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Carbonaceous aerosol in jet engine exhaust: emission characteristics and implications for heterogeneous chemical reactions
Institution:2. State Environmental Protection Key Laboratory of Formation and Prevention of Urban Air Pollution Complex, Shanghai Academy of Environmental Sciences, Shanghai 200233, China;1. Univ. Savoie Mont-Blanc, LCME, F-73000 Chambéry, France;2. Air Rhône-Alpes, Bron, France;3. SGL CARBON S.A.S, Passy France;4. Univ. Grenoble Alpes, CNRS, LGGE, F-38000 Grenoble, France
Abstract:Characteristic parameters of black carbon aerosol (BC) emitted from jet engine were measured during ground tests and in-flight behind the same aircraft. Size distribution features were a primary BC mode at a modal diameter D≈0.045 μm, and a BC agglomeration mode at D<0.2 μm. The total BC number concentration at the engine exit was 2.9×107 cm-3 with good agreement between model results and in-flight measured number concentrations of non-volatile particles with D⩾0.014 μm. A comparison between total number concentration of BC particles and the non-volatile fraction of the total aerosol at the exit plane suggests that the non-volatile fraction of jet engine exhaust aerosol consists almost completely of BC. In-flight BC mass emission indices ranged from 0.11 to 0.15 g BC (kg fuel)-1. The measured in-flight particle emission value was 1.75±0.15×1015 kg-1 with corresponding ground test values of 1.0–8.7×1014 kg-1. Both size distribution properties and mass emission indices can be scaled from ground test to in-flight conditions. Implications for atmospheric BC loading, BC and cirrus interaction and the potential of BC for perturbation of atmospheric chemistry are briefly outlined.
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