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FTIR-based air monitoring system with improved sensitivity and selectivity for Homeland Security applications

机译:基于FTIR的空气监测系统,具有更高的灵敏度和选择性,适用于国土安全应用

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This presentation describes the use of an FTIR (Fourier Transform Infrared)-based spectrometer designed to continuously monitor ambient air for the presence of chemical warfare agents (CWAs) and toxic industrial chemicals (TICs). The necessity of a reliable system capable of quickly and accurately detecting very low levels of CWAs and TICs while simultaneously retaining a negligible false alarm rate will be explored. Technological advancements in FTIR sensing have reduced noise while increasing selectivity and speed of detection. The hardware and algorithms described here will explain why this FTIR system is very effective for the simultaneous detection and speciation of a wide variety of toxic compounds at ppb concentrations. Analytical test data will be reviewed demonstrating the system's sensitivity to and selectivity for specific CWAs and TICs. These results include analyses of data from live agent testing for the determination of detection limits, immunity to interferences, detection times, and false alarm rates. Sensing systems such as this are critical for effective chemical hazard identification which is directly relevant to the Homeland Security community.
机译:该介绍描述了使用FTIR(傅里叶变换红外线)的光谱仪设计,该光谱仪设计成连续监测用于化学疟原虫(CWAS)和有毒工业化学品(TICS)的环境空气。探索能够快速准确地检测非常低水平的CWA和TICS的可靠系统的必要性,同时保留可忽略的误报率。 FTIR传感的技术进步在增加选择性和检测速度的同时具有降低的噪声。这里描述的硬件和算法将解释为什么该FTIR系统对于在PPB浓度下同时检测和物种的同时检测和改性。分析测试数据将被审查,证明系统对特定CWA和TICS的灵敏度和选择性。这些结果包括从实时代理测试中的数据分析,以确定检测限,抗扰度,检测时间和误报率的免疫力。传感系统,如这对有效化学危害识别至关重要,这些危害识别与国土安全界直接相关。

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