A simple passive collector for direct measurement of radon flux from soil

Author:

Burnett W. C.,Cable P. H.,Chanton J. P.

Publisher

Springer Science and Business Media LLC

Subject

Health, Toxicology and Mutagenesis,Public Health, Environmental and Occupational Health,Spectroscopy,Pollution,Radiology, Nuclear Medicine and imaging,Nuclear Energy and Engineering,Analytical Chemistry

Reference14 articles.

1. N.L. NAGDA, M.D. KOONTZ, R.C. FORTMANN, W.A. SCHOENBORN, L.L. MEHEGAN, Florida Statewide Radiation Study, Final Report to Florida Institute of Phosphate Research, 1987.

2. W.C. BURNETT, J.B. COWART, W.C. TAI, P.H. CABLE, Investigations of radon and radon daughters in surficial aquifers of Florida, Final report to Florida Institute of Phosphate Research, 133p, 1991.

3. B.L. COHEN, R. NASON, Health Physics, 50 (1986) 457.

4. P.H. JENKINS, Health Physics, 57 (1991) 131.

5. D.J. GRAY, S.T. WINDHAM, NAREL standard operating procedures for radon-222 measurement using diffusion barrier charcoal canisters, EPA 520/5-90-032, 31p.

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1. Method for measuring radon flux density from soil activated by a pressure gradient;Radiation Measurements;2018-12

2. Determination of Metals in Soils;Determination of Metals in Natural Waters, Sediments and Soils;2015

3. Assessing diffusive fluxes and pore water radon activities via a single automated experiment;Journal of Radioanalytical and Nuclear Chemistry;2014-04-28

4. Radon Tracing of Submarine Groundwater Discharge in Coastal Environments;Land and Marine Hydrogeology;2003

5. Radon in the environment;Journal of Radioanalytical and Nuclear Chemistry;1997-06

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