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On-board measurements of particle and gaseous emissions from a large cargo vessel at different operating conditions.

Authors :
Chu-Van, Thuy
Ristovski, Zoran
Pourkhesalian, Ali Mohammad
Rainey, Thomas
Garaniya, Vikram
Abbassi, Rouzbeh
Jahangiri, Sanaz
Enshaei, Hossein
Kam, U-Shen
Kimball, Richard
Yang, Liping
Zare, Ali
Bartlett, Harry
Brown, Richard J.
Source :
Environmental Pollution; Jun2018, Vol. 237, p832-841, 10p
Publication Year :
2018

Abstract

This study investigated particle and gaseous emission factors from a large cargo vessel for her whole voyage including at berth, manoeuvring and cruising. Quantification of these factors assists in minimising the uncertainty in the current methods of exhaust gas emission factor estimation. Engine performance and emissions from the main marine engine were measured on-board while the ship was manoeuvring and cruising at sea. Emissions of an auxiliary engine working at 55% of maximum continuous rating (MCR) were measured when the ship was at actual harbour stopovers. Gaseous and particle emission factors in this study are presented in g kWh −1 or # kWh −1 , and compared with previous studies. Results showed that the SO 2 emission factor is higher than that of previous studies due to the high sulphur content of the fuel used. The particle number size distributions showed only one mode for different operating conditions of the ship, with a peak at around 40–50 nm, which was dominated by ultrafine particles. Emission factors of CO, HC, PM and PN observed during ship manoeuvring were much higher than that of those recorded at cruising condition. These findings highlight the importance of quantification and monitoring ship emissions in close proximity to port areas, as they can have the highest impact on population exposure. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02697491
Volume :
237
Database :
Supplemental Index
Journal :
Environmental Pollution
Publication Type :
Academic Journal
Accession number :
129073303
Full Text :
https://doi.org/10.1016/j.envpol.2017.11.008