XCO2 and XCH4 Reconstruction Using GOSAT Satellite Data Based on EOF-Algorithm

被引:2
|
作者
Lopez, Franz Pablo Antezana [1 ]
Zhou, Guanhua [1 ]
Jing, Guifei [2 ]
Zhang, Kai [3 ]
Tan, Yumin [4 ]
机构
[1] Beihang Univ, Sch Instrumentat Sci & Optoelect Engn, Beijing 100191, Peoples R China
[2] Beihang Univ, Res Inst Frontier Sci, Beijing 100091, Peoples R China
[3] Chinese Res Inst Environm Sci, State Key Lab Environm Criteria & Risk Assessment, Beijing 100012, Peoples R China
[4] Beihang Univ, Sch Transportat Sci & Engn, Beijing 100191, Peoples R China
基金
中国国家自然科学基金;
关键词
empirical orthogonal functions; carbon dioxide; methane; GOSAT; TCCON; spatial variation; greenhouse gases; EMPIRICAL ORTHOGONAL FUNCTIONS; ATMOSPHERIC METHANE; GREENHOUSE GASES; CO2; ENHANCEMENTS; CH4; CALIBRATION; PRODUCTS; BIOMASS;
D O I
10.3390/rs14112622
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The Greenhouse Gases Observing Satellite (GOSAT) can help to ascertain the global distribution of carbon dioxide (CO2) and methane (CH4), and how the sources and sinks of these gases vary by season, year, and location. However, the data provided by the GOSAT level 2 and 3 products have certain limitations due to their lack of spatial and temporal information; even with the application of the kriging geostatistical method on the level 2 products, the processing algorithms still need further upgrades. In this study, we apply an empirical orthogonal function (EOF)-based method on the GOSAT L3 products (137 images, from January 2010 to May 2021) to estimate the column average of carbon dioxide and methane (XCO2-XCH4) within the entire Earth. The reconstructed results are validated against the Total Carbon Column Observing Network (i.e., TCCON), with 31 in situ stations, and GOSAT L4B column-averaged data, using 107 layers. The results show an excellent agreement with the TCCON data and exhibit an R-squared coefficient of 0.95 regarding the CO2 measurements and 0.86 regarding the CH4 measurements. Therefore, this methodology can be incorporated into the processing steps used to map global greenhouse gases.
引用
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页数:26
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共 49 条
  • [1] Improvement of the retrieval algorithm for GOSAT SWIR XCO2 and XCH4 and their validation using TCCON data
    Yoshida, Y.
    Kikuchi, N.
    Morino, I.
    Uchino, O.
    Oshchepkov, S.
    Bril, A.
    Saeki, T.
    Schutgens, N.
    Toon, G. C.
    Wunch, D.
    Roehl, C. M.
    Wennberg, P. O.
    Griffith, D. W. T.
    Deutscher, N. M.
    Warneke, T.
    Notholt, J.
    Robinson, J.
    Sherlock, V.
    Connor, B.
    Rettinger, M.
    Sussmann, R.
    Ahonen, P.
    Heikkinen, P.
    Kyro, E.
    Mendonca, J.
    Strong, K.
    Hase, F.
    Dohe, S.
    Yokota, T.
    [J]. ATMOSPHERIC MEASUREMENT TECHNIQUES, 2013, 6 (06) : 1533 - 1547
  • [2] GOSAT higher level products and the variation of retrieved XCO2 and XCH4
    Watanabe, Hiroshi
    Yuki, Akira
    Kawazoe, Fumie
    Kanekon, Sayaka
    Ajiro, Masataka
    Matsunaga, Tsuneo
    Yokota, Tatsuya
    [J]. EARTH OBSERVING MISSIONS AND SENSORS: DEVELOPMENT, IMPLEMENTATION, AND CHARACTERIZATION II, 2012, 8528
  • [3] Bias corrections of GOSAT SWIR XCO2 and XCH4 with TCCON data and their evaluation using aircraft measurement data
    Inoue, Makoto
    Morino, Isamu
    Uchino, Osamu
    Nakatsuru, Takahiro
    Yoshida, Yukio
    Yokota, Tatsuya
    Wunch, Debra
    Wennberg, Paul O.
    Roehl, Coleen M.
    Griffith, David W. T.
    Velazco, Voltaire A.
    Deutscher, Nicholas M.
    Warneke, Thorsten
    Notholt, Justus
    Robinson, John
    Sherlock, Vanessa
    Hase, Frank
    Blumenstock, Thomas
    Rettinger, Markus
    Sussmann, Ralf
    Kyro, Esko
    Kivi, Rigel
    Shiomi, Kei
    Kawakami, Shuji
    De Maziere, Martine
    Arnold, Sabrina G.
    Feist, Dietrich G.
    Barrow, Erica A.
    Barney, James
    Dubey, Manvendra
    Schneider, Matthias
    Iraci, Laura T.
    Podolske, James R.
    Hillyard, Patrick W.
    Machida, Toshinobu
    Sawa, Yousuke
    Tsuboi, Kazuhiro
    Matsueda, Hidekazu
    Sweeney, Colm
    Tans, Pieter P.
    Andrews, Arlyn E.
    Biraud, Sebastien C.
    Fukuyama, Yukio
    Pittman, Jasna V.
    Kort, Eric A.
    Tanaka, Tomoaki
    [J]. ATMOSPHERIC MEASUREMENT TECHNIQUES, 2016, 9 (08) : 3491 - 3512
  • [4] Observations of XCO2 and XCH4 with ground-based high-resolution FTS at Saga, Japan, and comparisons with GOSAT products
    Ohyama, H.
    Kawakami, S.
    Tanaka, T.
    Morino, I.
    Uchino, O.
    Inoue, M.
    Sakai, T.
    Nagai, T.
    Yamazaki, A.
    Uchiyama, A.
    Fukamachi, T.
    Sakashita, M.
    Kawasaki, T.
    Akaho, T.
    Arai, K.
    Okumura, H.
    [J]. ATMOSPHERIC MEASUREMENT TECHNIQUES, 2015, 8 (12) : 5263 - 5276
  • [5] Intercomparability of XCO2 and XCH4 from the United States TCCON sites
    Hedelius, Jacob K.
    Parker, Harrison
    Debra, Wunch A.
    Roehl, Coleen M.
    Viatte, Camille
    Newman, Sally
    Toon, Geoffrey C.
    Podolske, James R.
    Hillyard, Patrick W.
    Iraci, Laura T.
    Dubey, Manvendra K.
    Wennberg, Paul O.
    [J]. ATMOSPHERIC MEASUREMENT TECHNIQUES, 2017, 10 (04) : 1481 - 1493
  • [6] Validation of GOSAT SWIR XCO2 and XCH4 Retrieved by PPDF-S Method and Comparison with Full Physics Method
    Iwasaki, Chisa
    Imasu, Ryoichi
    Bril, Andrey
    Yokota, Tatsuya
    Yoshida, Yukio
    Morino, Isamu
    Oshchepkov, Sergey
    Wunch, Debra
    Griffith, David W. T.
    Deutscher, Nicholas M.
    Kivi, Rigel
    Pollard, Dave
    Roehl, Coleen M.
    Velazco, Voltaire A.
    Sussmann, Ralf
    Warneke, Thorsten
    Notholt, Justus
    [J]. SOLA, 2017, 13 : 168 - 173
  • [7] Validation of TANSO-FTS/GOSAT XCO2 and XCH4 glint mode retrievals using TCCON data from near-ocean sites
    Zhou, Minqiang
    Dils, Bart
    Wang, Pucai
    Detmers, Rob
    Yoshida, Yukio
    O'Dell, Christopher W.
    Feist, Dietrich G.
    Velazco, Voltaire Almario
    Schneider, Matthias
    De Maziere, Martine
    [J]. ATMOSPHERIC MEASUREMENT TECHNIQUES, 2016, 9 (03) : 1415 - 1430
  • [8] Influences of aerosols and thin cirrus clouds on GOSAT XCO2 and XCH4 using Total Carbon Column Observing Network, sky radiometer, and lidar data
    Tran Thi Ngoc Trieu
    Morino, Isamu
    Uchino, Osamu
    Tsutsumi, Yukitomo
    Sakai, Tetsu
    Nagai, Tomohiro
    Yamazaki, Akihiro
    Okumura, Hiroshi
    Arai, Kohei
    Shiomi, Kei
    Pollard, David F.
    Liley, Ben
    [J]. INTERNATIONAL JOURNAL OF REMOTE SENSING, 2022, 43 (05) : 1770 - 1799
  • [9] XCO2 retrieval for GOSAT and GOSAT-2 based on the FOCAL algorithm
    Noeel, Stefan
    Reuter, Maximilian
    Buchwitz, Michael
    Borchardt, Jakob
    Hilker, Michael
    Bovensmann, Heinrich
    Burrows, John P.
    Di Noia, Antonio
    Suto, Hiroshi
    Yoshida, Yukio
    Buschmann, Matthias
    Deutscher, Nicholas M.
    Feist, Dietrich G.
    Griffith, David W. T.
    Hase, Frank
    Kivi, Rigel
    Morino, Isamu
    Notholt, Justus
    Ohyama, Hirofumi
    Petri, Christof
    Podolske, James R.
    Pollard, David F.
    Sha, Mahesh Kumar
    Shiomi, Kei
    Sussmann, Ralf
    Te, Yao
    Velazco, Voltaire A.
    Warneke, Thorsten
    [J]. ATMOSPHERIC MEASUREMENT TECHNIQUES, 2021, 14 (05) : 3837 - 3869
  • [10] Mapping the FTS SWIR L2 product of XCO2 and XCH4 data from the GOSAT by the Kriging method - a case study in East Asia
    Liu, Yang
    Wang, Xiufeng
    Guo, Meng
    Tani, Hiroshi
    [J]. INTERNATIONAL JOURNAL OF REMOTE SENSING, 2012, 33 (10) : 3004 - 3025