Radon and thoron inhalation doses in dwellings with earthen architecture: Comparison of measurement methods

被引:35
|
作者
Meisenberg, Oliver [1 ,3 ]
Mishra, Rosaline [2 ]
Joshi, Manish [2 ]
Gierl, Stefanie [1 ]
Rout, Rajeswari [2 ]
Guo, Lu [1 ,4 ]
Agarwal, Tarun [2 ]
Kanse, Sandeep [2 ]
Irlinger, Josef [1 ,5 ]
Sapra, Balvinder K. [2 ]
Tschiersch, Jochen [1 ]
机构
[1] Helmholtz Zentrum Munchen, German Res Ctr Environm Hlth, Inst Radiat Protect, Ingolstadter Landstr 1, D-85764 Neuherberg, Germany
[2] Bhabha Atom Res Ctr, Radiol Phys & Advisory Div, Mumbai 400085, Maharashtra, India
[3] Bundesamt Strahlenschutz, Ingolstadter Landstr 1, D-85764 Neuherberg, Germany
[4] Peking Univ, State Key Lab Nucl Phys & Technol, Beijing, Peoples R China
[5] ENVINET GmbH, D-85540 Haar, Germany
关键词
Indoor exposure; Clay dwelling; Measurement method; Radon; Thoron; Inhalation dose assessment; BACKGROUND-RADIATION AREA; DECAY PRODUCTS; PROGENY; ENVIRONMENT; EXPOSURES; MEMBERS; RN-220; ODISHA; CHINA; GANSU;
D O I
10.1016/j.scitotenv.2016.11.170
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The radioactive noble gas radon (Rn-222) and its decay products have been considered a health risk in the indoor environment for many years because of their contribution to the radiation dose of the lungs. The radioisotope thoron (Rn-220) and its decay products came into focus of being a health risk only recently. The reason for this is its short half-life, so only building material can become a significant source for indoor thoron. In this study, dwellings with earthen architecture were investigated with different independent measurement techniques in order to determine appropriate methods for reliable dose assessment of the dwellers. While for radon dose assessment, radon gas measurement and the assumption of a common indoor equilibrium factor often are sufficient, thoron gas has proven to be an unreliable surrogate for a direct measurement of thoron decay products. Active/time-resolved but also passive/integrating measurements of the total concentration of thoron decay products demonstrated being precise and efficient methods for determining the exposure and inhalation dose from thoron and its decay products. Exhalation rate measurements are a useful method for a rough dose estimate only if the exhalation rate is homogeneous throughout the house. Before the construction of a building in-vitro exhalation rate measurements on the building material can yield information about the exposure that is to be expected. Determining the unattached fraction of radon decay products and even more of thoron decay products leads to only a slightly better precision; this confirms the relative unimportance of the unattached thoron decay products due to their low concentration. The results of this study thereby give advice on the proper measurement method in similar exposure situations. (C) 2016 Elsevier B.V. All rights reserved.
引用
收藏
页码:1855 / 1862
页数:8
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共 39 条
  • [1] Inhalation dose due to radon, thoron, and progenies in dwellings of a hill station
    R. Sivakumar
    [J]. Environmental Monitoring and Assessment, 2017, 189
  • [2] Inhalation dose due to radon, thoron, and progenies in dwellings of a hill station
    Sivakumar, R.
    [J]. ENVIRONMENTAL MONITORING AND ASSESSMENT, 2017, 189 (02)
  • [3] Measurement of Indoor Radon, Thoron and Dose Rates in Some Dwellings of Punjab
    Kaur, Rupinderjeet
    Singh, Supreet Pal
    Shikha, Deep
    Mehta, Vimal
    [J]. ADVANCES IN BASIC SCIENCES (ICABS 2019), 2019, 2142
  • [4] MEASUREMENT OF RADON, THORON AND THEIR PROGENY CONCENTRATIONS IN THE DWELLINGS OF PAURI GARHWAL, UTTARAKHAND, INDIA
    Joshi, Veena
    Dutt, Sanjay
    Yadav, Manjulata
    Mishra, Rosaline
    Ramola, R. C.
    [J]. RADIATION PROTECTION DOSIMETRY, 2016, 171 (02) : 234 - 237
  • [5] Measurement of indoor radon-thoron concentration and radon soil gas in some North Indian dwellings
    Kumar, Amit
    Chauhan, R. P.
    [J]. JOURNAL OF GEOCHEMICAL EXPLORATION, 2014, 143 : 155 - 162
  • [6] Diurnal variations of radon and thoron activity concentrations and effective doses in dwellings in Niska Banja, Serbia
    Vaupotic, J.
    Streil, T.
    Tokonami, S.
    Zunic, Z. S.
    [J]. RADIATION PROTECTION DOSIMETRY, 2013, 157 (03) : 375 - 382
  • [7] Comparison of antioxidative effects between radon and thoron inhalation in mouse organs
    Yusuke Kobashi
    Takahiro Kataoka
    Norie Kanzaki
    Tsuyoshi Ishida
    Akihiro Sakoda
    Hiroshi Tanaka
    Yuu Ishimori
    Fumihiro Mitsunobu
    Kiyonori Yamaoka
    [J]. Radiation and Environmental Biophysics, 2020, 59 : 473 - 482
  • [8] EFFECT OF AIR VELOCITY ON INHALATION DOSES DUE TO RADON AND THORON PROGENY IN A TEST CHAMBER
    Mishra, Rosaline
    Prajith, Rama
    Rout, Rajeswari Pradhan
    Sriamirullah, Jalaluddin
    Sapra, Balwinder Kaur
    [J]. RADIATION PROTECTION DOSIMETRY, 2020, 189 (03) : 401 - 405
  • [9] Comparison of antioxidative effects between radon and thoron inhalation in mouse organs
    Kobashi, Yusuke
    Kataoka, Takahiro
    Kanzaki, Norie
    Ishida, Tsuyoshi
    Sakoda, Akihiro
    Tanaka, Hiroshi
    Ishimori, Yuu
    Mitsunobu, Fumihiro
    Yamaoka, Kiyonori
    [J]. RADIATION AND ENVIRONMENTAL BIOPHYSICS, 2020, 59 (03) : 473 - 482
  • [10] Indoor radon/thoron levels and inhalation doses to some populations in Himachal Pradesh, India
    Virk, HS
    Sharma, N
    [J]. JOURNAL OF ENVIRONMENTAL MONITORING, 2002, 4 (01): : 162 - 165