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Development of a photofragmentation laser-induced-fluorescence laser sensor for detection of 2,4,6-trinitrotoluene in soil and groundwater

机译:光碎裂激光诱导荧光激光传感器的开发,用于检测土壤和地下水中的2,4,6-三硝基甲苯

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摘要

Laser photofragmentation (PF) and subsequent nitric oxide (NO) laser-induced fluorescence (LIF) have been developed to measure the concentration of energetic materials (EM's), such as 2,4,6-trinitrotoluene (TNT), in soil and other media. Gas-phase EM's photodissociate, releasing NO_(2), when exposed to laser radiation near 226 nm. Laser-excited NO_(2) predissociates to form NO that gives an intense fluorescence when excited near 226 nm. The EM concentration is inferred from the intensity of the NO fluorescence. A PF-LIF laser-based sensor is being developed to be used with the U.S. Army Corps of Engineers' Waterways Experiment Station's cone penetrometer to measure in situ the concentration of subsurface TNT. Several factors that affect the PF-LIF signal waveforms, such as sample temperature, laser power, and heating time, were investigated. Also, effects on the PF-LIF signal of adding water and fertilizer to the TNT mixtures were studied. Decay times were determined by least-squares fitting of the exponential PF-LIF signal waveforms. The use of PF-LIF waveforms promises to enable diagnostics of the sample's characteristics that would otherwise not be possible in situ.
机译:激光光碎裂(PF)和随后的一氧化氮(NO)激光诱导的荧光(LIF)已被开发出来,用于测量土壤和其他物质中高能物质(EM's)的浓度,例如2,4,6-三硝基甲苯(TNT)媒体。气相EM的光解离,当暴露于226 nm附近的激光辐射时释放NO_(2)。激光激发的NO_(2)预先离解形成NO,当在226 nm附近激发时,NO发出强烈的荧光。 EM浓度由NO荧光强度推断得出。目前正在开发一种基于PF-LIF激光的传感器,该传感器可与美国陆军工程兵航道实验站的锥形渗透仪一起使用,以现场测量地下TNT的浓度。研究了影响PF-LIF信号波形的几个因素,例如样品温度,激光功率和加热时间。此外,还研究了向TNT混合物中添加水和肥料对PF-LIF信号的影响。衰减时间由指数PF-LIF信号波形的最小二乘拟合确定。 PF-LIF波形的使用有望实现对样品特性的诊断,否则将无法在原位进行诊断。

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