Chemical Warfare Agents Analyzer Based on Low Cost, Room Temperature, and Infrared Microbolometer Smart Sensors

C. Corsi, A. Dundee, P. Laurenzi, N. Liberatore, D. Luciani, S. Mengali, A. Mercuri, Andrea Pifferi, M. Simeoni, G. Tosone, R. Viola, D. Zintu
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引用次数: 7

Abstract

Advanced IR emitters and sensors are under development for high detection probability, low false alarm rate, and identification capability of toxic gases. One of the most reliable techniques to identify the gas species is absorption spectroscopy, especially in the medium infrared spectral range, where most of existing toxic compounds exhibit their strongest rotovibrational absorption bands. Following the results obtained from simulations and analysis of expected absorption spectra, a compact nondispersive infrared multispectral system has been designed and developed for security applications. It utilizes a few square millimeters thermal source, a novel design multipass cell, and a smart architecture microbolometric sensor array coupled to a linear variable spectral filter to perform toxic gases detection and identification. This is done by means of differential absorption spectroscopic measurements in the spectral range of the midinfrared. Experimental tests for sensitivity and selectivity have been done with various chemical agents (CAs) gases and a multiplicity of vapour organic compounds (VOCs). Detection capability down to ppm has been demonstrated.
基于低成本、室温和红外微辐射热计智能传感器的化学战剂分析仪
先进的红外发射器和传感器正在开发中,以实现高探测概率、低虚警率和有毒气体识别能力。识别气体种类最可靠的技术之一是吸收光谱,特别是在中红外光谱范围内,其中大多数现有的有毒化合物表现出最强的旋转振动吸收带。根据对预期吸收光谱的模拟和分析结果,设计并开发了一种紧凑的非色散红外多光谱系统,用于安全应用。它利用几平方毫米的热源、新颖设计的多通电池和智能架构的微热测量传感器阵列,再加上线性可变光谱滤波器来进行有毒气体的检测和识别。这是通过在中红外光谱范围内的微分吸收光谱测量来完成的。对各种化学试剂(CAs)气体和多种蒸汽性有机化合物(VOCs)进行了灵敏度和选择性的实验测试。检测能力低至ppm已被证明。
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