Aug 2026· Journal of Geophysical Research - Atmospheres· Vol 131· 0 citations· 82 references
Abstract
Wildfires emit smoke particles and trace gases including greenhouse gases into the atmosphere, impacting the environment and leading to detrimental impacts on human health and economy. The estimation of spatially and temporally resolved methane emissions from biomass burning (BB) provides critical information in developing measurement‐informed methane inventories. The use of satellite active fire products (fire radiative power) is an effective pathway to investigate wildfire emissions around the world. In this study, the Global BB Emissions Product‐eXtended algorithm is employed to estimate long‐term temporal variation and geographic distribution of methane emissions from BB using satellite observations from the Moderate Resolution Imaging Spectroradiometer and the Visible Infrared Imaging Radiometer Suite. Globally, on average about 19 Megatonnes of BB methane are released to the atmosphere every year, nearly half of it originating from Africa, where BB represents a significant proportion of the total methane emissions. Our findings show that methane emissions from wildfires are substantial and can exceed other source sectors during extreme wildfire events, negating gains from years of emission reductions from anthropogenic sources. The contribution of fires to the methane budget is significant for regions with intense fire activities. Effective wildfire prevention and management could be beneficial to rapidly reduce methane emissions from BB.
ABSTRACT Atmospheric methane (CH4) concentrations are accelerating global warming as net emissions increase. Observing systems that quantify sources remain too sparse and fragmented to detect trends—especially in remote regions where climate‐driven natural emissions may be rising. We provide a framework for quantifying...
P. Ciais, S. Peng, J. Chang et al.· Advancement of science· 0 citations
A driving factor of global climate change is the increased emissions of greenhouse gases, mainly carbon dioxide and methane. These emissions may originate naturally from atmospheric exchanges with the oceans, forest fires, or microbial activity, or they can also be produced by human activities like the burning of fossi...
M. Chartrand· 150th anniversary of the Met...· 0 citations
China emits the most methane of any country worldwide, but there are large uncertainties in recent emissions trends, sources, and the potential impacts of policy actions. This study focuses on a period when the government initiated ambitious methane control efforts, linking sectoral policies with atmospheric evidence o...
Ziting Huang, Ao Chen, Le-Yang Feng et al.· 0 citations
The January 2025 wildland–urban interface (WUI) fires in Los Angeles (LA) County significantly affected regional air quality. Here, using the best available fuel loading data sets, emission factor (EF) measurements, and satellite fire products, we develop a high-resolution, spatiotemporally resolved emissions invento...
Soroush E. Neyestani, Hao Hu, Dan-Dan Wei et al.· ACS ES&T Air· 0 citations
Lakes are globally important sources of atmospheric methane (CH4), yet a process‐based understanding of their emissions and drivers at regional scales remains limited. Here we developed and applied a one‐dimensional lake model to 42,948 natural lakes across the contiguous United States (CONUS). Simulations indicate tha...
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