Effect of a Desiccant on the Measurement of Radon Concentration in Air

Author:

TAJIKA Yukari1,YASUOKA Yumi1,OMORI Yasutaka2,SORIMACHI Atsuyuki3,ISHIKAWA Tetsuo4,MORI Yasunori5,MUKAI Takahiro1

Affiliation:

1. Kobe Pharmaceutical University

2. National Institute of Radiological Sciences

3. Hirosaki University

4. Fukushima Medical University

5. Mie Prefecture Health and Environment Research Institute

Publisher

Japan Health Physics Society

Subject

Health, Toxicology and Mutagenesis,Radiology, Nuclear Medicine and imaging,Epidemiology

Reference23 articles.

1. 1) WORLD HEALTH ORGANIZATION (WHO); “WHO Guidelines for Indoor Air Quality: Selected Pollutants” (2010), WHO Regional Office for Europe, Copenhagen, Denmark.

2. 2) WORLD HEALTH ORGANIZATION (WHO); “WHO Handbook on Indoor Radon: A Public Health Perspective” (2009), World Health Organization, Geneva, Switzerland.

3. 3) A. C. GEORGE; State-of-the-art instruments for measuring radon/thoron and their progeny in dwellings: a review, Health Phys., 70, 451-463 (1996).

4. 4) UNITED NATIONS SCIENTIFIC COMMITTEE ON THE EFFECTS OF ATOMIC RADIATION (UNSCEAR); Sources and Effects of Ionizing Radiation. United Nations Scientific Committee on the Effects of Atomic Radiation, 2000 Report to the General Assembly, with Scientific Annexes, Volume I, United Nations Publication, New York (2000).

5. 5) T. IIDA; Passive integrating radon monitor, Jpn. J. Health Phys., 20, 407-415 (1985) (in Japanese).

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