Experimental and modeling studies of grain size and moisture content effects on radon emanation

被引:68
作者
Sakoda, Akihiro [1 ]
Ishimori, Yuu [2 ]
Hanamoto, Katsumi [1 ]
Kataoka, Takahiro [1 ]
Kawabe, Atsushi [1 ]
Yamaoka, Kiyonori [1 ]
机构
[1] Okayama Univ, Grad Sch Hlth Sci, Kita Ku, Okayama 7008558, Japan
[2] Japan Atom Energy Agcy, Ningyo Toge Environm Engn Ctr, Kagamino, Okayama 7080698, Japan
关键词
Radon emanation; Modeling; Soil; Grain size; Moisture content; Pore gap; Radium distribution; DEPENDENCE; MINERALS; RN;
D O I
10.1016/j.radmeas.2010.01.010
中图分类号
TL [原子能技术]; O571 [原子核物理学];
学科分类号
0827 ; 082701 ;
摘要
Some models have already been developed to explain the effect of moisture content on the radon emanation fraction of soil. For this purpose, "microscopic" soil models, which are easy to deal with mathematically but cannot take grain size into consideration, have been designed. These previous models consist basically of two opposite grain surfaces and pores between the grains. In the present study, in order to study the effect of not only moisture content but also grain size, we present a simple modeling approach based on two "macroscopic" soil models: (1) a single-grain model and (2) a multiple-grain model. The latter model represents a configuration of spherical grains packed in a simple cubic structure. Based on these soil models and general assumptions, the radon emanation fraction was calculated as a function of grain size or moisture content by Monte Carlo simulation. The results for the multiple-grain model show that the radon emanation fraction is markedly increased with grain sizes ranging from 10 to 100 inn and reaches a constant value of 50% when moisture content is 0% and the radium is uniformly distributed on the grain surface. Moreover, a drastic increase is seen at smaller grain sizes with increasing moisture content. From these results, we concluded that the calculation of radon emanation depends greatly on the pore size between a Ra-bearing grain and a neighboring grain. The validity of the model was also evaluated by comparison to experimental data. (C) 2010 Elsevier Ltd. All rights reserved.
引用
收藏
页码:204 / 210
页数:7
相关论文
共 21 条
[1]  
[Anonymous], 2000, REPORT UN SCI COMMIT
[2]   Direct recoil radon emanation from crystalline phases.: Influence of moisture content [J].
Barillon, R ;
Özgümüs, A ;
Chambaudet, A .
GEOCHIMICA ET COSMOCHIMICA ACTA, 2005, 69 (11) :2735-2744
[3]   THE EFFECTS OF PARTICLE-SIZE AND MOISTURE-CONTENT ON THE EMANATION OF RN FROM COAL ASH [J].
BARTON, TP ;
ZIEMER, PL .
HEALTH PHYSICS, 1986, 50 (05) :581-588
[4]   The radon emanation power of building materials, soils and rocks [J].
Bossew, P .
APPLIED RADIATION AND ISOTOPES, 2003, 59 (5-6) :389-392
[5]  
Bossus D. A. W., 1984, Radiation Protection Dosimetry, V7, P73
[6]   EMANATION COEFFICIENTS FOR RN IN SIZED COAL FLY-ASH [J].
KALKWARF, DR ;
JACKSON, PO ;
KUTT, JC .
HEALTH PHYSICS, 1985, 48 (04) :429-436
[7]   COMPARATIVE-STUDY OF RN-222, 40AR, 39AR AND AR-37 LEAKAGE FROM ROCKS AND MINERALS - IMPLICATIONS FOR THE ROLE OF NANOPORES IN GAS-TRANSPORT THROUGH NATURAL SILICATES [J].
KRISHNASWAMI, S ;
SEIDEMANN, DE .
GEOCHIMICA ET COSMOCHIMICA ACTA, 1988, 52 (03) :655-658
[8]  
MARKKANEN M, 1992, RADIAT PROT DOSIM, V45, P269
[9]   EMANATION AND EXHALATION OF RADON AND THORON GASES FROM SOIL PARTICLES [J].
MEGUMI, K ;
MAMURO, T .
JOURNAL OF GEOPHYSICAL RESEARCH, 1974, 79 (23) :3357-3360
[10]   DEPENDENCE OF THE RADON EMANATION COEFFICIENT ON RADIUM DISTRIBUTION AND INTERNAL STRUCTURE OF THE MATERIAL [J].
MORAWSKA, L ;
PHILLIPS, CR .
GEOCHIMICA ET COSMOCHIMICA ACTA, 1993, 57 (08) :1783-1797