Cargando…

Large contribution of biomass burning emissions to ozone throughout the global remote troposphere

Ozone is the third most important anthropogenic greenhouse gas after carbon dioxide and methane but has a larger uncertainty in its radiative forcing, in part because of uncertainty in the source characteristics of ozone precursors, nitrogen oxides, and volatile organic carbon that directly affect o...

Descripción completa

Detalles Bibliográficos
Autores principales: Bourgeois, Ilann, Peischl, Jeff, Neuman, J. Andrew, Brown, Steven S., Thompson, Chelsea R., Aikin, Kenneth C., Allen, Hannah M., Angot, Hélène, Apel, Eric C., Baublitz, Colleen B., Brewer, Jared F., Campuzano-Jost, Pedro, Commane, Róisín, Crounse, John D., Daube, Bruce C., DiGangi, Joshua P., Diskin, Glenn S., Emmons, Louisa K., Fiore, Arlene M., Gkatzelis, Georgios I., Hills, Alan, Hornbrook, Rebecca S., Huey, L. Gregory, Jimenez, Jose L., Kim, Michelle, Lacey, Forrest, McKain, Kathryn, Murray, Lee T., Nault, Benjamin A., Parrish, David D., Ray, Eric, Sweeney, Colm, Tanner, David, Wofsy, Steven C., Ryerson, Thomas B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8719870/
https://www.ncbi.nlm.nih.gov/pubmed/34930838
http://dx.doi.org/10.1073/pnas.2109628118
_version_ 1784625030475284480
author Bourgeois, Ilann
Peischl, Jeff
Neuman, J. Andrew
Brown, Steven S.
Thompson, Chelsea R.
Aikin, Kenneth C.
Allen, Hannah M.
Angot, Hélène
Apel, Eric C.
Baublitz, Colleen B.
Brewer, Jared F.
Campuzano-Jost, Pedro
Commane, Róisín
Crounse, John D.
Daube, Bruce C.
DiGangi, Joshua P.
Diskin, Glenn S.
Emmons, Louisa K.
Fiore, Arlene M.
Gkatzelis, Georgios I.
Hills, Alan
Hornbrook, Rebecca S.
Huey, L. Gregory
Jimenez, Jose L.
Kim, Michelle
Lacey, Forrest
McKain, Kathryn
Murray, Lee T.
Nault, Benjamin A.
Parrish, David D.
Ray, Eric
Sweeney, Colm
Tanner, David
Wofsy, Steven C.
Ryerson, Thomas B.
author_facet Bourgeois, Ilann
Peischl, Jeff
Neuman, J. Andrew
Brown, Steven S.
Thompson, Chelsea R.
Aikin, Kenneth C.
Allen, Hannah M.
Angot, Hélène
Apel, Eric C.
Baublitz, Colleen B.
Brewer, Jared F.
Campuzano-Jost, Pedro
Commane, Róisín
Crounse, John D.
Daube, Bruce C.
DiGangi, Joshua P.
Diskin, Glenn S.
Emmons, Louisa K.
Fiore, Arlene M.
Gkatzelis, Georgios I.
Hills, Alan
Hornbrook, Rebecca S.
Huey, L. Gregory
Jimenez, Jose L.
Kim, Michelle
Lacey, Forrest
McKain, Kathryn
Murray, Lee T.
Nault, Benjamin A.
Parrish, David D.
Ray, Eric
Sweeney, Colm
Tanner, David
Wofsy, Steven C.
Ryerson, Thomas B.
author_sort Bourgeois, Ilann
collection PubMed
description Ozone is the third most important anthropogenic greenhouse gas after carbon dioxide and methane but has a larger uncertainty in its radiative forcing, in part because of uncertainty in the source characteristics of ozone precursors, nitrogen oxides, and volatile organic carbon that directly affect ozone formation chemistry. Tropospheric ozone also negatively affects human and ecosystem health. Biomass burning (BB) and urban emissions are significant but uncertain sources of ozone precursors. Here, we report global-scale, in situ airborne measurements of ozone and precursor source tracers from the NASA Atmospheric Tomography mission. Measurements from the remote troposphere showed that tropospheric ozone is regularly enhanced above background in polluted air masses in all regions of the globe. Ozone enhancements in air with high BB and urban emission tracers (2.1 to 23.8 ppbv [parts per billion by volume]) were generally similar to those in BB-influenced air (2.2 to 21.0 ppbv) but larger than those in urban-influenced air (−7.7 to 6.9 ppbv). Ozone attributed to BB was 2 to 10 times higher than that from urban sources in the Southern Hemisphere and the tropical Atlantic and roughly equal to that from urban sources in the Northern Hemisphere and the tropical Pacific. Three independent global chemical transport models systematically underpredict the observed influence of BB on tropospheric ozone. Potential reasons include uncertainties in modeled BB injection heights and emission inventories, export efficiency of BB emissions to the free troposphere, and chemical mechanisms of ozone production in smoke. Accurately accounting for intermittent but large and widespread BB emissions is required to understand the global tropospheric ozone burden.
format Online
Article
Text
id pubmed-8719870
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher National Academy of Sciences
record_format MEDLINE/PubMed
spelling pubmed-87198702022-01-21 Large contribution of biomass burning emissions to ozone throughout the global remote troposphere Bourgeois, Ilann Peischl, Jeff Neuman, J. Andrew Brown, Steven S. Thompson, Chelsea R. Aikin, Kenneth C. Allen, Hannah M. Angot, Hélène Apel, Eric C. Baublitz, Colleen B. Brewer, Jared F. Campuzano-Jost, Pedro Commane, Róisín Crounse, John D. Daube, Bruce C. DiGangi, Joshua P. Diskin, Glenn S. Emmons, Louisa K. Fiore, Arlene M. Gkatzelis, Georgios I. Hills, Alan Hornbrook, Rebecca S. Huey, L. Gregory Jimenez, Jose L. Kim, Michelle Lacey, Forrest McKain, Kathryn Murray, Lee T. Nault, Benjamin A. Parrish, David D. Ray, Eric Sweeney, Colm Tanner, David Wofsy, Steven C. Ryerson, Thomas B. Proc Natl Acad Sci U S A Physical Sciences Ozone is the third most important anthropogenic greenhouse gas after carbon dioxide and methane but has a larger uncertainty in its radiative forcing, in part because of uncertainty in the source characteristics of ozone precursors, nitrogen oxides, and volatile organic carbon that directly affect ozone formation chemistry. Tropospheric ozone also negatively affects human and ecosystem health. Biomass burning (BB) and urban emissions are significant but uncertain sources of ozone precursors. Here, we report global-scale, in situ airborne measurements of ozone and precursor source tracers from the NASA Atmospheric Tomography mission. Measurements from the remote troposphere showed that tropospheric ozone is regularly enhanced above background in polluted air masses in all regions of the globe. Ozone enhancements in air with high BB and urban emission tracers (2.1 to 23.8 ppbv [parts per billion by volume]) were generally similar to those in BB-influenced air (2.2 to 21.0 ppbv) but larger than those in urban-influenced air (−7.7 to 6.9 ppbv). Ozone attributed to BB was 2 to 10 times higher than that from urban sources in the Southern Hemisphere and the tropical Atlantic and roughly equal to that from urban sources in the Northern Hemisphere and the tropical Pacific. Three independent global chemical transport models systematically underpredict the observed influence of BB on tropospheric ozone. Potential reasons include uncertainties in modeled BB injection heights and emission inventories, export efficiency of BB emissions to the free troposphere, and chemical mechanisms of ozone production in smoke. Accurately accounting for intermittent but large and widespread BB emissions is required to understand the global tropospheric ozone burden. National Academy of Sciences 2021-12-20 2021-12-28 /pmc/articles/PMC8719870/ /pubmed/34930838 http://dx.doi.org/10.1073/pnas.2109628118 Text en Copyright © 2021 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Physical Sciences
Bourgeois, Ilann
Peischl, Jeff
Neuman, J. Andrew
Brown, Steven S.
Thompson, Chelsea R.
Aikin, Kenneth C.
Allen, Hannah M.
Angot, Hélène
Apel, Eric C.
Baublitz, Colleen B.
Brewer, Jared F.
Campuzano-Jost, Pedro
Commane, Róisín
Crounse, John D.
Daube, Bruce C.
DiGangi, Joshua P.
Diskin, Glenn S.
Emmons, Louisa K.
Fiore, Arlene M.
Gkatzelis, Georgios I.
Hills, Alan
Hornbrook, Rebecca S.
Huey, L. Gregory
Jimenez, Jose L.
Kim, Michelle
Lacey, Forrest
McKain, Kathryn
Murray, Lee T.
Nault, Benjamin A.
Parrish, David D.
Ray, Eric
Sweeney, Colm
Tanner, David
Wofsy, Steven C.
Ryerson, Thomas B.
Large contribution of biomass burning emissions to ozone throughout the global remote troposphere
title Large contribution of biomass burning emissions to ozone throughout the global remote troposphere
title_full Large contribution of biomass burning emissions to ozone throughout the global remote troposphere
title_fullStr Large contribution of biomass burning emissions to ozone throughout the global remote troposphere
title_full_unstemmed Large contribution of biomass burning emissions to ozone throughout the global remote troposphere
title_short Large contribution of biomass burning emissions to ozone throughout the global remote troposphere
title_sort large contribution of biomass burning emissions to ozone throughout the global remote troposphere
topic Physical Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8719870/
https://www.ncbi.nlm.nih.gov/pubmed/34930838
http://dx.doi.org/10.1073/pnas.2109628118
work_keys_str_mv AT bourgeoisilann largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT peischljeff largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT neumanjandrew largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT brownstevens largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT thompsonchelsear largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT aikinkennethc largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT allenhannahm largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT angothelene largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT apelericc largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT baublitzcolleenb largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT brewerjaredf largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT campuzanojostpedro largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT commaneroisin largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT crounsejohnd largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT daubebrucec largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT digangijoshuap largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT diskinglenns largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT emmonslouisak largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT fiorearlenem largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT gkatzelisgeorgiosi largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT hillsalan largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT hornbrookrebeccas largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT hueylgregory largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT jimenezjosel largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT kimmichelle largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT laceyforrest largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT mckainkathryn largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT murrayleet largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT naultbenjamina largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT parrishdavidd largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT rayeric largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT sweeneycolm largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT tannerdavid largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT wofsystevenc largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere
AT ryersonthomasb largecontributionofbiomassburningemissionstoozonethroughouttheglobalremotetroposphere