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首页> 外文期刊>Applied optics >2,4,6-TRINITROTOLUENE DETECTION BY LASER-PHOTOFRAGMENTATION-LASER-INDUCED FLUORESCENCE
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2,4,6-TRINITROTOLUENE DETECTION BY LASER-PHOTOFRAGMENTATION-LASER-INDUCED FLUORESCENCE

机译:激光碎裂-激光诱导荧光法检测2,4,6-三氟甲苯

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摘要

Photofragmentation (PF) and subsequent nitric oxide (NO) laser-induced fluorescence (LIF) is being developed to measure the concentration of energetic materials (EM's) in soil and other media. Laser radiation near 226 nm photodissociates gas-phase EM to NO2, which predissociates into NO that gives an intense luminescence. The EM concentration is inferred from the intensity of the NO fluorescence. We have studied the factors that affect the PF-LIF signal intensity, including the effect of buffer gas on the LIF spectrum of pure NO, the effect of 2,4,6-trinitrotoluene (TNT) pressure on the PF-LIF spectrum, the effect of buffer-gas pressure on the PF-LIF signal intensity of pure TNT, and the effect of temperature on the PF-LIF spectra of pure TNT and of TNT in simulated soil. Heating of the TNT sample above 343 K was found to increase the magnitude of the PF-LIF signal intensity significantly, but also was found to cause physical and chemical changes in the TNT sample. The effects of heating and evacuating on the TNT sample were investigated. TNT concentration calibration curves were obtained for TNT in simulated soil mixtures. The limit of detection of TNT in soil was estimated to be 40 parts in 10(9). [References: 17]
机译:光碎裂(PF)和随后的一氧化氮(NO)激光诱导的荧光(LIF)正在开发中,以测量土壤和其他介质中高能物质(EM)的浓度。 226 nm附近的激光辐射将气相EM光解离为NO2,然后将其预分解为NO,从而产生强烈的发光。 EM浓度由NO荧光强度推断得出。我们研究了影响PF-LIF信号强度的因素,包括缓冲气体对纯NO的LIF谱图的影响,2,4,6-三硝基甲苯(TNT)压力对PF-LIF谱图的影响,缓冲气体压力对纯TNT的PF-LIF信号强度的影响,以及温度对模拟土壤中纯TNT和TNT的PF-LIF谱的影响。发现将TNT样品加热到343 K以上会显着增加PF-LIF信号强度的幅度,但还会引起TNT样品的物理和化学变化。研究了加热和抽空对TNT样品的影响。获得了模拟土壤混合物中TNT的TNT浓度校准曲线。 10(9)中估计土壤中TNT的检出限为40份。 [参考:17]

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