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Single-photon laser-induced fluorescence detection of nitric oxide at sub-parts-per-trillion mixing ratios

机译:单零零系混合比下单光子激光诱导的荧光检测一氧化氮

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We describe a newly developed single-photon laser-induced fluorescence sensor for measurements of nitric oxide (NO) in the atmosphere. Rapid tuning of a narrow-band laser on and off of a rotationally resolved NO spectral feature near 215 nm and detection of the red-shifted fluorescence provides for interference-free direct measurements of NO with a detection limit of 1 part per trillion by volume (pptv) for 1 s of integration, or 0.3 pptv for 10 s of integration. Uncertainty in the sensitivity of the instrument is typically ±6–9 %, with no known interferences. Uncertainty in the zero of the detector is shown to be 0.2 pptv. The instrument was deployed on the NASA DC-8 aircraft during the NASA/NOAA FIREX-AQ experiment (Fire Influence on Regional to Global Environments Experiment – Air Quality) during July–September?2019 and provided more than 140 h of NO measurements over 22?flights, demonstrating the ability of this instrument to operate routinely and autonomously. Comparisons with a seasoned chemiluminescence sensor during FIREX-AQ in a variety of chemical environments provides validation and confidence in the accuracy of this technique.
机译:我们描述了一种新开发的单光子激光诱导的荧光传感器,用于测量大气中的一氧化氮(NO)。窄带激光的快速调整旋转分辨的无谱特征在215nm附近,并检测红移荧光,提供无干扰直接测量的否,检测限为每万亿的1份( pptv)为1 s的集成,或0.3 pptv为10 s集成。仪器敏感性的不确定性通常为±6-9%,没有已知的干扰。检测器的零中的不确定性显示为<0.2 pptv。在NASA / NOAA FIREX-AQ实验(对全球环境实验 - 空气质量)期间,该仪器部署在NASA DC-8飞机上(对全球环境实验 - 空气质量)2019年,并提供超过22次没有测量超过140小时?航班,展示了这种仪器经常和自主运作的能力。在各种化学环境中的FIREX-AQ期间与经验丰富的化学发光传感器的比较为该技术的准确性提供了验证和置信度。

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