Single-photon laser-induced fluorescence detection of nitric oxide at sub-parts-per-trillion mixing ratios
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Published:2020-05-15
Issue:5
Volume:13
Page:2425-2439
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ISSN:1867-8548
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Container-title:Atmospheric Measurement Techniques
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language:en
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Short-container-title:Atmos. Meas. Tech.
Author:
Rollins Andrew W., Rickly Pamela S.ORCID, Gao Ru-Shan, Ryerson Thomas B., Brown Steven S., Peischl JeffORCID, Bourgeois IlannORCID
Abstract
Abstract. 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.
Publisher
Copernicus GmbH
Subject
Atmospheric Science
Reference38 articles.
1. Bloss, W. J., Gravestock, T. J., Heard, D. E., Ingham, T., Johnson, G. P., and
Lee, J. D.: Application of a compact all solid-state laser system to the in
situ detection of atmospheric OH, HO2, NO and IO by laser-induced
fluorescence, J. Environ. Monitor., 5, 21–28,
https://doi.org/10.1039/b208714f, 2003. a, b 2. Bradshaw, J., Davis, D., Grodzinsky, G., Smyth, S., Newell, R., Sandholm, S.,
and Liu, S.: Observed distributions of nitrogen oxides in the remote free
troposphere from the Nasa Global Tropospheric Experiment Programs,
Rev. Geophys., 38, 61–116, https://doi.org/10.1029/1999RG900015, 2000. a 3. Bradshaw, J. D., Rodgers, M. O., and Davis, D. D.: Single photon laser-induced
fluorescence detection of NO and SO2 for atmospheric conditions of
composition and pressure, Appl. Optics, 21, 2493,
https://doi.org/10.1364/AO.21.002493, 1982. a, b, c 4. Bradshaw, J. D., Rodgers, M. O., Sandholm, S. T., Kesheng, S., and Davis,
D. D.: A two-photon laser-induced fluorescence field instrument for
ground-based and airborne measurements of atmospheric NO,
J. Geophys. Res., 90, 12861–12873, https://doi.org/10.1029/JD090iD07p12861,
1985. a, b, c 5. Cazorla, M., Wolfe, G. M., Bailey, S. A., Swanson, A. K., Arkinson, H. L., and Hanisco, T. F.: A new airborne laser-induced fluorescence instrument for in situ detection of formaldehyde throughout the troposphere and lower stratosphere, Atmos. Meas. Tech., 8, 541–552, https://doi.org/10.5194/amt-8-541-2015, 2015. a
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