4.6 Article

UAV-Based Wildland Fire Air Toxics Data Collection and Analysis

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SENSORS
卷 23, 期 7, 页码 -

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MDPI
DOI: 10.3390/s23073561

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Unmanned Aerial Vehicles; wildfire; smoke plumes; air quality monitoring; low-cost sensors; volatile organic compounds

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Smoke plumes from wildfires in wildland-urban interface released toxic chemical substances, mainly due to synthetic components burning. Using UAVs with air quality sensors and VOC samplers can provide high-resolution data for analyzing these air toxics. The prototype developed by CAL FIRE has been successfully tested in prescribed fires.
Smoke plumes emitted from wildland-urban interface (WUI) wildfires contain toxic chemical substances that are harmful to human health, mainly due to the burning of synthetic components. Accurate measurement of these air toxics is necessary for understanding their impacts on human health. However, air pollution is typically measured using ground-based sensors, manned airplanes, or satellites, which all provide low-resolution data. Unmanned Aerial Vehicles (UAVs) have the potential to provide high-resolution spatial and temporal data due to their ability to hover in specific locations and maneuver with precise trajectories in 3-D space. This study investigates the use of an octocopter UAV, equipped with a customized air quality sensor package and a volatile organic compound (VOC) air sampler, for the purposes of collecting and analyzing air toxics data from wildfire plumes. The UAV prototype developed has been successfully tested during several prescribed fires conducted by the California Department of Forestry and Fire Protection (CAL FIRE). Data from these experiments were analyzed with emphasis on the relationship between the air toxics measured and the different types of vegetation/fuel burnt. BTEX compounds were found to be more abundant for hardwood burning compared to grassland burning, as expected.

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