3):335-345.10.1097/HP.0b013e318237e597Search in Google Scholar

[6] Misdaq MA, Chaouqi A, Ouguidi J, et al. Measurement of 238U and 232Th in petrol, gas-oil and lubricant samples by using nuclear track detectors and resulting radiation doses to the skin of mechanic workers. Health Phys. 2015;109(4):269-276.10.1097/HP.0000000000000332Search in Google Scholar

[7] Misdaq MA, Bakhchi A, Ktata A, et al. Determination of uranium and thorium contents inside different materials using track detectors and mean critical angles. Appl Radiat Isot. 1999:51(2):209-215.10.1016/S0969-8043(98)00190-0Search in Google Scholar

[8] Misdaq M.A, Aitnouh F, Khajmi H, et al. A new method for evaluating radon and thoron α-activities per unit volume inside and outside various natural material samples by calculating SSNTD detection efficiencies for the emitted α-particles and measuring the resulting track densities. Appl Radiat Isot. 2001;55(2):205-213.10.1016/S0969-8043(00)00381-XSearch in Google Scholar

[9] Biersack JP, Ziegler JF. 1998. IBM research. TRIM. Version 98Search in Google Scholar

[10] Ziegler JF, Biersack JP, Littmark U. The stopping and range of ions in solids. New York: Pergamon; 1985.10.1007/978-1-4615-8103-1_3Search in Google Scholar

[11] Misdaq MA, Elamyn H. 238U and 232Th content in common food in Morocco and resulting radiation dose to the general population. Radiati Meas. 2006;41(4):452-460.10.1016/j.radmeas.2005.11.003Search in Google Scholar

[12] International Commission on Radiological Protection. Limits for Intakes of Radionuclides by Workers. ICRP Publication 30 Part 1, Pergamon Press, Oxford and New York; 1979.Search in Google Scholar

[13] International Commission on Radiological Protection. Limits for Intakes of Radionuclides by Workers. ICRP Publication 30 Part 2, Pergamon Press, Oxford and New York; 1979.Search in Google Scholar

[14] United Nations Scientific Committee on the Effects of Atomic Radiation. Report to the general assembly. Annex D. Exposure to radon and thoron and their decay products. New York: UNSCEAR; 1982.Search in Google Scholar

[15] Kendall GM, Smith TJ. Doses to organs and tissues from radon and its decay products. J Radiol Prot. 2002;22(4):389-406.10.1088/0952-4746/22/4/30412546226Search in Google Scholar

[16] International Commission on Radiological Protection. Basic anatomical and physiological data for use in radiological protection: reference values. ICRP Publication 89, Ann. ICRP 32 (3/4); 2002.10.1016/S0146-6453(03)00002-2Search in Google Scholar

[17] International Commission on Radiological Protection. Human respiratory tract model for radiological protection. Annals of the ICRP, 24 (1-3), ICRP Publication 66; 1994.10.1016/0146-6453(94)90018-3Search in Google Scholar

[18] Misdaq MA, Ezzahery H, Elabboubi D. Determination of equivalent dose rates and committed effective doses in the respiratory system from the inhalation of radon decay products by using SSNTD and a dosimetric compartmental model. Radiat Prot Dosim. 2001;93(4):347-355.10.1093/oxfordjournals.rpd.a006447Search in Google Scholar

[19] International Commission on Radiological Protection. Age dependent doses to members of the public from intake of radionuclides: ingestion dose coefficients. ICRP Publication 72 Part 5; Ann ICRP 26 (1); 1996.10.1016/S0146-6453(00)89192-7Search in Google Scholar

[20] International Commission on Radiological Protection. Permissible dose for internal radiation. ICRP Publication 2, Report of committee II; 1959.Search in Google Scholar

eISSN:
1898-0309
Lingua:
Inglese
Frequenza di pubblicazione:
4 volte all'anno
Argomenti della rivista:
Medicine, Biomedical Engineering, Physics, Technical and Applied Physics, Medical Physics