Quartz Enhanced Photoacoustic Spectroscopy for Detection of Improvised Explosive Devices and Precursors

R. Viola, N. Liberatore, D. Luciani, S. Mengali
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引用次数: 8

Abstract

A compact portable and standalone point sensor has been developed for the detection and identification of precursors of improvised explosive devices (IEDs) and to be part of a network of sensors for the discovery of hidden bomb factories in homeland security applications. The sensor is based on quartz enhanced photoacoustic spectroscopy (QEPAS), and it implements a broadly tunable external cavity quantum cascade laser source (EC-QCL). It makes use of an optical cell purposely designed with a miniaturized internal volume, to achieve fast response and high sensitivity, and that can also be heated to improve sensitivity towards less volatile compounds. The sensor has been assembled and successfully tested in the lab with several compounds, including IED’s precursors such as acetone, nitromethane, nitric acid, and hydrogen peroxide. The identification capability and limits of detection near the ppm level have been estimated for all these compounds.
用于检测简易爆炸装置和前体的石英增强光声光谱
一种小型便携式独立点传感器已经开发出来,用于检测和识别简易爆炸装置(ied)的前体,并成为在国土安全应用中发现隐藏炸弹工厂的传感器网络的一部分。该传感器基于石英增强光声光谱(QEPAS),实现了宽可调谐外腔量子级联激光源(EC-QCL)。它利用了一个专门设计的光学电池,内部体积小型化,以实现快速响应和高灵敏度,也可以加热,以提高对低挥发性化合物的灵敏度。该传感器已经组装完成,并在实验室中成功地用几种化合物进行了测试,包括IED的前体,如丙酮、硝基甲烷、硝酸和过氧化氢。对所有这些化合物在ppm水平附近的鉴定能力和检出限进行了估计。
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