Cleaner burning aviation fuels can reduce contrail cloudiness

Author:

Voigt ChristianeORCID,Kleine Jonas,Sauer Daniel,Moore Richard H.ORCID,Bräuer TizianaORCID,Le Clercq PatrickORCID,Kaufmann Stefan,Scheibe Monika,Jurkat-Witschas Tina,Aigner Manfred,Bauder UweORCID,Boose YvonneORCID,Borrmann Stephan,Crosbie Ewan,Diskin Glenn S.ORCID,DiGangi Joshua,Hahn Valerian,Heckl Christopher,Huber Felix,Nowak John B.ORCID,Rapp MarkusORCID,Rauch BastianORCID,Robinson Claire,Schripp TobiasORCID,Shook MichaelORCID,Winstead Edward,Ziemba Luke,Schlager Hans,Anderson Bruce E.

Abstract

AbstractContrail cirrus account for the major share of aviation’s climate impact. Yet, the links between jet fuel composition, contrail microphysics and climate impact remain unresolved. Here we present unique observations from two DLR-NASA aircraft campaigns that measured exhaust and contrail characteristics of an Airbus A320 burning either standard jet fuels or low aromatic sustainable aviation fuel blends. Our results show that soot particles can regulate the number of contrail cirrus ice crystals for current emission levels. We provide experimental evidence that burning low aromatic sustainable aviation fuel can result in a 50 to 70% reduction in soot and ice number concentrations and an increase in ice crystal size. Reduced contrail ice numbers cause less energy deposition in the atmosphere and less warming. Meaningful reductions in aviation’s climate impact could therefore be obtained from the widespread adoptation of low aromatic fuels, and from regulations to lower the maximum aromatic fuel content.

Funder

Deutsche Forschungsgemeinschaft

Helmholtz Association

Publisher

Springer Science and Business Media LLC

Subject

General Earth and Planetary Sciences,General Environmental Science

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