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Detection of uranyl fluoride and sand surface contamination on metal substrates by hand-held laser-induced breakdown spectroscopy

机译:通过手持激光诱导的击穿光谱检测金属基材上的氟基氟和砂表面污染

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A hand-held device for laser-induced breakdown spectroscopy has been investigated for the determination of uranyl fluoride surface contamination. This research demonstrates the ability to successfully detect uranium on surfaces when using a low resolving power (lambda/Delta lambda = 4000) spectrograph, with a 5 mJ energy per 1 ns pulsed laser radiation, available as a commercially packaged hand-held system. Sand/uranyl fluoride mixtures are prepared to simulate residue likely encountered during decontamination efforts at facilities that handle uranium hexafluoride. Detection limits are described for four uranium lines with one revealing the capability to detect uranium at a level of 250 parts per million. Advantages of the studied compact device include that location specific information can be obtained on-site to augment contamination identification. (c) 2017 Optical Society of America
机译:已经研究了用于激光诱导的击穿光谱的手持装置,用于测定氟烷基氟表面污染。 该研究表明,当使用低分辨率(Lambda / delta Lambda = 4000)光谱仪时,可以在每个1 ns脉冲激光辐射使用5 mj能量时在表面上成功检测铀的能力,可作为商业包装的手持系统。 制备砂/铀酰氟化物混合物以模拟在处理六氟化铀的设施的净化工作中遇到的残留物。 对于四种铀系来描述检测限,其中一个揭示了检测铀的能力,以百万分之250分。 所研究的紧凑型装置的优点包括可以在现场获得特定位置的特定信息以增强污染识别。 (c)2017年光学学会

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