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Detection of Nitro-aromatic Compound in Soil and Sand using Time Gated Raman Spectroscopy

机译:使用时间门控拉曼光谱法检测土壤和砂中的硝基芳族化合物

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Laser based time-gated Raman Spectroscopy experiments for detection and identification of nitro-aromatic sample which premixed with soil and sand in different concentrations are conducted. A back-scattered stand-off Raman spectroscopy set-up using a frequency double Nd:YAG pulsed laser (532 nm, 8 ns, 10 Hz) was employed to evaluate samples made up of standard nitro- aromatic compounds, p-nitro Benzoic acid (PNBA) premixed with soil and sand at different concentrations. A sensitive ICCD detector was used to capture the weak Raman signals buried in high background noise at optimised experiments parameters like laser pulse energy, ICCD gate width, background subtraction, number of laser pulses averaging etc. p- nitro benzoic acid up to 5 per cent (v/v) concentration in sand with appreciable signal to noise ratio has been detected. This feasibility study also becomes relevant to evaluate the remnants for post-blast detection of explosives in terrorist attack as most of the explosives used in such attacks contain nitro-aromatic based high energetic explosives.
机译:进行激光的硝基芳族样品的检测和鉴定的基于激光的时间门式拉曼光谱实验,其用不同浓度的土壤和砂进行预混合。使用频率双Nd:YAG脉冲激光(532nm,8ns,10Hz)的后散脱离拉曼光谱设置,评价由标准硝基芳族化合物,对硝基苯甲酸组成的样品(pnba)用不同浓度的土壤和沙子预混合。敏感的ICCD检测器用于捕获在优化的实验参数的高背景噪声中掩埋的弱拉曼信号,如激光脉冲能量,ICCD栅极宽度,背景减法,激光脉冲的数量平均值等.P- Nitro苯甲酸高达5% (v / v)浓度在砂中具有明显的信噪比。这种可行性研究也与评估恐怖主义攻击后爆炸物后爆炸物的遗留性的相关性,因为这种攻击中使用的大多数爆炸物含有硝基芳族的高能量炸药。

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