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用于国防和法医学应用的可疑物体光声遥测。

Photoacoustic remote sensing of suspicious objects for defence and forensic applications.

机构信息

Laser Science and Technology Centre, DRDO, Delhi 110054, India.

Laser Science and Technology Centre, DRDO, Delhi 110054, India.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2020 Jan 5;224:117445. doi: 10.1016/j.saa.2019.117445. Epub 2019 Jul 30.

Abstract

Quantum cascade laser (QCL) based photoacoustic spectroscopic technique has been developed for detection of hazardous molecules contaminants/adsorbed on surfaces such as plastic and cloth from short standoff distances. The laser source and detection system is integrated together in a single unit. Spectra were recorded for traces of various molecules in mid-infrared spectral band (1130-1430 cm) from distance of 0.5 m. Pulsed quantum cascade laser source, modulated at 25 kHz and 42 kHz frequency was used to detect molecular species adsorbed on surfaces of cloth and plastic. Ultrasonic microphones operating at 25 and 42 kHz resonant frequencies were used as detectors. The photoacoustic spectra of hazardous chemicals, explosive materials and bio-chemicals such as acetic acid, PETN (pentaerythritol tetranitrate), DPA (dipicolinic acid) in very low quantities were recorded. Sensitivities of 5 and 10 μg/cm of these analytes were achieved with frequencies of 25 and 42 kHz respectively at distance of 0.5 m. In the present technique there was no interference of audio frequency (20 Hz to 20 kHz) and bright sunlight. The technique can be applied for screening of suspicious objects for homeland security and forensic applications. The present spectroscopic technique can be developed in man portable standalone product.

摘要

基于量子级联激光(QCL)的光声光谱技术已经发展用于检测从短距离吸附在塑料和布等表面上的危险分子污染物。激光源和检测系统集成在一个单元中。从 0.5 米的距离记录了中红外光谱带(1130-1430cm)中各种分子的痕量光谱。使用脉冲量子级联激光源,以 25kHz 和 42kHz 的频率进行调制,以检测吸附在布和塑料表面上的分子种类。使用工作在 25 和 42kHz 谐振频率的超声麦克风作为探测器。记录了危险化学品、爆炸物和生物化学物质如乙酸、PETN(季戊四醇四硝酸酯)、DPA(二吡啶酸)的光声光谱,这些分析物的浓度非常低。在 0.5 米的距离处,分别以 25kHz 和 42kHz 的频率实现了这些分析物的 5 和 10μg/cm 的灵敏度。在目前的技术中,没有音频频率(20Hz 至 20kHz)和强光的干扰。该技术可用于国土安全和法医应用中的可疑物体筛查。目前的光谱技术可以开发成便携式独立产品。

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