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Residual impacts of a wildland urban interface fire on urban particulate matter and dust: a study from the Marshall Fire

Jonathan M. Silberstein; Liora E. Mael; Caroline R. Frischmon; Emma S. Rieves; Evan R. Coffey; Trupti Das; William Dresser; Avery C. Hatch; Jyotishree Nath; Helena O. Pliszka; Colleen E. Reid; Marina E. Vance; Christine Wiedinmyer; Joost A. De Gouw; Michael P. Hannigan
Air Quality, Atmosphere & Health · Vol. 16, Issue 9 · pp. 1839-1850 · 2023

Abstract

The impacts of wildfires along the wildland urban interface (WUI) on atmospheric particulate concentrations and composition are an understudied source of air pollution exposure. To assess the residual impacts of the 2021 Marshall Fire (Colorado), a wildfire that predominantly burned homes and other human-made materials, on homes within the fire perimeter that escaped the fire, we performed a combination of fine particulate matter (PM 2.5 ) filter sampling and chemical analysis, indoor dust collection and chemical analysis, community scale PurpleAir PM 2.5 analysis, and indoor particle number concentration measurements. Following the fire, the chemical speciation of dust collected in smoke-affected homes in the burned zone showed elevated concentrations of the biomass burning marker levoglucosan (median levo = 4147 ng g −1 ), EPA priority toxic polycyclic aromatic hydrocarbons (median Σ 16 PAH = 1859.3 ng g −1 ), and metals (median Σ 20 Metals = 34.6 mg g −1 ) when compared to samples collected in homes outside of the burn zone 6 months after the fire. As indoor dust particles are often resuspended and can become airborne, the enhanced concentration of hazardous metals and organics within dust samples may pose a threat to human health. Indoor airborne particulate organic carbon (median = 1.91 μg m −3 ), particulate elemental carbon (median = .02 μg m −3 ), and quantified semi-volatile organic species in PM 2.5 were found in concentrations comparable to ambient air in urban areas across the USA. Particle number and size distribution analysis at a heavily instrumented supersite home located immediately next to the burned area showed indoor particulates in low concentrations (below 10 μg m −3 ) across various sizes of PM (12 nm–20 μm), but were elevated by resuspension from human activity, including cleaning. Graphical Abstract

Bibliographic Information

JournalAir Quality, Atmosphere & Health
PublisherSpringer
Publication Date2023-09-01
Publication Year2023
Volume16
Issue9
Pages1839-1850
Document TypeJournal Article
Print ISSN1873-9318
eISSN1873-9326
DOI10.1007/s11869-023-01376-3

Access Information

NARA Access Coverage2008-01-01~Current
Journal Homepagehttps://www.springer.com/journal/11869
Publisher PageOpen Publisher Page
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