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The contribution of transport emissions to ozone mixing ratios and methane lifetime in 2015 and 2050 in the Shared Socioeconomic Pathways (SSPs)

Mertens, Mariano und Brinkop, Sabine und Graf, Phoebe und Grewe, Volker und Hendricks, Johannes und Jöckel, Patrick und Lanteri, Anna und Matthes, Sigrun und Rieger, Vanessa und Righi, Mattia und Thor, Robin Niclas (2024) The contribution of transport emissions to ozone mixing ratios and methane lifetime in 2015 and 2050 in the Shared Socioeconomic Pathways (SSPs). Atmospheric Chemistry and Physics (ACP), Seiten 12079-12106. Copernicus Publications. doi: 10.5194/acp-24-12079-2024. ISSN 1680-7316.

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Offizielle URL: https://acp.copernicus.org/articles/24/12079/2024/

Kurzfassung

We quantify the contributions of emissions from the transport sector to tropospheric ozone and the hydroxyl radical (OH) by means of model simulations with a global chemistry-climate model equipped with a source attribution method. For the first time we applied a method which also allows for quantifying contributions to OH which is invariant upon disaggregation or recombination and additive. Based on these quantified contributions, we analyse the ozone radiative forcing (RF) and methane lifetime reductions attributable to emissions from the transport sectors. The contributions were analysed for each transport sector separately and for 2015 as well as for 2050 under the Shared Socioeconomic Pathways (SSPs) SSP1-1.9, SSP2-4.5, and SSP3-7.0. In line with previous publications using the source attribution approach, we quantify ozone RF attributable to emissions from land transport, shipping, and aviation for the year 2015 of 121, 60, and 31 mW m−2, respectively. At the same time, we diagnose a relative reduction in methane lifetime due to transport emissions of 14.3 % (land transport), 8.5 % (shipping), and 3.8 % (aviation). These reductions are significantly larger than reported by previous studies due to the application of the source attribution method. Compared to 2015, only SSP1-1.9 shows a strong decrease in ozone RF and methane lifetime reduction attributable to the entire transport sector in 2050. For the projections of SSP2-4.5, we find similar effects of the total transport sector as for 2015, while the effects in SSP3-7.0 increase compared to 2015. This small change in the effects for the two projections compared to 2015 is caused by two main factors. Firstly, aviation emissions are projected to increase in SSP2-4.5 (increase of 107 %) and SSP3-7.0 (+86 %) compared to 2015, resulting in projected ozone RF of 55 mW m−2 (+78 %) and 50 mW m−2 (+61 %) for the year 2050 from aviation emissions. Secondly, the non-linear effects of atmospheric chemistry in polluted regions such as Europe and North America lead to rather small reductions in ozone and OH in response to emission reductions, especially from land transport emissions. In addition, the increase in emissions from land transport in other parts of the world, particularly in South Asia, leads to an increased contribution of ozone and OH. In particular, ozone formed by land transport emissions from South Asia causes strong RF that partially offsets the reductions in Europe and North America. Moreover, our results show that besides the non-linear response, lack of international cooperation, as in the SSP3-7.0 projection, hinders mitigation of ground-level ozone.

elib-URL des Eintrags:https://elib.dlr.de/207910/
Dokumentart:Zeitschriftenbeitrag
Titel:The contribution of transport emissions to ozone mixing ratios and methane lifetime in 2015 and 2050 in the Shared Socioeconomic Pathways (SSPs)
Autoren:
AutorenInstitution oder E-Mail-AdresseAutoren-ORCID-iDORCID Put Code
Mertens, MarianoDLR, IPAhttps://orcid.org/0000-0003-3549-6889NICHT SPEZIFIZIERT
Brinkop, SabineDLR, IPAhttps://orcid.org/0000-0003-3167-203XNICHT SPEZIFIZIERT
Graf, PhoebeDLR, IPAhttps://orcid.org/0000-0002-7494-8035NICHT SPEZIFIZIERT
Grewe, VolkerDLR, IPAhttps://orcid.org/0000-0002-8012-6783NICHT SPEZIFIZIERT
Hendricks, JohannesDLR, IPANICHT SPEZIFIZIERTNICHT SPEZIFIZIERT
Jöckel, PatrickDLR, IPAhttps://orcid.org/0000-0002-8964-1394NICHT SPEZIFIZIERT
Lanteri, AnnaDLR, IPANICHT SPEZIFIZIERTNICHT SPEZIFIZIERT
Matthes, SigrunDLR, IPAhttps://orcid.org/0000-0002-5114-2418NICHT SPEZIFIZIERT
Rieger, VanessaDLR, IPAhttps://orcid.org/0000-0002-7328-5102NICHT SPEZIFIZIERT
Righi, MattiaDLR, IPAhttps://orcid.org/0000-0003-3827-5950NICHT SPEZIFIZIERT
Thor, Robin NiclasDLRhttps://orcid.org/0000-0001-5703-0495NICHT SPEZIFIZIERT
Datum:30 Oktober 2024
Erschienen in:Atmospheric Chemistry and Physics (ACP)
Referierte Publikation:Ja
Open Access:Ja
Gold Open Access:Ja
In SCOPUS:Ja
In ISI Web of Science:Ja
DOI:10.5194/acp-24-12079-2024
Seitenbereich:Seiten 12079-12106
Verlag:Copernicus Publications
ISSN:1680-7316
Status:veröffentlicht
Stichwörter:Ozone, Verkehr, Emissionen, Klima, Methan, Luftverkehr, Nicht-CO2
HGF - Forschungsbereich:Luftfahrt, Raumfahrt und Verkehr
HGF - Programm:Verkehr
HGF - Programmthema:Verkehrssystem
DLR - Schwerpunkt:Verkehr
DLR - Forschungsgebiet:V VS - Verkehrssystem
DLR - Teilgebiet (Projekt, Vorhaben):V - MoDa - Models and Data for Future Mobility_Supporting Services
Standort: Oberpfaffenhofen
Institute & Einrichtungen:Institut für Physik der Atmosphäre > Erdsystem-Modellierung
Hinterlegt von: Mertens, Mariano
Hinterlegt am:30 Okt 2024 12:41
Letzte Änderung:12 Nov 2024 11:44

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