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Trace detection of explosive compounds by different laser-based techniques at the ENEA Laboratories

机译:通过不同激光的基于eNEA实验室的爆炸化合物痕量检测

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The ENEA Laser Application Section has participated to the European project ISOTREX (Integrated system for on-line trace explosives detection in solid and vapor state), funded in the frame of the PASR 2006 with the main aim to exploit different laser based techniques. Standard explosive compounds and their precursors have been investigated through an atomic technique (LIBS; Laser-Induced Breakdown Spectroscopy), an absorption technique (LPAS; Laser Photoacoustic Spectroscopy) and vibrational techniques (Laser Raman and SERS; Surface-Enhanced Raman Spectroscopy). LIBS and SERS reached a sub ng level of detection, supported by a high rank of discrimination of the components via chemometric analysis. This selectivity skill is also quite evident in the LPAS technique. These results assume particular relevance due to the inclusion of interferents, such as dust, fingerprint oil and lubricant oil, into the investigated compounds. The results of the measurements are presented in view of the possible integration of the three techniques in a single device for trace detection, might contribute also to drastically limit the number of false positives.
机译:ENEA激光应用部分已参与欧洲项目ISOTREX(集成系统,用于固体和蒸气状态的固态爆炸物检测),主要旨在利用基于激光的技术的主要目的。已经通过原子技术(LIBS;激光诱导的击穿光谱)研究了标准爆炸性化合物及其前体,吸收技术(LPA;激光光声光谱)和振动技术(激光拉曼和SERS;表面增强拉曼光谱)。 LIBS和SERS达到了SUB NG检测水平,通过化学计量分析,通过高级别的组分辨别来支持。这种选择性技能在LPA技术中也非常明显。这些结果由于将干涉剂(例如灰尘,指纹油和润滑油)包含到所研究的化合物中,这些结果特别相关。考虑到测量结果,鉴于单个设备中的三种技术的可能集成进行追踪检测,可能还有贡献尺寸限制误报的数量。

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