Spatial distribution and radiological risk assessment of soil radon (222Rn) and thoron (220Rn) in Gandhinagar city, Gujarat, India

Author:

Sahoo Sushanta Kumar,Katlamudi MadhusudhanaraoORCID,P Bala Chandar

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

Reference61 articles.

1. Nazaroff WW, Moed BA, Sextro RG (1988) Soil as a source of indoor radon: generation, migration and entry. In: Nazaroff WW, Nero AV (eds) Radon and its decay products in indoor air. Wiley-Interscience, New York, pp 57–112

2. Prasad BSN, Nagaraja K, Chandrashekara MS, Paramesh L, Madhava L (2005) Diurnal and seasonal variations of radioactivity and electrical conductivity near the surface for a continental location Mysore, India. Atmos Res 76(1–4):65–77

3. Schumann R, Owen D, Asher-Bolinder S (1988) Weather factors affecting soil-gas radon concentrations at a single site in the semiarid western U.S. In: EPA symposium on radon and radon reduction technology, vol 2. Publication

4. Sun K, Guo Q, Cheng J (2004) The effect of some soil characteristics on soil radon concentration and radon exhalation from soil surface. J Nucl Sci Technol 41(11):1113–1117

5. Gorchev HG, Ozolins G (2004) Guidelines for drinking-water quality, vol 1, 3rd edn. WHO, p 564

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