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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Detection of explosives in traces by laser induced breakdown spectroscopy: Differences from organic interferents and conditions for a correct classification
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Detection of explosives in traces by laser induced breakdown spectroscopy: Differences from organic interferents and conditions for a correct classification

机译:激光诱导击穿光谱法检测痕量爆炸物:与有机干扰物的区别以及正确分类的条件

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摘要

With the aim to study and to improve LIBS capability for detecting residues of energetic compounds in air surrounding, nine types of explosives and some potential interferents, placed in small quantities on a metallic support, were interrogated by a laser. Shot-to-shot behavior of the line intensities relative to the sample constituents was studied. The detected plasma was not stoichiometric and the line intensities, as well as their ratios, were changing even for an order of magnitude from one sampling point to another, particularly in the case of aromatic compounds. We explained some sources of such UBS signal's behavior and this allowed us to establish a data processing procedure, which leads to a good linearization among the data sets. In this way, it was possible to determine some real differences between the LIBS spectra from explosives and interferents, and to correlate them with molecular formulas, with some known pathways for the molecule's decomposition and with successive chemical reactions in the plasma. Number spectral parameters, which distinguish the each studied explosive from other organic materials, were also determined and compared with previously published results relative to percentages of correct classifications for the same explosives. Experimental conditions for reliable recognition of the explosives by LIBS in air are also suggested, together with the parameters that should be considered or discarded from the classification procedure.
机译:为了研究和提高LIBS检测周围空气中高能化合物残留的能力,用激光询问了少量放置在金属支架上的9种爆炸物和一些潜在的干扰物。研究了线强度相对于样品成分的逐次行为。检测到的血浆不是化学计量的,并且线强度及其比率甚至从一个采样点到另一个采样点变化了一个数量级,特别是在芳香族化合物的情况下。我们解释了此类UBS信号行为的一些来源,这使我们能够建立数据处理程序,从而导致数据集之间的线性良好。通过这种方式,可以确定炸药和干扰物的LIBS光谱之间的某些实际差异,并将它们与分子式,分子分解的已知途径以及等离子体中的后续化学反应相关联。还确定了将每种研究的炸药与其他有机材料区分开的数字光谱参数,并将其与先前发表的相对于同一炸药正确分类百分比的结果进行比较。还提出了通过空气中的LIBS可靠识别爆炸物的实验条件,以及应该从分类程序中考虑或丢弃的参数。

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