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Development of a broadband cavity-enhanced absorption spectrometer for simultaneous measurements of ambient NO3, NO2, and H2O

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Title
Development of a broadband cavity-enhanced absorption spectrometer for simultaneous measurements of ambient NO3, NO2, and H2O
Other Titles
NO3, NO 및 H2O 동시 측정을 위한 광대역 공동 흡수 분광기의 개발
Authors
Nam, Woohui
Cho, Changmin
Perdigones, Begie
Rhee, Tae Siek
Min, Kyung-Eun
Subject
Meteorology & Atmospheric Sciences
Keywords
RING-DOWN SPECTROSCOPYIN-SITU MEASUREMENTCONTINENTAL BOUNDARY-LAYERLONG-TERM OBSERVATIONNITRATE RADICALSCROSS-SECTIONSNIGHTTIME CHEMISTRYAEROSOL EXTINCTIONNITROGEN-DIOXIDEATMOSPHERIC NO3
Issue Date
2022-08-03
Citation
Nam, Woohui, et al. 2022. "Development of a broadband cavity-enhanced absorption spectrometer for simultaneous measurements of ambient NO3, NO2, and H2O". ATMOSPHERIC MEASUREMENT TECHNIQUES, 15(15): 4473-4487.
Abstract
We describe the characteristics and performances of our newly built broadband cavity-enhanced absorption spectrometer for measurements of nitrate radical (NO3), nitrogen dioxide (NO2), and water vapor (H2O). A customized vibration-resistance cavity layout incorporated with N2 purging on high-reflection mirror surfaces was implemented with a red light-emitting diode (LED) as a light source. In general, this system achieved over 40 km (up to 101.5 km) of effective light path length at 662 nm from a 0.52 m long cavity. For the accurate NO3 measurement, the measured absorption spectrum of H2O was used for simultaneous concentration retrievals with the other species, instead of being treated as interferences to be removed or corrected prior to NO3 detection. Synthesized N2O5 crystals under atmospheric pressure were used for performance tests of linear response and transmission efficiency. From the standard injection experiments of NO3, NO2, and H2O, high linearities were observed (R2 ≥0.9918). The total NO3 transmission efficiency through the system was determined to be 81.2 % (±2.9, 1σ) within the residence time of 2.59 seconds. The precisions (1σ) of NO3, NO2, and H2O in 1 Hz measurement from a single pixel on the CCD were 1.41 pptv, 6.92 ppbv, and 35.0 ppmv with uncertainties of 10.8, 5.2, and ≥20.5 %, respectively, mainly from the errors in literature absorption cross-sections. The instrument was successfully deployed aboard the Korean icebreaker R/V Araon for an expedition conducted in remote marine boundary layer in the Arctic Ocean during the summer of 2021.
URI
https://repository.kopri.re.kr/handle/201206/14091
DOI
http://dx.doi.org/10.5194/amt-15-4473-2022
Type
Article
Station
Araon
Indexed
SCIE
Appears in Collections  
2021 Polar Academic Program (PE21900)
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