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Ppbv-Level Ethane Detection Using Quartz-Enhanced Photoacoustic Spectroscopy with a Continuous-Wave Room Temperature Interband Cascade Laser

机译:使用连续波室温带间级联激光器的石英增强光声光谱法检测Ppbv级乙烷

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摘要

A ppbv-level quartz-enhanced photoacoustic spectroscopy (QEPAS)-based ethane (C2H6) sensor was demonstrated by using a 3.3 μm continuous-wave (CW), distributed feedback (DFB) interband cascade laser (ICL). The ICL was employed for targeting a strong C2H6 absorption line located at 2996.88 cm−1 in its fundamental absorption band. Wavelength modulation spectroscopy (WMS) combined with the second harmonic (2f) detection technique was utilized to increase the signal-to-noise ratio (SNR) and simplify data acquisition and processing. Gas pressure and laser frequency modulation depth were optimized to be 100 Torr and 0.106 cm−1, respectively, for maximizing the 2f signal amplitude. Performance of the QEPAS sensor was evaluated using specially prepared C2H6 samples. A detection limit of 11 parts per billion in volume (ppbv) was obtained with a 1-s integration time based on an Allan-Werle variance analysis, and the detection precision can be further improved to ~1.5 ppbv by increasing the integration time up to 230 s.
机译:通过使用3.3μm连续波(CW),分布式反馈(DFB)带间级联激光(ICL)演示了基于ppbv级石英的光声光谱(QEPAS)基乙烷(C2H6)传感器。使用ICL靶向强C2H6吸收线,该吸收线位于其基本吸收带中的2996.88 cm -1 。波长调制光谱(WMS)与二次谐波(2f)检测技术结合使用,可提高信噪比(SNR)并简化数据采集和处理。将气压和激光调频深度分别优化为100 Torr和0.106 cm -1 ,以最大化2f信号幅度。使用特制的C2H6样品评估QEPAS传感器的性能。基于Allan-Werle方差分析,以1-s积分时间获得了十亿分之11的检测限(ppbv),并且可以通过将积分时间增加到最大来将检测精度进一步提高到〜1.5 ppbv。 230秒

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