Articles | Volume 19, issue 23
https://doi.org/10.5194/acp-19-14585-2019
https://doi.org/10.5194/acp-19-14585-2019
Research article
 | 
03 Dec 2019
Research article |  | 03 Dec 2019

Constraining global aerosol emissions using POLDER/PARASOL satellite remote sensing observations

Cheng Chen, Oleg Dubovik, Daven K. Henze, Mian Chin, Tatyana Lapyonok, Gregory L. Schuster, Fabrice Ducos, David Fuertes, Pavel Litvinov, Lei Li, Anton Lopatin, Qiaoyun Hu, and Benjamin Torres

Viewed

Total article views: 3,096 (including HTML, PDF, and XML)
HTML PDF XML Total Supplement BibTeX EndNote
2,129 922 45 3,096 254 51 53
  • HTML: 2,129
  • PDF: 922
  • XML: 45
  • Total: 3,096
  • Supplement: 254
  • BibTeX: 51
  • EndNote: 53
Views and downloads (calculated since 15 Jul 2019)
Cumulative views and downloads (calculated since 15 Jul 2019)

Viewed (geographical distribution)

Total article views: 3,096 (including HTML, PDF, and XML) Thereof 2,792 with geography defined and 304 with unknown origin.
Country # Views %
  • 1
1
 
 
 
 

Cited

Latest update: 18 Apr 2024
Download
Short summary
Global BC, OC and DD aerosol emissions are inverted from POLDER/PARASOL observations for the year 2010 based on the GEOS-Chem inverse modeling framework. The retrieved emissions are 18.4 Tg yr−1 BC, 109.9 Tg yr−1 OC and 731.6 Tg yr−1 DD, which indicate an increase of 166.7 % for BC and 184.0 % for OC, while a decrease of 42.4 % for DD with respect to GEOS-Chem a priori emission inventories is seen. Global annul mean AOD and AAOD resulting from retrieved emissions are 0.119 and 0.0071 at 550 nm.
Altmetrics
Final-revised paper
Preprint