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由辐射安全专业中代表性不足的学生学员进行的回旋加速器退役放射学评估活动。

A Cyclotron Decommissioning Radiological Assessment Exercise Performed by Student Mentees Underrepresented in the Radiation Safety Profession.

作者信息

Zapata Jessie R, Stewart Justice, Kelly Kalifa O, Taylor Aaron R, Martinez Erika I, Amoako Kofi, Gutierrez Janet M, Emery Robert J, Cheng Sai Yan, Patlovich Scott J, Harvey Mark C

机构信息

Department of Physics, Texas Southern University, Houston, TX 77004.

Department of Chemistry, Texas Southern University, Houston, TX 77004.

出版信息

Health Phys. 2021 Jan;120(1):105-111. doi: 10.1097/HP.0000000000001338.

Abstract

Cyclotrons used in nuclear medicine imaging accelerate protons, deuterons, and helium ions to bombard a target, which produces nuclear reactions that generate positron-emitting radionuclides. Secondary neutrons are nonuniformly emitted in these reactions and induce heterogeneous activation of the cyclotron components and concrete vault enclosure. This poses radioactive waste management complications when decommissioning a cyclotron facility, since the objective is to ensure that exposures are within regulatory limits and as low as reasonably achievable (ALARA). The McGovern Medical School in The University of Texas Health Science Center in Houston housed a Scanditronix MC40 cyclotron that produced short-lived radioisotopes for Positron Emission Tomography (PET) imaging from 1984 to 2001 until Tropical Storm Allison rendered it inoperable. The purpose of this study was to provide underrepresented Science, Technology, Engineering and Mathematics (STEM) students an ALARA experience with a practical problem encountered in the radiation safety profession. Gamma dose rate measurements were performed with both a Mirion InSpector 1000 spectrometer and Fluke 451P survey meter in the vault at locations identified as hotspots based on preliminary scoping surveys with the Ludlum model 44-9 detector. However, gamma spectra were measured with the spectrometer exclusively at hotspots along the west wall. Results indicated the maximum gamma dose rate of 129 ± 31 nSv h was about 2 times background near the central beam transport line of the now inoperable cyclotron. Furthermore, gamma emission peaks were identified in the spectra from trace amounts of Co and Eu in the vault's concrete walls.

摘要

核医学成像中使用的回旋加速器加速质子、氘核和氦离子以轰击靶标,这会产生核反应,进而生成发射正电子的放射性核素。在这些反应中,次级中子的发射并不均匀,会导致回旋加速器部件和混凝土屏蔽室产生不均匀活化。这在回旋加速器设施退役时会带来放射性废物管理方面的复杂问题,因为目标是确保辐射暴露在监管限值之内且尽可能低(尽可能合理达到的低水平,ALARA)。德克萨斯大学健康科学中心休斯顿分校的麦戈文医学院曾有一台Scanditronix MC40回旋加速器,从1984年到2001年,它用于生产用于正电子发射断层扫描(PET)成像的短寿命放射性同位素,直到艾利森热带风暴使其无法运行。本研究的目的是为在科学、技术、工程和数学(STEM)领域代表性不足的学生提供一次关于辐射安全行业实际问题的尽可能合理达到的低水平(ALARA)体验。使用Mirion InSpector 1000光谱仪和福禄克451P辐射检测仪在屏蔽室内基于用Ludlum 44 - 9型探测器进行的初步范围调查确定为热点的位置进行伽马剂量率测量。然而,仅在西墙沿线的热点处用光谱仪测量伽马能谱。结果表明,在现已无法运行的回旋加速器中心束流传输线附近,最大伽马剂量率为129±31纳希沃特/小时,约为背景值的2倍。此外,在屏蔽室混凝土墙中痕量的钴和铕的能谱中识别出了伽马发射峰。

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