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Methodology Using a Portable X-Ray Fluorescence Device for On-Site and Rapid Evaluation of Heavy-Atom Contamination in Wounds: A Model Study for Application to Plutonium Contamination

机译:在现场使用便携式X射线荧光设备进行方法学并快速评估伤口中的重原子污染:应用于P污染的模型研究

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摘要

Workers decommissioning the Fukushima-Daiichi nuclear power plant damaged from the Great East Japan Earthquake and resulting tsunami are at risk of injury with possible contamination from radioactive heavy atoms including actinides, such as plutonium. We propose a new methodology for on-site and rapid evaluation of heavy-atom contamination in wounds using a portable X-ray fluorescence (XRF) device. In the present study, stable lead was used as the model contaminant substitute for radioactive heavy atoms. First, the wound model was developed by placing a liquid blood phantom on an epoxy resin wound phantom contaminated with lead. Next, the correlation between the concentration of contaminant and the XRF peak intensity was formulated considering the thickness of blood exiting the wound. Methods to determine the minimum detection limit (MDL) of contaminants at any maximal equivalent dose to the wound by XRF measurement were also established. For example, in this system, at a maximal equivalent dose of 16.5 mSv to the wound and blood thickness of 0.5 mm, the MDL value for lead was 1.2 ppm (3.1 nmol). The radioactivity of 239Pu corresponding to 3.1 nmol is 1.7 kBq, which is lower than the radioactivity of 239Pu contaminating puncture wounds in previous severe accidents. In conclusion, the established methodology could be beneficial for future development of a method to evaluate plutonium contamination in wounds. Highlights: Methodology for evaluation of heavy-atom contamination in a wound was established. A portable X-ray fluorescence device enables on-site, rapid and direct evaluation. This method is expected to be used for evaluation of plutonium contamination in wounds.
机译:使因东日本大地震而受损的福岛第一核电站退役并导致海啸的工人面临受伤危险,可能受到with等放射性重原子(例如contamination)的污染。我们提出了一种新的方法,用于使用便携式X射线荧光(XRF)设备现场快速评估伤口中的重原子污染。在本研究中,稳定的铅被用作放射性重原子的模型污染物替代品。首先,通过将液态血液体模放置在被铅污染的环氧树脂伤口体模上来开发伤口模型。接下来,考虑到流出伤口的血液厚度,确定了污染物浓度与XRF峰值强度之间的相关性。还建立了通过XRF测量来确定伤口的任何最大当量剂量下污染物的最小检测限(MDL)的方法。例如,在该系统中,在伤口的最大当量剂量为16.5 mSv且血液厚度为0.5 mm时,铅的MDL值为1.2 ppm(3.1 nmol)。对应于3.1 nmol的 239 Pu的放射性为1.7 kBq,低于先前严重事故中污染 239 Pu的穿刺伤口的放射性。总之,所建立的方法学可能有助于将来评估伤口中contamination污染的方法。重点:建立了评估伤口中重原子污染的方法。便携式X射线荧光设备可实现现场,快速和直接的评估。该方法有望用于评估伤口中的contamination污染。

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