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A time-dependent method for characterizing the diffusion of 222Rn in concrete
Health Physics
|August 1, 1983
Summary
This study determined concrete porosity and diffusion length by measuring radon diffusion. The method accurately predicted radon activity, validating concrete as a homogeneous diffusion medium.
Area of Science:
- Materials Science
- Environmental Science
- Nuclear Engineering
Background:
- Radon diffusion in concrete is crucial for understanding indoor air quality and radiation shielding.
- Accurate determination of concrete's porous structure is essential for predicting contaminant transport.
Purpose of the Study:
- To develop and validate a method for measuring concrete porosity and radon diffusion length.
- To assess the suitability of concrete as a homogeneous diffusion medium for radon.
Main Methods:
- Measuring time-dependent radon diffusion through concrete slabs.
- Collecting diffused radon over contiguous time intervals.
- Calculating porosity and diffusion length using total collected activity and steady-state flux.
Main Results:
- Porosity and diffusion length were determined for two concrete types (0.068 porosity/12.6 cm diffusion length and 0.32 porosity/16.9 cm diffusion length).
- Predicted radon activity for different time intervals and sample thicknesses showed good agreement with experimental data.
Conclusions:
- The developed method accurately determines concrete porosity and radon diffusion length.
- Concrete can be reliably modeled as a homogeneous diffusion medium for radon, supporting its use in various applications.