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◆ Environmental research2026-09-05

Integrating FT-ICR MS with Rule-Based Prediction and QSAR to Resolve Nitrogen-Containing Organic Compounds and Their Toxicity in Wildfire-Derived PM2.5.

Geondo Park, Yun Gyong Ahn, Nguyen Van Kien, Jungmin Jo, Eunji Jeon, Seong Weon Lee, Seungjun Oh, Chan Sik Cho, Kun Cho, Young Hwan Kim, Sunghwan Kim

原始摘要(英文原文)· Original abstract
The intensification of wildfire seasons, driven by global warming, has established wildfires as a primary contributor to aerosol particulate matter (APM) levels. However, the formation mechanisms and molecular composition of nitrogen-containing organic compounds in wildfire-derived APM remain poorly understood. This study characterizes, at the molecular level, wildfire-derived PM2.5 from a wildfire in a temperate coniferous forest in South Korea. Gas chromatography-mass spectrometry analysis revealed that nitrated polycyclic aromatic compound concentrations were approximately 3.4 times higher during the wildfire period (0.122 ng/m3) than the post-wildfire period (0.036 ng/m3), with 2-nitrofluorene and 3-nitrofluoranthene predominating in each period, respectively. Fourier transform ion cyclotron resonance mass spectrometry analysis revealed a relative shift toward CHON compounds across the sampling periods, and rule-based secondary organic aerosol predictions using 12 volatile organic compound precursors matched against observed data, with limonene-derived products showing the highest number of molecular-formula matched compounds. Quantitative structure activity relationship (QSAR)-based lethal concentration (LC50) predictions showed that β-pinene-, α-pinene-, and isoprene-derived compounds exhibited predicted values of 1.0, 1.6, and 8.3 mg/L, respectively. Because these predictions were based on structures assigned at the molecular-formula level, they provide a preliminary hazard ranking of the associated precursor classes rather than confirmed toxicity. Taken together, the observed compositional shifts point to secondary atmospheric processing of nitrogen-containing organic compounds as a factor meriting further consideration in wildfire assessments.
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Integrating FT-ICR MS with Rule-Based Prediction and QSAR to Resolve Nitrogen-Containing Organic Compounds and Their Toxicity in Wildfire-Derived PM2.5. — 科研速览 Science Skim