2009
DOI: 10.1016/j.apradiso.2009.02.087
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Mitigation of the effective dose of radon decay products through the use of an air cleaner in a dwelling in Okinawa, Japan

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Cited by 25 publications
(14 citation statements)
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“…Based on this survey, it was estimated that only 0.1% of dwellings in Japan exceed 100 Bq/m³ radon concentration, which the WHO suggests as a reference level for indoor radon [8]. On the other hand, 'radon hot-spots' on Okinawa Island with relatively high indoor radon concentration, exceeded 300 Bq/m 3 , described by Kranrod [9] was found. Moreover, from the long-term survey performed by Kobayashi [10], the radon concentration in a house located near Futsukaichi hot spring ranged from 14 to 184 Bq/m 3 with an arithmetic mean of 45 Bq/m 3 .…”
Section: Descriptive Statisticsmentioning
confidence: 99%
“…Based on this survey, it was estimated that only 0.1% of dwellings in Japan exceed 100 Bq/m³ radon concentration, which the WHO suggests as a reference level for indoor radon [8]. On the other hand, 'radon hot-spots' on Okinawa Island with relatively high indoor radon concentration, exceeded 300 Bq/m 3 , described by Kranrod [9] was found. Moreover, from the long-term survey performed by Kobayashi [10], the radon concentration in a house located near Futsukaichi hot spring ranged from 14 to 184 Bq/m 3 with an arithmetic mean of 45 Bq/m 3 .…”
Section: Descriptive Statisticsmentioning
confidence: 99%
“…Among other mitigation approaches, filtration has a relatively long history in mitigating the inhalation exposure from radon decay products. A variety of methods such as electro-filter, an air cleaner with a mechanical filter (Kojima et al., 1992) and high-efficiency particulate air filter (HEPA filter; Kranrod et al., 2009; Rajala et al., 1985; Yasuoka et al., 2009) have been tested. However, no significant effect is noted so far.…”
Section: Resultsmentioning
confidence: 99%
“…The AMAD of 214 Bi was calculated to be 350 nm with relative geometric standard deviation of 3. (16) have been measured the activity size distribution of the attached radon progeny by a Micro Orifice Uniform Deposit impactor (Model 110 MOUDITM, USA) in Okinawa. The AMAD was observed 267 nm with a range from 234 to 308 and a GSD of 1.7 (range 1.6 and 1.9) which is smaller than our present value Mishra et al (17) have been measured the activity size distribution of the attached aerosols by a developed low pressure cascade impactor.…”
Section: Indoor Activity Size Distribution Ofmentioning
confidence: 99%
“…This distribution has been determined by tagging natural aerosol particles with radon progeny. However, some measurements for attached and unattached activity size distributions of 222 Rn progeny have been performed in the indoor air under realistic natural conditions (4)(5)(6)(7)(8)(9)(10)(11)(12)(13)(14)(15)(16)(17) . Most of the observed data have shown that the size distribution of radon progeny consists of ultrafine clusters with median diameters below 4 nm (unattached activity) and progenies associated with ambient aerosol particles in sizes ranging between 100 and 1000 nm (attached activity).…”
mentioning
confidence: 99%