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Simultaneous atmospheric nitrous oxide, methane and water vapor detection with a single continuous wave quantum cascade laser

机译:使用单个连续波量子级联激光器同时检测大气中的一氧化二氮,甲烷和水蒸气

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摘要

A continuous wave (CW) quantum cascade laser (QCL) based absorption sensor system was demonstrated and developed for simultaneous detection of atmospheric nitrous oxide (N2O), methane (CH4), and water vapor (H2O). A 7.73-µm CW QCL with its wavelength scanned over a spectral range of 1296.9-1297.6 cm−1 was used to simultaneously target three neighboring strong absorption lines, N2O at 1297.05 cm−1, CH4 at 1297.486 cm−1, and H2O at 1297.184 cm−1. An astigmatic multipass Herriott cell with a 76-m path length was utilized for laser based gas absorption spectroscopy at an optimum pressure of 100 Torr. Wavelength modulation and second harmonic detection was employed for data processing. Minimum detection limits (MDLs) of 1.7 ppb for N2O, 8.5 ppb for CH4, and 11 ppm for H2O were achieved with a 2-s integration time for individual gas detection. This single QCL based multi-gas detection system possesses applications in environmental monitoring and breath analysis.
机译:演示并开发了基于连续波(CW)量子级联激光器(QCL)的吸收传感器系统,用于同时检测大气中的一氧化二氮(N2O),甲烷(CH4)和水蒸气(H2O)。使用波长为1296.9-1297.6 cm-1的7.73 µm CW QCL波长同时靶向三个相邻的强吸收线,N2O为1297.05 cm-1,CH4为1297.486 cm-1,H2O为1297.184。厘米-1。在100托的最佳压力下,将光程为76米的散光多通道Herriott池用于基于激光的气体吸收光谱法。波长调制和二次谐波检测被用于数据处理。 N2O的最低检出限(MDL)为1.7 ppb,CH4的最低检出限为8.5 ppb,H2O的最低检出限为2 s,积分时间为2 s用于单个气体检测。这种基于QCL的单一多气体检测系统可用于环境监测和呼吸分析。

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