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Characteristics of greenhouse gas concentrations derived from ground-based FTS spectra at Anmyeondo, South Koreaopen access

Authors
Oh, Young-SukKenea, S. TakeleGoo, Tae-YoungChung, Kyu-SunRhee, Jae-SangOu, Mi-LimByun, Young-HwaWennberg, Paul O.Kiel, MatthausDiGangi, Joshua P.Diskin, Glenn S.Velazco, Voltaire A.Griffith, DavidW. T.
Issue Date
Apr-2018
Publisher
COPERNICUS GESELLSCHAFT MBH
Citation
ATMOSPHERIC MEASUREMENT TECHNIQUES, v.11, no.4, pp.2361 - 2374
Indexed
SCIE
SCOPUS
Journal Title
ATMOSPHERIC MEASUREMENT TECHNIQUES
Volume
11
Number
4
Start Page
2361
End Page
2374
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/150311
DOI
10.5194/amt-11-2361-2018
ISSN
1867-1381
Abstract
Since the late 1990s, the meteorological observatory established in Anmyeondo (36.5382 degrees N, 126.3311 degrees E, and 30m above mean sea level) has been monitoring several greenhouse gases such as CO2, CH4, N2O, CFCs, and SF6 as a part of the Global Atmosphere Watch (GAW) Program. A high resolution ground-based (g-b) Fourier transform spectrometer (FTS) was installed at this observation site in 2013 and has been operated within the frame work of the Total Carbon Column Observing Network (TCCON) since August 2014. The solar spectra recorded by the g-b FTS cover the spectral range 3800 to 16 000 cm 1 at a resolution of 0.02 cm(-1). In this work, the GGG2014 version of the TCCON standard retrieval algorithm was used to retrieve total column average CO2 and CH4 dry mole fractions (XCO2, XCH4) and from the FTS spectra. Spectral bands of CO2 (at 6220.0 and 6339.5 cm(-1) center wavenumbers, CH4 at 6002 cm(-1) wavenumber, and O-2 near 7880 cm(-1)) were used to derive the XCO2 and XCH4. In this paper, we provide comparisons of XCO2 and XCH4 between the aircraft observations and g-b FTS over Anmyeondo station. A comparison of 13 coincident observations of XCO2 between g-b FTS and OCO-2 (Orbiting Carbon Observatory) satellite measurements are also presented for the measurement period between February 2014 and November 2017. OCO-2 observations are highly correlated with the g-b FTS measurements (r(2) = 0.884) and exhibited a small positive bias (0.189 ppm). Both data set capture seasonal variations of the target species with maximum and minimum values in spring and late summer, respectively. In the future, it is planned to further utilize the FTS measurements for the evaluation of satellite observations such as Greenhouse Gases Observing Satellite (GOSAT, GOSAT-2). This is the first report of the g-b FTS observations of XCO2 species over the Anmyeondo station.
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서울 공과대학 (서울 전기공학전공)
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