4.5 Article

Any Long-term Effect of the Beirut Port Explosion on the Airborne Particulate Matter?

期刊

AEROSOL AND AIR QUALITY RESEARCH
卷 23, 期 5, 页码 -

出版社

TAIWAN ASSOC AEROSOL RES-TAAR
DOI: 10.4209/aaqr.220395

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Ammonium nitrate; Beirut port explosion; Particulate matter; Air quality; Exposure risks

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The long-term effects of the 2020 Beirut port explosion on air quality and public health are inconclusive. This study collected PM10 samples in Beirut one month and three months after the explosion and compared the concentrations of various components with previous years. The results suggest that the explosion had minimal impact on post-explosion PM concentrations, but investigations on chemical contaminations in soil and water are urgently needed.
The Beirut port explosion in 2020 released a huge amount of chemicals including ammonium nitrate, however, the long-term effects of the explosion on air quality and public health remain unclear. In this study, particulate matter (PM10) samples were collected in Beirut, Lebanon 1 month and 3 months after the explosion. The average concentrations of main anions measured in 2020 (one and three months after the explosion) were compared with those in 2009-2015 by calculating the percentage of difference, and the average concentrations of cations and anions in September (one month after the explosion) and November (three months after the explosion) 2020 were also compared to identify any abnormal values, indicating insignificant effects on the post-explosion PM in terms of component concentrations. That is, PM and gases directly induced by the explosion might be subject to rapid atmospheric transport and deposition. Hence, the results imply that investigations of the chemical contaminations in soil and water are urgently needed. Long-term monitoring is necessary to avoid subsequent air pollution caused by possible particle resuspension. The continuous demolition and reconstruction after the explosion are possibly the main long-term effect of the Beirut port explosion, causing an elevated concentration of PM2.5 at ground level 400% higher than the recommended concentrations (15 mu g m-3 for 24-hour mean). Protective measures must be taken to reduce the exposure risks by controlling the PM release from demolition and construction, traffic, and diesel generators. The cancer risk in Beirut based on PAHs measurements in 2021 was also estimated and discussed.

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