Passive methods for environmental radon and thoron monitoring

被引:0
|
作者
Iida, T [1 ]
机构
[1] Nagoya Univ, Grad Sch Engn, Chikusa Ku, Nagoya, Aichi 46401, Japan
关键词
D O I
暂无
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The present paper describes passive radon (Rn-222) monitor, some problems with measurements of Rn-222 concentrations by passive cup method, a new type of passive Rn-222 and thoron (Rn-220) cup monitors, and a simple assessment method of dose due to exposure of Rn-220 progeny. A passive cup monitor has been constructed by using a 50 mm radius stainless steel hemisphere. In dwellings sith high Rn-220 concentrations, it is Particularly necessary to measure Rn-222 concentration with a monitor having a Rn exchange rate less than 0.1 h(-1). On the basis of the Rn-222 cup monitor, a ner type of passive Rn-222 and Rn-220 cup monitors ras developed. By placing a pair of cup monitors at a 20 cm distance from wall, the concentrations of both gases could be assessed from the a-track densities on the solid state nuclear track detectors (SSNTD). The Rn-222 and Rn-220 concentrations were surveyed around Nagoya in Japan. The Rn-220 concentrations were rather high in the dwellings with soil wall. The results of the surveys have also clarified the relationship between the Rn-220 concentrations at a 20 cm distance from wall and the Rn-220 Progeny concentrations measured in the sane dwellings. Then, the annual mean effective dose equivalent due to Rn-220 progeny ras expected to be 0.67 mSv.y(-1) in the dwellings with soil wall.
引用
收藏
页码:18 / 27
页数:10
相关论文
共 50 条
  • [31] ALPHA-COUNTING METHODS FOR MEASUREMENTS OF RADON AND THORON EMANATION RATES
    GAN, TH
    KENNEDY, KN
    MASON, GC
    PEGGIE, JR
    WISE, KN
    HEALTH PHYSICS, 1984, 47 (03): : 501 - 501
  • [32] Indoor radon, thoron, and thoron daughter concentrations in Korea
    Kim, YJ
    Lee, HY
    Kim, CS
    Chang, BU
    Rho, BH
    Kim, CK
    Tokonami, S
    HIGH LEVELS OF NATURAL RADIATION AND RADON AREAS: RADIATION DOSE AND HEALTH EFFECTS, 2005, 1276 : 46 - 49
  • [33] Measurement of Indoor Thoron Gas Concentrations Using a Radon-Thoron Discriminative Passive Type Monitor: Nationwide Survey in Japan
    Sanada, Tetsuya
    INTERNATIONAL JOURNAL OF ENVIRONMENTAL RESEARCH AND PUBLIC HEALTH, 2021, 18 (03) : 1 - 8
  • [34] Comparative dosimetry of radon and thoron
    Kranrod, C.
    Ishikawa, T.
    Tokonami, S.
    Sorimachi, A.
    Chanyotha, S.
    Chankow, N.
    RADIATION PROTECTION DOSIMETRY, 2010, 141 (04) : 424 - 427
  • [35] Electret ion chamber-based passive radon-thoron discriminative monitors
    Kotrappa, P.
    Steck, D.
    RADIATION PROTECTION DOSIMETRY, 2010, 141 (04) : 386 - 389
  • [36] RADON AND THORON DAUGHTERS IN HOUSING
    GUNNING, C
    SCOTT, AG
    HEALTH PHYSICS, 1982, 42 (04): : 527 - 528
  • [37] RADON AND THORON IN FUMAROLE GASES
    KUPTSOV, VM
    CHERDYNT.VV
    DOKLADY AKADEMII NAUK SSSR, 1968, 183 (02): : 436 - &
  • [38] DETERMINATION OF RADON AND THORON IN AIR
    COURTIER, GB
    NATURE, 1957, 180 (4582) : 382 - 383
  • [39] OPTIMAL METHOD FOR ENVIRONMENTAL RADON AND THORON DAUGHTERS DETERMINATION BY ALPHA-SPECTROMETRY
    SONOC, S
    SIMA, O
    RADIATION PROTECTION DOSIMETRY, 1992, 45 (1-4) : 51 - 52
  • [40] Measurement of tracheobronchial dose from simultaneous exposure to environmental radon and thoron progeny
    Yu, KN
    Guan, ZJ
    Young, ECM
    Stokes, MJ
    HEALTH PHYSICS, 1998, 75 (02): : 153 - 158