Optimization of a water-intake system for monitoring radionuclides in aquatic environments

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초록

We designed and characterized a water-intake radiation monitoring system using a 3" × 3″ NaI(Tl) detector for real-time monitoring of, for example, nuclear power plant radioactive effluents. The MCNP6 code was used to determine the optimized container size and detector position for homogeneous 131I and 137Cs volumetric sources. Based on the simulation results, the dimensions of the monitoring system were determined. The simulation model was initially verified by comparison with the measurement results of a paper filter certified reference materials in water. Subsequently, it was further validated by comparison with the detection efficiency for 40K in a KCl volumetric source measurement experiment, which confirmed that the detection efficiency well matched experimental data for volumetric sources. Using the validated simulation model, the detection efficiency of 131I and 137Cs volumetric sources in a water-filled container was assessed. To consider background radioactivity, three types of water samples—freshwater, brackish water, and seawater—were experimentally measured. Based on these measurements, the minimum detectable activity for 131I and 137Cs volumetric sources was determined for each of the three water sample types.

키워드

Subaquatic radioactivity monitoring system; NaI(Tl) detector; Monte Carlo simulation; Minimum detectable activity; GAMMA-RAY SPECTROMETRY; RADIOACTIVITY MEASUREMENTS; IN-SITU; IMPACTS
제목
Optimization of a water-intake system for monitoring radionuclides in aquatic environments
저자
Lee, Dayeong; Maeng, Seongjin; Lee, Sang Hoon
DOI
10.1016/j.net.2025.103656
발행일
2025-09
유형
Article
저널명
Nuclear Engineering and Technology
권
57
호
9
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1 ~ 6