Recent advances in TROPOMI-based methane source detection: a systematic review
作者:Ruoqi Liu, Shun Li, Geli Zhang, Mengyao Liu, X. L. Lu, Shushi Peng, Lu Shen, Yu Zhang, Minghao Zhuang, Xiaoxing Zuo, Jinwei Dong · 发表于:GIScience & Remote Sensing · 年份:2026 · DOI:10.1080/15481603.2026.2650822 · 被引用次数:2 · 研究领域:Spectroscopy and Laser Applications、Advanced Chemical Sensor Technologies、Atmospheric and Environmental Gas Dynamics
The renewed increase in atmospheric methane (CH4) concentrations since 2007, culminating in record growth rates in 2021, poses a critical challenge to achieving global climate targets. The TROPOspheric Monitoring Instrument (TROPOMI) onboard the Sentinel-5 Precursor satellite provides unprecedented daily global observations of CH4 at a spatial resolution (7 × 7 km2, improved to 5.5 × 7 km2 since August 2019), enabling substantial advances in space-based CH4 monitoring and emission quantification. Here, we synthesize and categorize 133 published studies spanning global, regional and local scales and covering both anthropogenic and natural CH4 sources. Collectively, these studies demonstrate TROPOMI's capability to quantify emissions across diverse spatiotemporal scales, as well as its synergy with other satellite instruments for detecting and attributing facility-level sources, such as fossil fuel infrastructure and landfills. However, emission estimates remain challenged by uncertainties in column-averaged CH4 (XCH4) retrievals related to surface albedo effects and persistent cloud cover, particularly in tropical and high-latitude regions. These limitations can be mitigated through improved retrieval algorithms, refined quality filtering, multisatellite fusion, and integration with ground-based observations and airborne campaigns. Furthermore, we assess the suitability of different quantification approaches for specific source types, such as Gaussian plume models for large is...