Journal of Atmospheric and Environmental Optics, Volume. 19, Issue 4, 489(2024)
Variation characteristics of atmospheric greenhouse gases in Hefei region based on ground-based remote sensing and in-situ surface measurement
[1] Wei C, Wang M H, Fu Q Y et al. Temporal characteristics of greenhouse gases (CO2 and CH4) in the megacity Shanghai, China: Association with air pollutants and meteorological conditions[J]. Atmospheric Research, 235, 104759(2020).
[2] Reum F, Gerbig C, Lavric J V et al. Correcting atmospheric CO2 and CH4 mole fractions obtained with Picarro analyzers for sensitivity of cavity pressure to water vapor[J]. Atmospheric Measurement Techniques, 12, 1013-1027(2019).
[3] Knapp M, Kleinschek R, Hase F et al. Shipborne measurements of XCO2, XCH4, and XCO above the Pacific Ocean and comparison to CAMS atmospheric analyses and S5P/TROPOMI[J]. Earth System Science Data, 13, 199-211(2021).
[4] Fraser A, Palmer P I, Feng L et al. Estimating regional fluxes of CO2 and CH4 using space-borne observations of XCH4: XCO2[J]. Atmospheric Chemistry and Physics, 14, 12883-12895(2014).
[5] Saunois M, Stavert A R, Poulter B et al. The global methane budget 2000―2017[J]. Earth System Science Data, 12, 1561-1623(2020).
[7] Dhakal S. Urban energy use and carbon emissions from cities in China and policy implications[J]. Energy Policy, 37, 4208-4219(2009).
[8] Xia L J, Zhang G, Liu L X et al. Atmospheric CO2 and CO at Jingdezhen Station in central China: Understanding the regional transport and combustion efficiency[J]. Atmospheric Environment, 222, 117104(2020).
[9] Yang Y, Zhou M Q, Wang T et al. Spatial and temporal variations of CO2 mole fractions observed at Beijing, Xianghe, and Xinglong in North China[J]. Atmospheric Chemistry and Physics, 21, 11741-11757(2021).
[10] Pan C, Zhu X Y, Jia W X et al. Near surface CO2 concentration and its quantitative relationship with character of underlying surface in Shanghai City, China[J]. Chinese Journal of Applied Ecology, 26, 2123-2130(2015).
[11] Fang S X, Zhou L X, Zang K P et al. Measurement of atmospheric CO2 mixing ratio by cavity ring-down spectroscopy at the 4 background stations in China[J]. Acta Scientiae Circumstantiae, 31, 624-629(2011).
[12] Xin F X, Guo J J, Sun J Y et al. Measurement of open-path atmospheric CO2 based on tunable diode laser absorption spectroscopy[J]. Journal of Atmospheric and Environmental Optics, 12, 269-275(2017).
[13] Ding X Z, Long R J, Mi J D et al. Measurement of methane and carbon dioxide emissions from ruminants based on the NDIR technique[J]. Spectroscopy and Spectral Analysis, 30, 1503-1506(2010).
[14] Shan C G, Wang W, Liu C et al. Regional CO emission estimated from ground-based remote sensing at Hefei Site, China[J]. Atmospheric Research, 222, 25-35(2019).
[15] Frey M M, Hase F, Blumenstock T et al. Long-term column-averaged greenhouse gas observations using a COCCON spectrometer at the high-surface-albedo site in Gobabeb, Namibia[J]. Atmospheric Measurement Techniques, 14, 5887-5911(2021).
[16] Babenhauserheide A, Hase F, Morino I. Net CO2 fossil fuel emissions of Tokyo estimated directly from measurements of the Tsukuba TCCON site and radiosondes[J]. Atmospheric Measurement Techniques, 13, 2697-2710(2020).
[17] Wang W, Tian Y, Liu C et al. Investigating the performance of a greenhouse gas observatory in Hefei, China[J]. Atmospheric Measurement Techniques, 10, 2627-2643(2017).
[18] Tian Y, Sun Y W, Liu C et al. Characterisation of methane variability and trends from near-infrared solar spectra over Hefei, China[J]. Atmospheric Environment, 173, 198-209(2018).
[19] Wunch D, Toon G C, Blavier J F et al. The total carbon column observing network[J]. Philosophical Transactions of the Royal Society A-Mathematical Physical and Engineering Sciences, 369, 2087-2112(2011).
[20] Xia L J, Zhang G, Zhan M J et al. Seasonal variations of atmospheric CH4 at Jingdezhen Station in Central China: Understanding the regional transport and its correlation with CO2 and CO[J]. Atmospheric Research, 241, 104982(2020).
[21] Li H L, Zhang C H, Wang W H. Configuration setting of instruments on greenhouse gases observing satellite (GOSAT) and orbiting carbon observatory (OCO)[J]. Meteorological Science and Technology, 39, 603-607(2011).
[22] Liu P, Yu J Y, Bao L et al. On concentration feature analysis of CO2 and CH4 in city of Chongqing[J]. Journal of Southwest China Normal University, 41, 146-150(2016).
[23] Li Y L, Mu C, Deng J J et al. Near surface atmospheric CO2 variations in autumn at suburban Xiamen, China[J]. Environmental Science, 34, 2018-2024(2013).
[24] Wang J H, Sang B, Sun M H. A study on the variations of atmospheric CO2 at urban Jinan[J]. Journal of EMCC, 27, 56-59(2017).
[25] Wang Y, Munger J W, Xu S et al. CO2 and its correlation with CO at a rural site near Beijing: Implications for combustion efficiency in China[J]. Atmospheric Chemistry and Physics, 10, 8881-8897(2010).
[26] Bai M, Griffith D W T, Phillips F A et al. Correlations of methane and carbon dioxide concentrations from feedlot cattle as a predictor of methane emissions[J]. Animal Production Science, 56, 108-115(2016).
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Lingling ZHA, Yu XIE, Changgong SHAN, Xiangyu ZENG, Wei WANG. Variation characteristics of atmospheric greenhouse gases in Hefei region based on ground-based remote sensing and in-situ surface measurement[J]. Journal of Atmospheric and Environmental Optics, 2024, 19(4): 489
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Received: Dec. 20, 2021
Accepted: --
Published Online: Jan. 8, 2025
The Author Email: Yu XIE (xieyuwh@163.com), Wei WANG (wwang@aiofm.ac.cn)