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A Sensitive Carbon Dioxide Sensor Based on Photoacoustic Spectroscopy with a Fixed Wavelength Quantum Cascade Laser

机译:固定波长量子级联激光器的基于光声光谱的灵敏二氧化碳传感器

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摘要

A photoacoustic spectroscopy (PAS) based carbon dioxide (CO ) sensor with a fixed wavelength quantum cascade laser (FW-QCL) was demonstrated. The emission wavelength of the FW-QCL at 4.42 μm in the mid-infrared spectral region matched a fundamental CO absorption line. Amplitude modulation of the laser intensity was used to match the resonant photoacoustic (PA) cell. The noise from the background was reduced with the correlation demodulation technique. The experimental results showed that the sensor had excellent signal stability and a concentration linear response. When the integration time was 1 s, a 1σ minimum detection limit (MDL) of 2.84 parts per million (ppm) for CO detection was achieved. The long-term stability of the sensor was evaluated by means of an Allan deviation analysis. With an integration time of ~100 s, the MDL was improved to 1 ppm. This sensor was also used to measure the CO concentration from some common emission sources, such as cigarette smoking, automobile exhaust, and the combustion of some carbon-containing materials, which confirmed the stability and robustness of the reported FW-QCL based CO -PAS sensor system.
机译:演示了具有固定波长量子级联激光器(FW-QCL)的基于光声光谱(PAS)的二氧化碳(CO)传感器。 FW-QCL在中红外光谱区的发射波长为4.42μm,与基本的CO吸收线匹配。激光强度的振幅调制用于匹配共振光声(PA)电池。通过相关解调技术可以降低背景噪声。实验结果表明,该传感器具有良好的信号稳定性和浓度线性响应。当积分时间为1 s时,CO检测的1σ最小检出限(MDL)为2.84百万分之一(ppm)。传感器的长期稳定性通过艾伦偏差分析进行了评估。约100 s的积分时间将MDL提高到1 ppm。该传感器还用于测量一些常见排放源(例如吸烟,汽车尾气和某些含碳材料的燃烧)中的CO浓度,这证实了已报道的基于FW-QCL的CO -PAS的稳定性和耐用性传感器系统。

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