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Selective measurements of NO, NO2 and NOy in the free troposphere using quantum cascade laser spectroscopy

机译:使用量子级联激光光谱法选择性测量自由对流层中的NO,NO2和NOy

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摘要

A quantum cascade laser based absorption spectrometer for continuous and direct measurements of NO and NO was employed at the high-altitude monitoring site Jungfraujoch (3580 m a.s.l., Switzerland) during a three-month campaign in spring/summer 2012. The total reactive nitrogen, NO, was also measured in the form of NO after conversion on a gold catalyst. The aim was to assess the suitability of the instrument for long-term monitoring of the main reactive nitrogen species under predominantly free tropospheric air conditions. A precision (1σ) of 10 and 3 ppt for NO and NO was achieved under field conditions after 180 s averaging time. The linear dynamic range of the instrument has been verified for both species from the detection limit up to 45 ppb. The spectrometer shared a common sampling inlet with a chemiluminescence-based analyzer. The comparison of the time series shows excellent agreement between the two techniques and demonstrates the adequacy of the laser spectroscopic approach for this kind of demanding environmental applications.
机译:在2012年春夏的三个月中,高海拔监测站点Jungfraujoch(瑞士3580 m asl)使用了一种基于量子级联激光的吸收光谱仪,用于连续和直接测量NO和NO。在金催化剂上转化后,也以NO的形式测量NO。目的是评估该仪器对主要在对流层自由空气条件下长期监测主要活性氮物质的适用性。经过180 s的平均时间后,在野外条件下,NO和NO的精度(1σ)分别为10和3 ppt。从检出限到45 ppb,这两种物质的仪器线性动态范围都得到了验证。光谱仪与基于化学发光的分析仪共用一个公共进样口。时间序列的比较显示了两种技术之间的极好的一致性,并证明了激光光谱方法对于这种要求苛刻的环境应用的适当性。

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