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Estimating the Asian radon flux density and its latitudinal gradient in winter using ground-based radon observations at Sado Island Cover

Estimating the Asian radon flux density and its latitudinal gradient in winter using ground-based radon observations at Sado Island

Open Access
|Jan 2009

Abstract

Terrestrial radon-222 flux density for the Asian continent, integrated over distances of 4500 km, is estimated in two 20. latitudinal bands centred on 48.8.N and 63.2.N. The evaluation is based on three years of wintertime radon measurements at Sado Island, Japan, together with meteorological and trajectory information. A selection of 18% of observations are suitable for evaluation of an analytical expression for the continental surface flux. Various meteorological assumptions are discussed; it is found that there is a substantial effect of increased complexity of the formulation on the flux estimates obtained. The distribution of spatially integrated radon flux over the Asian landmass is reported for the first time. Expressed as geometric means and 1±-ranges, estimated fluxes are 14.1 mBq m.2 s.1 (1±-range: 18 mBq m-2 s-1) and 8.4 mBq m-2 s-1 (1±-range: 10 mBq m-2 s-1) for the lower and higher latitude bands. These results constitute an annual minimum in flux densities for these regions, and are higher than previously reported. The existence of a latitudinal gradient in the continental radon source function is confirmed; the present estimate for Asia (-0.39 mBq m-2 s-1 per degree of latitude) is in agreement with the northern hemisphere terrestrial radon flux gradient proposed previously.

Language: English
Page range: 732 - 746
Submitted on: Apr 8, 2009
Accepted on: Jul 21, 2009
Published on: Jan 1, 2009
Published by: Stockholm University Press
In partnership with: Paradigm Publishing Services

© 2009 Alastair G. Williams, Scott Chambers, Wlodek Zahorowski, Jagoda Crawford, Kiyoshi Matsumoto, Mitsuo Uematsu, published by Stockholm University Press
This work is licensed under the Creative Commons Attribution 4.0 License.