Update on the GOSAT TANSO–FTS SWIR Level 2 retrieval algorithm
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Published:2023-03-22
Issue:6
Volume:16
Page:1477-1501
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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:
Someya YuORCID, Yoshida YukioORCID, Ohyama HirofumiORCID, Nomura Shohei, Kamei Akihide, Morino IsamuORCID, Mukai Hitoshi, Matsunaga TsuneoORCID, Laughner Joshua L.ORCID, Velazco Voltaire A.ORCID, Herkommer BenediktORCID, Té YaoORCID, Sha Mahesh KumarORCID, Kivi RigelORCID, Zhou MinqiangORCID, Oh Young SukORCID, Deutscher Nicholas M.ORCID, Griffith David W. T.ORCID
Abstract
Abstract. The National Institute for Environmental Studies has
provided the column-averaged dry-air mole fraction of carbon dioxide and
methane (XCO2 and XCH4) products (L2 products) obtained from the
Greenhouse gases Observing SATellite (GOSAT) for more than a decade. Recently, we
updated the retrieval algorithm used to produce the new L2 product, V03.00.
The main changes from the previous version (V02) of the retrieval algorithm
are the treatment of cirrus clouds, the degradation model of the Thermal And
Near-infrared Spectrometer for carbon Observation–Fourier Transform
Spectrometer (TANSO–FTS), solar irradiance spectra, and gas absorption
coefficient tables. The retrieval results from the updated algorithm showed
improvements in fitting accuracies in the O2 A, weak CO2, and
CH4 bands of TANSO–FTS, although the residuals increase in the strong
CO2 band over the ocean. The direct comparison of the new product
obtained from the updated (V03) algorithm with the previous version
V02.90/91 and the validations using the Total Carbon Column Observing
Network revealed that the V03 algorithm increases the amount of data without
diminishing the data qualities of XCO2 and XCH4 over land.
However, the negative bias of XCO2 is larger than that of the previous
version over the ocean, and bias correction is still necessary.
Additionally, the V03 algorithm resolves the underestimation of the
XCO2 growth rate compared with the in situ measurements over the ocean
recently found using V02.90/91 and V02.95/96.
Funder
Jet Propulsion Laboratory Korea Meteorological Administration Université de La Réunion Centre National de la Recherche Scientifique Centre National d’Etudes Spatiales
Publisher
Copernicus GmbH
Subject
Atmospheric Science
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