Literature DB >> 25180674

Electron microscopic study of soot particulate matter emissions from aircraft turbine engines.

Anthi Liati1, Benjamin T Brem, Lukas Durdina, Melanie Vögtli, Yadira Arroyo Rojas Dasilva, Panayotis Dimopoulos Eggenschwiler, Jing Wang.   

Abstract

The microscopic characteristics of soot particulate matter (PM) in gas turbine exhaust are critical for an accurate assessment of the potential impacts of the aviation industry on the environment and human health. The morphology and internal structure of soot particles emitted from a CFM 56-7B26/3 turbofan engine were analyzed in an electron microscopic study, down to the nanoscale, for ∼ 100%, ∼ 65%, and ∼ 7% static engine thrust as a proxy for takeoff, cruising, and taxiing, respectively. Sampling was performed directly on transmission electron microscopy (TEM) grids with a state-of-the-art sampling system designed for nonvolatile particulate matter. The electron microscopy results reveal that ∼ 100% thrust produces the highest amount of soot, the highest soot particle volume, and the largest and most crystalline primary soot particles with the lowest oxidative reactivity. The opposite is the case for soot produced during taxiing, where primary soot particles are smallest and most reactive and the soot amount and volume are lowest. The microscopic characteristics of cruising condition soot resemble the ones of the ∼ 100% thrust conditions, but they are more moderate. Real time online measurements of number and mass concentration show also a clear correlation with engine thrust level, comparable with the TEM study. The results of the present work, in particular the small size of primary soot particles present in the exhaust (modes of 24, 20, and 13 nm in diameter for ∼ 100%, ∼ 65% and ∼ 7% engine thrust, respectively) could be a concern for human health and the environment and merit further study. This work further emphasizes the significance of the detailed morphological characteristics of soot for assessing environmental impacts.

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Year:  2014        PMID: 25180674     DOI: 10.1021/es501809b

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  6 in total

1.  Ultrafine particle size as a tracer for aircraft turbine emissions.

Authors:  Erin A Riley; Timothy Gould; Kris Hartin; Scott A Fruin; Christopher D Simpson; Michael G Yost; Timothy Larson
Journal:  Atmos Environ (1994)       Date:  2016-05-10       Impact factor: 4.798

2.  Impact of Biofuel Blends on Black Carbon Emissions from a Gas Turbine Engine.

Authors:  Raju R Kumal; Jiawei Liu; Akshay Gharpure; Randy L Vander Wal; John S Kinsey; Bob Giannelli; Jeffrey Stevens; Cullen Leggett; Robert Howard; Mary Forde; Alla Zelenyuk-Imre; Kaitlyn Suski; Greg Payne; Julien Manin; William Bachalo; Richard Frazee; Timothy B Onasch; Andrew Freedman; David B Kittelson; Jacob J Swanson
Journal:  Energy Fuels       Date:  2020-04-16       Impact factor: 3.605

3.  Short-term effects of airport-associated ultrafine particle exposure on lung function and inflammation in adults with asthma.

Authors:  Rima Habre; Hui Zhou; Sandrah P Eckel; Temuulen Enebish; Scott Fruin; Theresa Bastain; Edward Rappaport; Frank Gilliland
Journal:  Environ Int       Date:  2018-05-26       Impact factor: 13.352

4.  A number-based inventory of size-resolved black carbon particle emissions by global civil aviation.

Authors:  Xiaole Zhang; Xi Chen; Jing Wang
Journal:  Nat Commun       Date:  2019-02-01       Impact factor: 14.919

5.  Non-volatile particle emissions from aircraft turbine engines at ground-idle induce oxidative stress in bronchial cells.

Authors:  Hulda R Jonsdottir; Mathilde Delaval; Zaira Leni; Alejandro Keller; Benjamin T Brem; Frithjof Siegerist; David Schönenberger; Lukas Durdina; Miriam Elser; Heinz Burtscher; Anthi Liati; Marianne Geiser
Journal:  Commun Biol       Date:  2019-03-05

6.  Re-recognizing micro locations of nanoscale zero-valent iron in biochar using C-TEM technique.

Authors:  Kun Yang; Jialu Xu; Ming Zhang; Daohui Lin
Journal:  Sci Rep       Date:  2021-03-03       Impact factor: 4.379

  6 in total

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