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Standoff detection of VOCs using external cavity quantum cascade laser spectroscopy

机译:使用外腔量子级联激光谱检测VOC的立场检测

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Broadband tunable external cavity quantum cascade lasers (ECQCLs) have emerged as attractive laser sources for mid-infrared spectroscopic applications to detect various chemical agents. Here we report on the development of a pulsed, broadband ECQCL-based sensor for open-path sensing multiple volatile organic compounds (VOCs). Instead of using a standard infrared mercury cadmium telluride detector, a quartz crystal tuning fork with a high resonant frequency (similar to 75 kHz) was used as a light detector for laser signal collection. For signal processing, a self-established spectral analysis model integrated with 1D cubic spline interpolation algorithm, multiple linear regression algorithm and fast Fourier transform was developed for quantitative and qualitative analysis of VOC components. The ECQCL sensor was successfully demonstrated for the stand-off detection of three VOCs mixing plume (i.e. ethanol, acetone and diethyl ether) at a distance of 40 m, proving its applicability for leak plumes in security fields.
机译:宽带可调外腔量子级联激光器(ECQCLS)被出现为用于中红外光谱应用的吸引力来源,以检测各种化学试剂。在这里,我们报告了用于开放路径检测多挥发性有机化合物(VOC)的开放路径检测的基于脉冲的基于脉冲的脉冲的脉冲的传感器。代替使用标准红外汞碲化镉检测器,用高谐振频率(类似于75 kHz)的石英晶晶叉作为激光信号收集的光检测器。对于信号处理,开发了一种与1D立方样条插值算法集成的自建立光谱分析模型,用于多个线性回归算法和快速傅里叶变换,用于VOC部件的定量和定性分析。 ECQCL传感器成功地证明了在40μm的距离处的三个VOCS混合羽毛(即乙醇,丙酮和乙醚)的脱扣检测,证明了其在安全领域的泄漏羽毛的适用性。

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