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Investigation of storage-phosphor autoradiography for the rapid quantitative screening of air filters for emergency response purposes.

机译:研究储磷自显影技术,以快速定量筛选空气过滤器,以进行应急响应。

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摘要

Past nuclear accidents, such as Chernobyl, resulted in a large release of radionuclides into the atmosphere. Radiological assessment of the vicinity of the site of the incident is vital to assess the exposure levels and dose received by the population and workers. Therefore, it is critical to thoroughly understand the situation and risks associated with a particular event in a timely manner in order to properly manage the event. Current atmospheric radiological assessments of alpha emitting radioisotopes include acquiring large quantities of air samples, chemical separation of radionuclides, sample mounting, counting through alpha spectrometry, and analysis of the data. The existing methodology is effective, but time consuming and labor intensive. Autoradiography, and the properties of phosphor imaging films, may be used as an additional technique to facilitate and expedite the alpha analysis process in these types of situations. Although autoradiography is not as sensitive to alpha radiation as alpha spectrometry, autoradiography may benefit alpha analysis by providing information about the activity as well as the spatial distribution of radioactivity in the sample under investigation. The objective for this research was to develop an efficient method for quantification and visualization of air filter samples taken in the aftermath of a nuclear emergency through autoradiography using 241Am and 239Pu tracers.;Samples containing varying activities of either 241Am or 239Pu tracers were produced through microprecipitation and assayed by alpha spectroscopy. The samples were subsequently imaged and an activity calibration curve was produced by comparing the digital light units recorded from the image to the known activity of the source. The usefulness of different phosphor screens was examined by exposing each type of film to the same standard nuclide for varying quantities of time. Unknown activity samples created through microprecipiation containing activities of either 241Am or 239Pu as well as air filters doped with beta and alpha emitting nuclides were imaged and activities were determined by comparing the image to the activity calibration curve.
机译:过去的核事故,例如切尔诺贝利核事故,导致放射性核素大量释放到大气中。事故现场附近的放射学评估对于评估人群和工人的暴露水平和剂量至关重要。因此,至关重要的是及时透彻地了解与特定事件相关的情况和风险,以便适当地管理事件。对α发射放射性同位素的当前大气放射学评估包括获取大量空气样品,放射性核素的化学分离,样品安装,通过α光谱法进行计数以及数据分析。现有方法是有效的,但是耗时且劳动密集。放射自显影以及磷光体成像膜的特性可以用作在这些类型的情况下促进和加快alpha分析过程的附加技术。尽管放射自显影对α辐射的敏感性不如alpha光谱法,但放射自显影可能会通过提供有关所研究样品中的放射性活度以及空间分布的信息,而使alpha分析受益。这项研究的目的是开发一种有效的方法,通过使用241Am和239Pu示踪剂进行放射自显影,对发生核事故后的空气过滤器样品进行量化和可视化;通过微沉淀生产出包含241Am或239Pu示踪剂活性不同的样品。并通过α光谱法测定。随后对样品进行成像,并通过比较从图像记录的数字光单位与光源的已知活性来生成活性校准曲线。通过将每种类型的膜暴露在相同的标准核素中不同的时间,来检查不同荧光屏的有效性。通过微沉淀产生的未知活性样品(包含241Am或239Pu的活性)以及掺有β和α发射核素的空气过滤器被成像,并通过将图像与活性校准曲线进行比较来确定活性。

著录项

  • 作者

    Gallardo, Athena Marie.;

  • 作者单位

    University of Nevada, Las Vegas.;

  • 授予单位 University of Nevada, Las Vegas.;
  • 学科 Physics Radiation.;Health Sciences Public Health.;Environmental Studies.;Chemistry Nuclear.
  • 学位 M.S.
  • 年度 2013
  • 页码 101 p.
  • 总页数 101
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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