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Combining XCO(2) Measurements Derived from SCIAMACHY and GOSAT for Potentially Generating Global CO(2) Maps with High Spatiotemporal Resolution

Global warming induced by atmospheric CO(2) has attracted increasing attention of researchers all over the world. Although space-based technology provides the ability to map atmospheric CO(2) globally, the number of valid CO(2) measurements is generally limited for certain instruments owing to the p...

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Autores principales: Wang, Tianxing, Shi, Jiancheng, Jing, Yingying, Zhao, Tianjie, Ji, Dabin, Xiong, Chuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4132063/
https://www.ncbi.nlm.nih.gov/pubmed/25119468
http://dx.doi.org/10.1371/journal.pone.0105050
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author Wang, Tianxing
Shi, Jiancheng
Jing, Yingying
Zhao, Tianjie
Ji, Dabin
Xiong, Chuan
author_facet Wang, Tianxing
Shi, Jiancheng
Jing, Yingying
Zhao, Tianjie
Ji, Dabin
Xiong, Chuan
author_sort Wang, Tianxing
collection PubMed
description Global warming induced by atmospheric CO(2) has attracted increasing attention of researchers all over the world. Although space-based technology provides the ability to map atmospheric CO(2) globally, the number of valid CO(2) measurements is generally limited for certain instruments owing to the presence of clouds, which in turn constrain the studies of global CO(2) sources and sinks. Thus, it is a potentially promising work to combine the currently available CO(2) measurements. In this study, a strategy for fusing SCIAMACHY and GOSAT CO(2) measurements is proposed by fully considering the CO(2) global bias, averaging kernel, and spatiotemporal variations as well as the CO(2) retrieval errors. Based on this method, a global CO(2) map with certain UTC time can also be generated by employing the pattern of the CO(2) daily cycle reflected by Carbon Tracker (CT) data. The results reveal that relative to GOSAT, the global spatial coverage of the combined CO(2) map increased by 41.3% and 47.7% on a daily and monthly scale, respectively, and even higher when compared with that relative to SCIAMACHY. The findings in this paper prove the effectiveness of the combination method in supporting the generation of global full-coverage XCO(2) maps with higher temporal and spatial sampling by jointly using these two space-based XCO(2) datasets.
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spelling pubmed-41320632014-08-19 Combining XCO(2) Measurements Derived from SCIAMACHY and GOSAT for Potentially Generating Global CO(2) Maps with High Spatiotemporal Resolution Wang, Tianxing Shi, Jiancheng Jing, Yingying Zhao, Tianjie Ji, Dabin Xiong, Chuan PLoS One Research Article Global warming induced by atmospheric CO(2) has attracted increasing attention of researchers all over the world. Although space-based technology provides the ability to map atmospheric CO(2) globally, the number of valid CO(2) measurements is generally limited for certain instruments owing to the presence of clouds, which in turn constrain the studies of global CO(2) sources and sinks. Thus, it is a potentially promising work to combine the currently available CO(2) measurements. In this study, a strategy for fusing SCIAMACHY and GOSAT CO(2) measurements is proposed by fully considering the CO(2) global bias, averaging kernel, and spatiotemporal variations as well as the CO(2) retrieval errors. Based on this method, a global CO(2) map with certain UTC time can also be generated by employing the pattern of the CO(2) daily cycle reflected by Carbon Tracker (CT) data. The results reveal that relative to GOSAT, the global spatial coverage of the combined CO(2) map increased by 41.3% and 47.7% on a daily and monthly scale, respectively, and even higher when compared with that relative to SCIAMACHY. The findings in this paper prove the effectiveness of the combination method in supporting the generation of global full-coverage XCO(2) maps with higher temporal and spatial sampling by jointly using these two space-based XCO(2) datasets. Public Library of Science 2014-08-13 /pmc/articles/PMC4132063/ /pubmed/25119468 http://dx.doi.org/10.1371/journal.pone.0105050 Text en © 2014 Wang et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Wang, Tianxing
Shi, Jiancheng
Jing, Yingying
Zhao, Tianjie
Ji, Dabin
Xiong, Chuan
Combining XCO(2) Measurements Derived from SCIAMACHY and GOSAT for Potentially Generating Global CO(2) Maps with High Spatiotemporal Resolution
title Combining XCO(2) Measurements Derived from SCIAMACHY and GOSAT for Potentially Generating Global CO(2) Maps with High Spatiotemporal Resolution
title_full Combining XCO(2) Measurements Derived from SCIAMACHY and GOSAT for Potentially Generating Global CO(2) Maps with High Spatiotemporal Resolution
title_fullStr Combining XCO(2) Measurements Derived from SCIAMACHY and GOSAT for Potentially Generating Global CO(2) Maps with High Spatiotemporal Resolution
title_full_unstemmed Combining XCO(2) Measurements Derived from SCIAMACHY and GOSAT for Potentially Generating Global CO(2) Maps with High Spatiotemporal Resolution
title_short Combining XCO(2) Measurements Derived from SCIAMACHY and GOSAT for Potentially Generating Global CO(2) Maps with High Spatiotemporal Resolution
title_sort combining xco(2) measurements derived from sciamachy and gosat for potentially generating global co(2) maps with high spatiotemporal resolution
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4132063/
https://www.ncbi.nlm.nih.gov/pubmed/25119468
http://dx.doi.org/10.1371/journal.pone.0105050
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