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◆ Environment International2026-06-14· Hotspot (geology)

Sarajevo severe fine aerosol burden: A European pollution hotspot

Marta Via, Benjamin Chazeau, Asta Gregorič, Michael Bauer, Kristina Glojek, Petra Makorič, Iasonas Stavroulas, Jay Slowik, Martin Rigler, Philip Croteau, Leah Williams, John Jayne, Kaspar Daellenbach, Almir Bijedić, Enis Omerčić, Enis Krečinić, Dragana Đordevic, Sanja Frka, Griša Močnik, André S.H. Prévôt, K. Džepina

原始摘要(英文原文)· Original abstract
Sarajevo is the most PM 2.5 -polluted European capital (IQAir Report, 2024); however, fine aerosol measurements studies in the city are scarce. This study presents the results of an 8-month campaign in Sarajevo site focusing on organic aerosol (OA) and equivalent black carbon (eBC) and their respective sources. The mean PM 1 campaign concentration in Sarajevo is 34.2 μg·m −3 with significantly higher contributions in winter stagnation episodes during which daily concentrations can exceed 100 μg·m −3 . Furthermore, the number of daily PM 1 concentrations during this 8-month campaign exceeding the EU legislation PM 2.5 limit value are more than 4 times the stated maximum number of days per year. The eBC sources consist of liquid fuel (eBC lf , 62%), and solid fuel (eBC sf , 38%) combustion, the latter proportion being higher than in other European sites. OA source apportionment results revealed 4 factors: hydrocarbon-like OA (HOA, 15%), two solid fuel combustion OA (SFOA1, 31%; SFOA2, 9%), and oxygenated OA (OOA, 44%). HOA and eBC lf are related to traffic emissions; SFOA1, SFOA2, and eBC sf are associated with residential heating, although SFOA2 potentially reflects additional regional combustion sources; and OOA shows regional, secondary aerosol characteristics with biomass burning emissions influence. Accordingly, Sarajevo’s burden from air pollution could lead to all-cause mortality on the order of 10% during its heavy-polluted episodes. Overall, the submicron aerosol in Sarajevo constitutes a hotspot of fine aerosol pollution in comparison to other European sites both in its absolute concentrations and its relative proportion of biomass burning and SO 4 2− , making this hotspot more comparable to those observed in other global hotspots than to typical European urban backgrounds.
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