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Dosimertry characteristics and performance comparisons: Environmental radiophotoluminescent glass dosemeters versus thermoluminescent dosemeters

机译:Dosimertry的特性和性能比较:环境放射光致发光玻璃剂量计与热致发光剂量计

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This paper describes the dosimetry characteristic comparison of environmental radiophotoluminescent glass dosemeter (RPLGD) and thermoluminescent dosemeter (TLD) systems employed at the Institute of Nuclear Energy Research (INER, Taiwan). The luminescence centers of TLD disappeared by reading process, and repetition of measurement is impossible. RPLGDs can be repeatedly read and keep the luminescence centers for a long time. The RPLGD fading is about 1% within 30 days after being exposed to ionizing radiation. Environmental cumulative doses measured by a RPLGD and a TLD were compared at the same monitoring points of INER during two years. The sensitivity of TLD decreased with gradual loss due to fading at higher temperatures. The difference between results obtained by RPLGD and TLD is discussed mainly with respect to the dependence on the ambient temperature. In addition, this research also refers to the American National Standard Institute (ANSI) Draft Standard N13.29 (1996) to organize the environmental dosimetry performance tests of the INER's RPLGDs and the TLDs. The results mean that both kinds of dosemeters can meet the performance test criteria. An accreditation procedure for the institutes which provide the environmental dosimetry services in Taiwan was suggested based on the comparison results of these two dosimetry systems.
机译:本文描述了核能研究所(台湾国家核能研究所)采用的环境放射光致发光玻璃剂量计(RPLGD)和热致发光剂量计(TLD)系统的剂量学特性比较。 TLD的发光中心因读取过程而消失,无法重复测量。可以重复读取RPLGD,并长时间保持发光中心。在暴露于电离辐射后的30天内,RPLGD褪色约为1%。在两年内,在INER的相同监测点比较了由RPLGD和TLD测量的环境累积剂量。由于在较高温度下褪色,TLD的灵敏度会随着逐渐降低而降低。 RPLGD和TLD获得的结果之间的差异主要是关于对环境温度的依赖性。此外,本研究还参考了美国国家标准协会(ANSI)的标准草案N13.29(1996),以组织INER的RPLGD和TLD的环境剂量学性能测试。结果表明,两种剂量计都可以满足性能测试标准。根据这两种剂量学系统的比较结果,提出了对台湾提供环境剂量学服务的机构的认可程序。

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