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Three-Dimensional Structural and Diurnal Dynamics of NO 2 and HCHO by UAV Hyperspectral in Bangkok

IMPACT SIGNAL76/100
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Information from the abstract

Fine-scale characterization of urban air pollution remains constrained by observational limitations. Here we used UAV-based hyperspectral remote sensing to conduct multitemporal and multialtitude measurements in Bangkok. High-temporal-resolution observations resolve pronounced diurnal signatures of traffic emissions: NO 2 peaks in the morning under stable boundary layer conditions, whereas HCHO peaks in the afternoon, consistent with secondary photochemical production. At 100 m resolution, UAV measurements capture sharp spatial gradients and resolve localized concentration enhancements, enabling precise identification of pollution hotspots. Three-dimensional observations further show that vertical variability is not governed by simple attenuation but by structural reorganization: NO 2 decreases rapidly with altitude, accompanied by strong gradient damping, whereas HCHO maintains coherent spatial patterns across height. This contrast indicates distinct three-dimensional organization regimes for primary and secondary species. By simultaneously delivering high temporal, spatial, and vertical resolution, UAV observations provide unprecedented constraints on fine-scale urban pollution structure. These results establish UAV platforms as an effective complementary tool for three-dimensional atmospheric monitoring and for constraining urban atmospheric chemistry models.

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Why this record is monitored

This record has an Impact Signal of 76/100 based on recency, source, collaboration, and bibliographic signals. It prioritizes monitoring and is not a judgment of research quality.

Related topics: Atmospheric chemistry and aerosols · Atmospheric aerosols and clouds · Air Quality and Health Impacts

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Thai researcher and institutional participation

Worapop Thongsame · Chonlada Bennett · Titaporn Supasri · Jeerasak Longmali · National Astronomical Research Institute of Thailand

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