Summary:

Wildfires can weaken the Amazon rainforestโ€™s ability to absorb carbon dioxide beyond the emissions released directly by burning, according to research examining nearly three decades of fire activity, ozone exposure and drought.

Using observations and a global vegetation model covering 1997โ€“2024, researchers found that pollutants released during fires contribute to ground-level ozone formation, which damages vegetation and reduces carbon uptake. The model estimated that this additional carbon loss was equivalent to approximately 24% of the carbon emitted directly by fires.

The study, published in Communications Earth & Environment, also showed that ozone damage varied considerably between major droughts. During the 2023โ€“24 drought, estimated damage was nearly twice the average level of the preceding decade, despite reductions in stomatal opening that can limit ozone entering leaves.

The results identify an additional pathway through which fires linked to human activity can affect the Amazon carbon balance. Reducing deforestation and forest degradation could therefore limit both direct fire emissions and the ozone pollution that further weakens the forestโ€™s capacity to absorb carbon dioxide.

Image: Fig. 1: Evaluation of annual gross primary productivity (GPP) over the Amazon region - 'Fire-derived ozone intensifies carbon loss in Amazon forests under extreme droughts'
Annual changes in Amazon rainforest gross primary productivity (GPP), a measure of carbon absorbed by plants through photosynthesis, from 1997 to 2024. Blue and green lines show modelled productivity with and without ozone damage, respectively, while black lines represent satellite-based estimates from GOSIF (2002โ€“2024, solid) and FluxSat (2002โ€“2023, dashed). Shaded areas indicate drought years. Long-term trends have been removed to make year-to-year variations easier to compare. Credit: Brown et al. (2026) | DOI: 10.1038/s43247-026-04047-0 | Communications Earth & Environment | CC BY

— Press Release —
Wildfire ozone pollution weakening Amazon’s ability to absorb carbon

Ground-level ozone is formed when pollutants from sources such as wildfires react in the presence of sunlight.

This harms human health and interferes with plants’ ability to absorb carbon dioxide (COโ‚‚) from the atmosphere.

This means wildfires have a double impact on our climate: both directly releasing COโ‚‚ from biomass burning and reducing the ability of remaining forests to capture and store COโ‚‚.

And the researchers โ€“ from the University of Exeter, ETH Zurich and James Cook University โ€“ warn that this year’s strengthening El Niรฑo could bring a repeat of the record damage seen in 2024.

Hidden carbon loss

The new study, published in the journal Communications Earth & Environment, calculates that fire-driven ozone damage cuts Amazon carbon uptake by an amount equivalent to around 24% of the carbon emitted by the fires themselves.

This effect is strongest during major droughts, and three of the most extreme Amazon droughts of the past three decades (1997/98, 2015/16 and 2023/24) occurred during El Niรฑo events.

Image: Ozone damage on a leaf
Ozone damage on a leaf of Homalanthus novoguineensis, a plant species native to the Australasian region. The photograph illustrates how ground-level ozone can injure plant foliage. Credit: Alexander Cheesman

El Niรฑo is the warm phase of a natural, recurring global climate cycle. Itโ€™s not caused by human activity, but climate change means it sits on rising baseline temperatures, making it more likely to push global temperatures to record highs and intensify extreme weather.

With forecasters warning that a strong El Niรฑo is already developing this year โ€“ with the potential to become one of the most intense on record โ€“ the authors of the news study say we are likely to see another major spike in hidden carbon loss.

Distinct signature

“Forest fires don’t just release COโ‚‚ when they burn,” said lead author Dr Flossie Brown, of ETH Zurich.

“They also contribute to the rise in ground-level ozone, a pollutant that damages the leaves of surviving trees and reduces their ability to keep absorbing carbon afterwards.

“We found this hidden effect is equivalent to around a quarter of the carbon released by the fires themselves โ€“ a significant loss to the Amazon’s carbon budget that hasn’t previously been considered.”

The researchers used nearly three decades of observations and a global vegetation model to track how ozone damage has changed from 1997 to 2024, alongside fire activity and drought.

“The Amazon droughts we studied have each left a distinct signature,” Dr Brown said.

“Ozone damage during the 2023/24 drought nearly doubled compared to the average of the previous decade. Given that a comparably strong El Niรฑo appears to be developing again this year, we’re concerned we could see history repeat itself.”

Solutions overlap

Almost all fires in the Amazon are started by people, either through land clearance or agriculture that escapes into standing forest. The worst ozone damage is concentrated in the “Arc of Deforestation”, where agricultural land is expanding into the rainforest.

“That means the extra ozone damage we’re describing is largely preventable,” said Professor Stephen Sitch, of the University of Exeter.

“Reducing deforestation and forest degradation would cut direct fire emissions โ€“ but our study shows it would also protect the Amazon from this secondary, invisible source of carbon loss.”

Co-author Dr Alexander Cheesman, of James Cook University, said the findings show that air pollution, land-clearing and climate change cannot be treated as separate problems in determining the future of the Amazon.

“These impacts interact and need to be considered together,” he said. “But this also means that solutions may have multiple benefits. Policies that tackle deforestation and degradation address both the COโ‚‚ released directly by fires and the ozone pollution quietly eroding what’s left of the forest’s ability to soak it back up.”

***

This research was funded by the Natural Environment Research Council, partly via the GW4+ Doctoral Training Partnership.

For more information about the research, visit the TropOz website: https://tropoz.org/

Journal Reference:
Brown, F., Sitch, S., Folberth, G.A. et al., ‘Fire-derived ozone intensifies carbon loss in Amazon forests under extreme droughts’, Communications Earth & Environment 7, 790 (2026). DOI: 10.1038/s43247-026-04047-0

Article Source:
Press Release/Material by Alex Morrison | University of Exeter
Featured image: Smoke from widespread wildfires in Bolivia spreads across parts of South America in this Copernicus Sentinel-3 satellite image captured on 1 September 2024. Pollutants released by fires contribute to ground-level ozone formation, which can damage vegetation and reduce the Amazon rainforest’s ability to absorb carbon dioxide. Credit: European Union | Contains modified Copernicus Sentinel data (2024), processed by ESA

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