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Long optical cavities for open-path monitoring of atmospheric trace gases and aerosol extinction

机译:长光腔,用于开放路径监测大气中的痕量气体和气溶胶消光

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摘要

An incoherent broadband cavity-enhanced absorption spectroscopy setup employing a 20 m long optical cavity is described for sensitive in situ measurements of light extinction between 630 and 690 nm. The setup was installed at the SAPHIR atmospheric simulation chamber during an intercomparison of instruments for nitrate (NO_(3)) radical detection. The long cavity was stable for the entire duration of the two week campaign. A detection limit of approx2 pptv for NO_(3) in an acquisition time of 5 s was established during that time. In addition to monitoring NO_(3), nitrogen dioxide (NO_(2)) concentrations were simultaneously retrieved and compared against concurrent measurements by a chemiluminescence detector. Some results from the campaign are presented to demonstrate the performance of the instrument in an atmosphere containing water vapor and inorganic aerosol. The spectral analysis of NO_(3) and NO_(2), the concentration dependence of the water absorption cross sections, and the retrieval of aerosol extinction are discussed. The first deployment of the setup in the field is also briefly described.
机译:描述了采用20 m长的光学腔的非相干宽带腔增强吸收光谱仪,用于在630至690 nm之间消光的灵敏的原位测量。在对硝酸盐(NO_(3))自由基检测仪器进行比对期间,将安装程序安装在SAPHIR大气模拟室中。在为期两周的运动中,长腔保持稳定。在此期间内,在5 s的采集时间内确定了NO_(3)的检出限约为2 pptv。除了监视NO_(3)之外,还同时检索二氧化氮(NO_(2))的浓度,并与化学发光检测器的同时测量值进行比较。该活动的一些结果被展示出来,以证明该仪器在含有水蒸气和无机气溶胶的气氛中的性能。讨论了NO_(3)和NO_(2)的光谱分析,吸水截面的浓度依赖性以及气溶胶消光的恢复。还简要介绍了该设置在现场的首次部署。

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