Issue |
EPJ Web Conf.
Volume 153, 2017
ICRS-13 & RPSD-2016, 13th International Conference on Radiation Shielding & 19th Topical Meeting of the Radiation Protection and Shielding Division of the American Nuclear Society - 2016
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Article Number | 07005 | |
Number of page(s) | 6 | |
Section | 7. Poster Presentations | |
DOI | https://doi.org/10.1051/epjconf/201715307005 | |
Published online | 25 September 2017 |
https://doi.org/10.1051/epjconf/201715307005
Study on the Characteristics of a Scintillator for Beta-ray Detection using Epoxy Resin
Korea Atomic Energy Research Institute, Decontamination and Decommissioning Technology Development Division, 34057 Daejeon, Republic of Korea
* Corresponding author: namjs@kaeri.re.kr
Published online: 25 September 2017
A thin plate of a plastic scintillator for detecting a beta-ray was developed. The plastic scintillator was made using epoxy resin and organic scintillators such as 2.5-diphenyloxazole (PPO) and 1,4-bis [5-phenyl-2-oxazole] benzene (POPOP). The mixture ratio of epoxy resin and the organic scintillators was determined using their absorbance, transmittance, emission spectra, and transparency. Their optimal weight percentage of PPO and POPOP in the organic scintillators was adjusted to 0.2 wt%:0.01 wt%. The prepared plastic scintillator was used to measure the standard source of Sr-90. The pulse height spectra and total counts of the prepared plastic scintillator were similar to a commercial plastic scintillator. Based on the above results, a large-area plastic scintillator was prepared for rapid investigation of a site contaminated with Sr-90. The prepared large-area plastic scintillator was evaluated for the characteristics in the laboratory. The evaluation results are expected to be usefully utilized in the development of a large-area plastic scintillation detector. The large-area plastic scintillation detector developed on the basis of the evaluation results is expected to be utilized to quickly measure the contamination of Sr-90 in the grounds used as a nuclear power facility.
© The Authors, published by EDP Sciences, 2017
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