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Emission Factors of CO2 and Airborne Pollutants and Toxicological Potency of Biofuels for Airplane Transport: A Preliminary Assessment

TitoloEmission Factors of CO2 and Airborne Pollutants and Toxicological Potency of Biofuels for Airplane Transport: A Preliminary Assessment
Tipo di pubblicazioneArticolo su Rivista peer-reviewed
Anno di Pubblicazione2022
AutoriGualtieri, Maurizio, Berico M., Grollino Maria Giuseppa, Cremona Giuseppe, La Torretta Teresa M. G., Malaguti Antonella, Petralia Ettore, Stracquadanio Milena, Santoro Massimo, Benassi Barbara, Piersanti Antonio, Chiappa A., Bernabei M., and Zanini Gabriele
RivistaToxics
Volume10
ISSN23056304
Abstract

Aviation is one of the sectors affecting climate change, and concerns have been raised over the increase in the number of flights all over the world. To reduce the climate impact, efforts have been dedicated to introducing biofuel blends as alternatives to fossil fuels. Here, we report environmentally relevant data on the emission factors of biofuel/fossil fuel blends (from 13 to 17% v/v). Moreover, in vitro direct exposure of human bronchial epithelial cells to the emissions was studied to determine their potential intrinsic hazard and to outline relevant lung doses. The results show that the tested biofuel blends do not reduce the emissions of particles and other chemical species compared to the fossil fuel. The blends do reduce the elemental carbon (less than 40%) and total volatile organic compounds (less than 30%) compared to fossil fuel emissions. The toxicological outcomes show an increase in oxidative cellular response after only 40 min of exposure, with biofuels causing a lower response compared to fossil fuels, and lung-deposited doses show differences among the fuels tested. The data reported provide evidence of the possibility to reduce the climate impact of the aviation sector and contribute to the risk assessment of biofuels for aviation. © 2022 by the authors.

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URLhttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85140633027&doi=10.3390%2ftoxics10100617&partnerID=40&md5=f8805c0da2ed167a159752a605181532
DOI10.3390/toxics10100617
Citation KeyGualtieri2022