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Characterising radium-226 particles from legacy contamination to support radiation dose assessments

机译:从遗留污染物中鉴定镭226粒子,以支持辐射剂量评估

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摘要

Radioactive particles are physically discrete sources of radioactivity that have been released into the environment as a result of past emergencies, events and practices. As the release of radioactive particles is often unplanned, the source term has not been characterised, and the potential radiation doses have not been prospectively assessed. If a plausible exposure pathway exists, radioactive particles in the environment may present a hazard to the public depending on their radiological, physical and chemical characteristics. Given their physically discrete nature, standard assessment approaches such as dispersion and transfer modelling of liquid and gaseous radioactive releases, are not appropriate for radioactive particles. The challenge for national regulatory authorities is to calculate potential radiation doses from unplanned releases of radioactive particles into the environment, assess whether the doses are relevant to radiological protection and decide whether actions are required to reduce potential doses. To address this challenge, this paper presents the approach being adopted to radiologically, physically and chemically characterise Ra-226 particles from a contaminated legacy site using gamma spectrometry, optical macroscopy and SEM-EDS. The use of particle characterisation data to support radiation dose assessments is discussed and consideration is given to radioactive particles in the context of radiological protection.
机译:放射性颗粒是由于过去的紧急情况,事件和实践而释放到环境中的物理上离散的放射源。由于放射性粒子的释放通常是无计划的,因此未对源术语进行表征,并且未对潜在的辐射剂量进行前瞻性评估。如果存在合理的暴露途径,则环境中的放射性粒子可能会根据其放射,物理和化学特性对公众构成危害。鉴于其物理上的离散性质,标准评估方法(例如液态和气态放射性释放的扩散和转移模型)不适用于放射性颗粒。国家监管机构面临的挑战是从计划外的放射性粒子向环境中的释放计算潜在的辐射剂量,评估剂量是否与放射防护有关,并决定是否需要采取措施降低潜在剂量。为了应对这一挑战,本文介绍了采用伽玛光谱,光学宏观和SEM-EDS对受污染遗留场所的Ra-226粒子进行放射,物理和化学表征的方法。讨论了使用粒子表征数据来支持辐射剂量评估,并在放射防护范围内考虑了放射性粒子。

著录项

  • 来源
    《Journal of Environmental Radioactivity》 |2020年第2期|106127.1-106127.9|共9页
  • 作者

  • 作者单位

    Univ Stirling Fac Nat Sci Biol & Environm Sci Stirling FK9 4LA Scotland|Scottish Environm Protect Agcy Strathallan House Castle Business Pk Stirling FK9 4TZ Scotland;

    Scottish Environm Protect Agcy Strathallan House Castle Business Pk Stirling FK9 4TZ Scotland;

    Univ Stirling Fac Nat Sci Biol & Environm Sci Stirling FK9 4LA Scotland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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