Assessment of dose due to exposure to indoor radon and thoron progeny

The components of the effective dose through inhalation from radon and its progeny are important for human health since they contribute to more than 50% of the total radiation dose from natural sources. As a consequence, radon has been identified as the second leading cause of lung cancer after s...

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Main Authors: Prasad Ganesh, Gusain Gurupad S., Joshi Veena, Ramola Rakesh C.
Format: Article
Language:English
Published: VINCA Institute of Nuclear Sciences 2010-01-01
Series:Nuclear Technology and Radiation Protection
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/1451-3994/2010/1451-39941003198P.pdf
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spelling doaj-83ad49a7cc904aceb5298698a41622a12020-11-24T23:30:14ZengVINCA Institute of Nuclear SciencesNuclear Technology and Radiation Protection1451-39942010-01-0125319820410.2298/NTRP1003198PAssessment of dose due to exposure to indoor radon and thoron progenyPrasad GaneshGusain Gurupad S.Joshi VeenaRamola Rakesh C.The components of the effective dose through inhalation from radon and its progeny are important for human health since they contribute to more than 50% of the total radiation dose from natural sources. As a consequence, radon has been identified as the second leading cause of lung cancer after smoking. Radon and its short lived decay products (218Po, 214Pb, 214Bi, 214Po) present in dwellings are a radiation hazard, particularly if such sources are concentrated in the enclosed areas like poorly ventilated houses and underground mines. The indoor radon, thoron, and progeny concentrations were measured in a small hilly town of Budhakedar and the surrounding area of Tehri Garhwal, India, by using LR-115 Type II plastic track detector in a twin cup radon dosimeter. The concentrations of radon progeny were measured as the highest in winter and the lowest in summer while the thoron progeny concentration was found maximum in rainy season and minimum in autumn. The annual exposure to the potential alpha energy of radon and thoron were found to vary from 0.04 WLM to 0.69 WLM with an average value of 0.29 WLM, and 0.03 WLM to 0.37 WLM with an aver- age value of 0.16 WLM, respectively. The annual effective dose due to the exposure to indoor radon and progeny in Budhakedar homes was found to vary from 0.16 mSv to 2.72 mSv with an average value of 1.14 mSv and the effective dose due to the exposure to thoron and progeny was found to vary from 0.18 mSv to 2.49 mSv with an average value of 1.05 mSv. The results of systematic study have been obtained by considering the room as a space in which the radon and thoron levels are directly related to the dynamic and static parameters. http://www.doiserbia.nb.rs/img/doi/1451-3994/2010/1451-39941003198P.pdfradonthoronexposeeffective dose
collection DOAJ
language English
format Article
sources DOAJ
author Prasad Ganesh
Gusain Gurupad S.
Joshi Veena
Ramola Rakesh C.
spellingShingle Prasad Ganesh
Gusain Gurupad S.
Joshi Veena
Ramola Rakesh C.
Assessment of dose due to exposure to indoor radon and thoron progeny
Nuclear Technology and Radiation Protection
radon
thoron
expose
effective dose
author_facet Prasad Ganesh
Gusain Gurupad S.
Joshi Veena
Ramola Rakesh C.
author_sort Prasad Ganesh
title Assessment of dose due to exposure to indoor radon and thoron progeny
title_short Assessment of dose due to exposure to indoor radon and thoron progeny
title_full Assessment of dose due to exposure to indoor radon and thoron progeny
title_fullStr Assessment of dose due to exposure to indoor radon and thoron progeny
title_full_unstemmed Assessment of dose due to exposure to indoor radon and thoron progeny
title_sort assessment of dose due to exposure to indoor radon and thoron progeny
publisher VINCA Institute of Nuclear Sciences
series Nuclear Technology and Radiation Protection
issn 1451-3994
publishDate 2010-01-01
description The components of the effective dose through inhalation from radon and its progeny are important for human health since they contribute to more than 50% of the total radiation dose from natural sources. As a consequence, radon has been identified as the second leading cause of lung cancer after smoking. Radon and its short lived decay products (218Po, 214Pb, 214Bi, 214Po) present in dwellings are a radiation hazard, particularly if such sources are concentrated in the enclosed areas like poorly ventilated houses and underground mines. The indoor radon, thoron, and progeny concentrations were measured in a small hilly town of Budhakedar and the surrounding area of Tehri Garhwal, India, by using LR-115 Type II plastic track detector in a twin cup radon dosimeter. The concentrations of radon progeny were measured as the highest in winter and the lowest in summer while the thoron progeny concentration was found maximum in rainy season and minimum in autumn. The annual exposure to the potential alpha energy of radon and thoron were found to vary from 0.04 WLM to 0.69 WLM with an average value of 0.29 WLM, and 0.03 WLM to 0.37 WLM with an aver- age value of 0.16 WLM, respectively. The annual effective dose due to the exposure to indoor radon and progeny in Budhakedar homes was found to vary from 0.16 mSv to 2.72 mSv with an average value of 1.14 mSv and the effective dose due to the exposure to thoron and progeny was found to vary from 0.18 mSv to 2.49 mSv with an average value of 1.05 mSv. The results of systematic study have been obtained by considering the room as a space in which the radon and thoron levels are directly related to the dynamic and static parameters.
topic radon
thoron
expose
effective dose
url http://www.doiserbia.nb.rs/img/doi/1451-3994/2010/1451-39941003198P.pdf
work_keys_str_mv AT prasadganesh assessmentofdoseduetoexposuretoindoorradonandthoronprogeny
AT gusaingurupads assessmentofdoseduetoexposuretoindoorradonandthoronprogeny
AT joshiveena assessmentofdoseduetoexposuretoindoorradonandthoronprogeny
AT ramolarakeshc assessmentofdoseduetoexposuretoindoorradonandthoronprogeny
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