DocumentCode :
124493
Title :
Toward accurate XCO2 level 2 measurements by combining different CO2 retrievals from gosat and sciamachy
Author :
Yingying Jing ; Tianxing Wang ; Jiancheng Shi
Author_Institution :
State Key Lab. of Remote Sensing Sci., Inst. of Remote Sensing & Digital Earth, Beijing, China
fYear :
2014
fDate :
11-14 June 2014
Firstpage :
96
Lastpage :
100
Abstract :
Carbon dioxide (CO2) is one of the most important anthropogenic greenhouse gases causing global warming. Although various space-based observations have been used to derive and identify regional and global distribution of CO2 source and sink, uncertainties and biases are still subsistent. A high spatial and temporal resolution is important to remove the CO2 uncertainties and biases. In this study, an improved ensemble median algorithm is developed by fully accounting for the variation of XCO2 on synoptic timescales. Based on this, XCO2 data sets from the improved method and EMMA are compared in terms of their spatiotemporal distributions and correlations. Meanwhile, XCO2 measurements from three TCCON sites are used to compare with these two datasets. The results reveal that although there is a good correlation between the XCO2 from improved method and that of EMMA at annual scale, large discrepancies can be still detected at most places over the world. It seems that a higher time resolution is necessary to remove the outliers. In addition, the season cycle of the two methods is generally in agreement with ground measurements. However, our improved method shows less divergence compared to that of EMMA at three ground sites. To some extent, these results proved the effectiveness of our new method and thus demonstrated the necessity for refining the Level 2 XCO2 measurements at a shorter time averaging period.
Keywords :
air pollution; carbon capture and storage; GOSAT; Level 2 column carbon dioxide measurements; SCIAMACHY; anthropogenic greenhouse gases; carbon dioxide retrievals; carbon dioxide sink global distribution; carbon dioxide sink regional distribution; carbon dioxide source global distribution; carbon dioxide source regional distribution; global warming; space-based observations; synoptic timescales; Atmospheric measurements; Carbon; Carbon dioxide; Earth; Global warming; Remote sensing; Uncertainty; EMMA; GOSAT; SCIAMACHY; XCO2;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Earth Observation and Remote Sensing Applications (EORSA), 2014 3rd International Workshop on
Conference_Location :
Changsha
Print_ISBN :
978-1-4799-5757-6
Type :
conf
DOI :
10.1109/EORSA.2014.6927857
Filename :
6927857
Link To Document :
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