Retrieval algorithm for CO <sub>2</sub> and CH <sub>4</sub> column abundances from short-wavelength infrared spectral observations by the Greenhouse gases observing satellite

Yukio Yoshida(National Institute for Environmental Studies), Y. Ota(Japan Agency for Marine-Earth Science and Technology), N. Eguchi(National Institute for Environmental Studies), Nobuhiro Kikuchi(National Institute for Environmental Studies), Koji Nobuta(National Institute for Environmental Studies), H. Tran(Centre National de la Recherche Scientifique), Isamu Morino(National Institute for Environmental Studies), Tatsuya Yokota(National Institute for Environmental Studies)
Atmospheric measurement techniques
April 11, 2011
Cited by 444Open Access
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Abstract

Abstract. The Greenhouse gases Observing SATellite (GOSAT) was launched on 23 January 2009 to monitor the global distributions of carbon dioxide and methane from space. It has operated continuously since then. Here, we describe a retrieval algorithm for column abundances of these gases from the short-wavelength infrared spectra obtained by the Thermal And Near infrared Sensor for carbon Observation-Fourier Transform Spectrometer (TANSO-FTS). The algorithm consists of three steps. First, cloud-free observational scenes are selected by several cloud-detection methods. Then, column abundances of carbon dioxide and methane are retrieved based on the optimal estimation method. Finally, the retrieval quality is examined to exclude low-quality and/or aerosol-contaminated results. Most of the retrieval random errors come from instrumental noise. The interferences due to auxiliary parameters retrieved simultaneously with gas abundances are small. The evaluated precisions of the retrieved column abundances for single observations are less than 1% in most cases. The interhemispherical differences and temporal variation patterns of the retrieved column abundances show features similar to those of an atmospheric transport model.


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