English

PollutionNet: A Vision Transformer Framework for Climatological Assessment of NO$_2$ and SO$_2$ Using Satellite-Ground Data Fusion

Computer Vision and Pattern Recognition 2026-04-07 v1 Atmospheric and Oceanic Physics

Abstract

Accurate assessment of atmospheric nitrogen dioxide (NO2_2) and sulfur dioxide (SO2_2) is essential for understanding climate-air quality interactions, supporting environmental policy, and protecting public health. Traditional monitoring approaches face limitations: satellite observations provide broad spatial coverage but suffer from data gaps, while ground-based sensors offer high temporal resolution but limited spatial extent. To address these challenges, we propose PollutionNet, a Vision Transformer-based framework that integrates Sentinel-5P TROPOMI vertical column density (VCD) data with ground-level observations. By leveraging self-attention mechanisms, PollutionNet captures complex spatiotemporal dependencies that are often missed by conventional CNN and RNN models. Applied to Ireland (2020-2021), our case study demonstrates that PollutionNet achieves state-of-the-art performance (RMSE: 6.89 μ\mug/m3^3 for NO2_2, 4.49 μ\mug/m3^3 for SO2_2), reducing prediction errors by up to 14% compared to baseline models. Beyond accuracy gains, PollutionNet provides a scalable and data-efficient tool for applied climatology, enabling robust pollution assessments in regions with sparse monitoring networks. These results highlight the potential of advanced machine learning approaches to enhance climate-related air quality research, inform environmental management, and support sustainable policy decisions.

Keywords

Cite

@article{arxiv.2604.03311,
  title  = {PollutionNet: A Vision Transformer Framework for Climatological Assessment of NO$_2$ and SO$_2$ Using Satellite-Ground Data Fusion},
  author = {Prasanjit Dey and Soumyabrata Dev and Bianca Schoen-Phelan},
  journal= {arXiv preprint arXiv:2604.03311},
  year   = {2026}
}

Comments

This manuscript is currently under review at Theoretical and Applied Climatology (Springer)