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用于使用量子级联激光器同时测量大气中一氧化二氮和一氧化碳的紧凑型便携式开放路径传感器。

Compact and portable open-path sensor for simultaneous measurements of atmospheric N2O and CO using a quantum cascade laser.

作者信息

Tao Lei, Sun Kang, Khan M Amir, Miller David J, Zondlo Mark A

机构信息

Department of Civil and Environmental Engineering, Princeton University, Princeton, New Jersey 08544, USA.

出版信息

Opt Express. 2012 Dec 17;20(27):28106-18. doi: 10.1364/OE.20.028106.

Abstract

A compact and portable open-path sensor for simultaneous detection of atmospheric N(2)O and CO has been developed with a 4.5 μm quantum cascade laser (QCL). An in-line acetylene (C(2)H(2)) gas reference cell allows for continuous monitoring of the sensor drift and calibration in rapidly changing field environments and thereby allows for open-path detection at high precision and stability. Wavelength modulation spectroscopy (WMS) is used to detect simultaneously both the second and fourth harmonic absorption spectra with an optimized dual modulation amplitude scheme. Multi-harmonic spectra containing atmospheric N(2)O, CO, and the reference C(2)H(2) signals are fit in real-time (10 Hz) by combining a software-based lock-in amplifier with a computationally fast numerical model for WMS. The sensor consumes ~50 W of power and has a mass of ~15 kg. Precision of 0.15 ppbv N(2)O and 0.36 ppbv CO at 10 Hz under laboratory conditions was demonstrated. The sensor has been deployed for extended periods in the field. Simultaneous N(2)O and CO measurements distinguished between natural and fossil fuel combustion sources of N(2)O, an important greenhouse gas with poorly quantified emissions in space and time.

摘要

一种用于同时检测大气中一氧化二氮(N₂O)和一氧化碳(CO)的紧凑型便携式开放路径传感器已采用4.5微米量子级联激光器(QCL)研制成功。一个在线乙炔(C₂H₂)气体参考池可在快速变化的野外环境中对传感器漂移进行连续监测和校准,从而实现高精度和高稳定性的开放路径检测。波长调制光谱法(WMS)采用优化的双调制幅度方案同时检测二次和四次谐波吸收光谱。通过将基于软件的锁相放大器与用于WMS的计算速度快的数值模型相结合,实时(10赫兹)拟合包含大气中N₂O、CO和参考C₂H₂信号的多谐波光谱。该传感器功耗约50瓦,质量约15千克。在实验室条件下,在10赫兹时,N₂O的精度为0.15 ppbv,CO的精度为0.36 ppbv。该传感器已在野外长期部署。同时进行的N₂O和CO测量区分了N₂O的天然源和化石燃料燃烧源,N₂O是一种重要的温室气体,其排放量在空间和时间上的量化程度很低。

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