New research finds that wildfire smoke substantially increases ozone concentrations, even in remote areas with few human emission sources. The study suggests that removing anthropogenic NOx emissions would not eliminate ozone problems, as fires can still produce ozone.
Combining federal monitors, low-cost sensors, and satellite data can provide a more complete picture of local air quality, enabling people to make safer choices in real-time. The study highlights the importance of timely and accurate air quality information during wildfire events.
A study by Boston University School of Public Health and the University of Helsinki estimates that the Los Angeles wildfires in January 2025 resulted in at least 440 excess deaths, nearly 15 times higher than the official 31 deaths reported. The fires caused widespread destruction and disrupted healthcare services.
Research shows that the 2025 Los Angeles wildfires resulted in an estimated 440 excess deaths, while the 2023 Maui wildfires led to immediate increases in suicide and overdose deaths. Higher social support was linked to improved mental health outcomes but did not buffer physiological effects.
A new study published in JAMA found that the August 2023 Maui wildfire led to a 46% increase in statewide suicide and overdose death rates, with a 97% increase in Maui alone. The researchers suggest direct exposure and indirect effects, such as concern for loved ones, contributed to the rise in deaths.
A new IIASA study highlights the critical role of socioeconomic conditions in shaping wildfire economic losses. By adopting sustainable development pathways, countries can reduce wildfire-related damages by up to 2% of GDP in low-income nations.
Researchers estimate that lightning kills around 320 million trees each year, resulting in significant biomass loss. This equates to an annual emission of 0.77-1.09 billion tons of CO₂, comparable to the emissions from wildfires.
Researchers at USC Viterbi School of Engineering developed AI model Allegro-FM, simulating billions of atoms simultaneously. This enables simulations 1,000 times larger than previous models, accelerating materials design and discovery.
Researchers at USC Viterbi School of Engineering developed AI model Allegro-FM to simulate behavior of billions of atoms simultaneously, enabling simulations 1,000 times larger than previous models. This breakthrough accelerates development of carbon-neutral concrete with unprecedented scalability.
A new study from Colorado State University and Western Colorado University found that aspen forests can act as natural firebreaks, slowing fires' spread. Aspen trees with high moisture content and chemical differences reduce flammability, making them more resistant to burning.
The elimination of federal and state tools to monitor and forecast climate disasters imperils public health efforts. Climate data is crucial for preparing and responding to heatwaves, wildfires, floods, and hurricanes, particularly affecting vulnerable populations.
A new approach to forest fire emergency response uses data-driven forecasting to anticipate where fires are most likely to occur. The system continuously adapts to changing conditions, ensuring resources are always positioned where they can be most effective.
Researchers found consistent evidence of reduced global atmospheric oxidation in 2020, driven by decreased nitrogen oxide emissions and extreme wildfires in the Southern Hemisphere. This decline had a significant impact on methane concentrations, contributing to one of the largest annual increases ever recorded.
Researchers found that prescribed burns can reduce the severity of subsequent wildfires by an average of 16% and net smoke pollution by an average of 14%. The study highlights a key nuance: prescribed fires were significantly more effective outside of the wildland-urban interface (WUI) than within it, with benefits seen in non-WUI zones.
A study published in JACC found that long-term exposure to wildfire smoke may increase the risk of heart failure, particularly among older adults, women, and those living in lower-income areas. The risk was found to be higher with increased levels of PM2.5 air pollution from wildfires compared to other types of air pollution.
A study of 100,000 water samples from 500 river basins found elevated levels of contaminants like organic carbon, phosphorus, nitrogen, and sediment persisting for years after wildfires. Water managers can use this data to inform planning strategies for increasing wildfire resilience.
A new study reveals that wildfires have a profound impact on water systems, affecting microbial communities and nutrient cycling. The researchers found that moderate heat processing from fires leads to more bioavailable carbon for microbes, but also disrupts the nitrogen cycle and natural balance of aquatic ecosystems.
A recent study found that wildfires in the US West Coast in 2020 led to the disruption of outdoor activities, which in turn shaped the circulation of respiratory pathogens such as influenza and COVID-19. This research highlights the indirect health impacts of extreme weather events.
Scientists at the Naval Research Laboratory are working with NASA to better understand pyrocumulonimbus clouds, which can inject smoke into the upper atmosphere and alter weather patterns. The Injected Smoke and Pyrocumulonimbus Experiment (INSPYRE) aims to enhance predictive weather modeling through detailed analysis of wildfire-induc...
A new Stanford University report examines how US power utilities are confronting the escalating threat of wildfires. The research team found that while progress has been made in some Western states, utilities in high-risk areas remain underprepared.
A new University of Washington study projects that increasing boreal fires in Canada and Siberia will slow global warming by 12% globally and 38% in the Arctic. The fires reduce sea ice loss and cooler winter temperatures, despite their own warming effects.
A PSU study found that fires can cause trees to die in subsequent years, affecting forest regeneration. The researchers mapped annual changes in live tree cover and found that older conifer trees and sensitive species were most likely to die later.
The January 2025 Los Angeles wildfires, ranking as the 2nd and 3rd most destructive wildfires in California's history, highlighted alarming trends of increasingly frequent and destructive urban wildfires. The study emphasizes the need for proactive measures to protect vulnerable communities in an era of increasing extreme events.
Researchers measured air quality over 19 months to capture both smoky and clear days, finding increases in fine aerosols and carbon monoxide during wildfires. The study has implications for weather, cloud formation, and public health.
This study reveals low wildfire activity across the Northern Hemisphere during PETM. The spatiotemporal evolution of wildfires was driven by climate change and vegetation succession, suppressing fire occurrence.
Record-breaking wildfires are rapidly transforming forests from carbon sinks to super-emitters due to warming and drought conditions. Planting trees can even increase wildfire risk in some cases.
A new report models current wildfire risks across the Southeastern US, projecting changes by the middle of this century under various scenarios. Prescribed fires can reduce wildfire risk through reduced fuels, promoting healthy forest growth.
A new study reveals the Madden-Julian Oscillation (MJO) triggers dry, windy conditions that exacerbate wildfires in mid-latitude regions like Los Angeles. The research suggests strong MJO activity can lead to fire-favorable conditions thousands of miles away.
The University of Texas at Arlington researcher Yunyao Li has been selected by NASA to develop a system that provides early warnings of hazardous air pollution from wildfires. The project aims to enhance wildfire air quality forecasting capabilities and develop tools for decision-making processes related to health management.
A new guidebook from Northern Arizona University provides essential support for individuals and communities affected by wildfires in Arizona. The comprehensive resource covers topics such as insurance, erosion control, emotional recovery, financial aid, and more to help residents recover from the aftermath of these devastating events.
A Washington State University-led team developed a low-cost paper sensor that can rapidly detect personal smoke exposure during wildfires. The sensor, paired with a custom smartphone reader and app, allows users to scan their urine for wildfire biomarkers and quantify their exposure levels in real-time.
Researchers found daily increases of 11-24% in asthma-related emergency department visits over the first episode of a wildfire event, continuing up to 6 days after it ended. However, a second period of heavy smoke did not result in an increase in asthma-related ED visits.
A study finds that climate change is responsible for 15,000 wildfire particulate matter deaths in the continental US from 2006 to 2020. The economic burden associated with these deaths was $160 billion, mainly affecting western states like California and Oregon.
The risk of wildfires is increasing due to climate change, leading to overlapping fire weather seasons in the two regions. The number of simultaneous fire weather days has been increasing by one day per year for the past 40 years, with projections suggesting an increase of up to 29 days per year by mid-century.
Wildfire smoke from Canadian wildfires cooled New York City by 3 degrees Celsius due to 'global dimming,' trapping pollutants near ground level. This cooling disrupted the hydrological cycle and increased human exposure to airborne contaminants.
A new study reveals that the Neolithic Revolution in the southern Levant was triggered by catastrophic wildfires and climate-driven soil erosion, forcing early communities to adopt agriculture. Fertile soils formed in valley basins after hillslope degradation became hotspots for settlement and farming.
Researchers warn that wildfires can contaminate drinking water distribution systems, posing substantial public health risks. Over 50 volatile organic compounds have been detected in water distribution systems after wildfires, including carcinogens such as benzene.
A new study by UC Davis School of Medicine identifies four major areas of need among wildfire victims, including mental health support and health information. The research reveals that mental health needs are the most predominant health-related need at all time points.
A new study by Carnegie Mellon University researchers found that smoke from US wildfires and prescribed burns caused $200 billion in health damages in 2017, resulting in 20,000 premature deaths. Senior citizens were disproportionately affected, with Native American and Black communities experiencing the greatest harms per capita.
Recent research highlights increased fire activity in the western US, with wildfires becoming less prone to calming down at night. Meanwhile, extreme turbulence on hurricane flights has led to a new 'bumpiness' metric. Climate extremes are also evident in shifting energy demands for heating and cooling in Chinese megacities.
Researchers develop AI model to predict lightning-induced wildfires with over 90% accuracy, integrating data from satellites, weather systems, and environmental factors. The model has the potential to transform emergency response and disaster management worldwide, saving lives and preserving ecosystems.
A new computer simulation model can help understand how extreme weather affects ecosystems and human benefits. The model suggests that a windstorm in Minnesota could lose up to 50% of its timber revenue, while recreational opportunities would also decline.
Emissions from WUI fires are proportionately three times more likely to lead to premature deaths than emissions from remote wildfires. The study drew on a database of WUI fires and advanced computer modeling techniques to simulate pollutants from fires.
A new ACS-led study reveals that patients exposed to wildfire disasters during recovery from lung cancer surgery have longer hospital stays, posing significant challenges to their well-being. The findings highlight the need for disaster preparedness guidelines tailored to vulnerable patient populations.
A new study suggests that artificial intelligence can effectively detect wildfires in the Amazon rainforest, using satellite imaging and deep learning. The technology achieved a 93% success rate in training models via datasets of images with and without wildfires.
Incarcerated individuals face heightened health risks from wildfires due to poor ventilation, inadequate infrastructure, and pre-existing medical conditions. Climate change is intensifying wildfire conditions worldwide, posing immediate and long-term health impacts on this vulnerable population.
A study by Florida Atlantic University investigated how removing dead wood could reduce wildfire risks and enhance carbon storage. The research found that combining physical harvesting with thinning significantly reduced wildfire risks, while lowering carbon emissions and offering carbon sequestration through products like biochar.
A new species of manzanita has been discovered on the central coast of California, but its survival is already at risk due to urban development. The species, Arctostaphylos nipumu, lacks a protective burl that allows some other manzanitas to resprout after wildfires.
A new study reveals that UK peatland fires are responsible for up to 90% of annual fire-driven carbon emissions, with emissions set to rise by at least 60% if the planet warms by 2°C. Researchers found that rewetting peatlands can help reduce carbon emissions and mitigate climate change.
A study published in Nature Communications shows that widespread wildfires were frequent about every 10-20 years in many areas, but severe fires have increased due to natural fire cycles being disrupted. The data suggests that the prevalence of non-fire years has led to denser forests and hotter, more destructive wildfires.
A new study reveals the extreme vulnerability of young volcanic soils to wildfires in the Arequipa shrublands of Peru. The research found that vegetation and soil combustion, combined with post-fire erosion, have caused a severe loss of soil organic carbon, hindering ecosystem recovery.
A majority of British residents believe climate change is linked to extreme heat, water shortages, droughts, pests, and wildfires, with 86% saying it's happening, 82% considering it important, and a majority supporting renewable energy.
A new study reveals that climate change is driving intensifying wildfires by altering vegetation and humidity levels, but not significantly impacting lightning strikes. The simulations predict a 14% increase in global area burned by fires annually with every degree of global warming.
A new study by Oregon State University researchers found that certain groups of consumers are open to drinking smoke-impacted wines. The study suggests potential tools for making these wines viable for the market through blending and targeted labeling and marketing strategies.
A recent report by Colorado State University reveals that the state's forests are emitting more carbon than they absorb, primarily due to insect and disease impacts. The study estimated that Colorado's forests stored 1,558 teragrams of carbon between 2010 and 2019.
Research published in Nature Communications reveals that fewer forest fires are burning today than in the past, despite recent record-breaking fire years. This 'fire deficit' allows fuel to build up over time, creating conditions for more severe fires. The study highlights the importance of beneficial management fires on the landscape.
A task group led by Samuel L. Manzello is developing international standards for large outdoor fires, including wildland-urban interface (WUI) fires. The new standards aim to improve resilience against these types of fires, which are becoming increasingly common due to urbanization and climate change.
Research highlights the impact of wind on wildfire growth, with areas in the US Southeast vulnerable to extreme heat and precipitation events. Meanwhile, a study suggests the 'drought' of EF5 tornadoes may be due to stricter ratings rather than changes in tornadoes.
A new UT Knoxville study reveals that over 37 million people in the US are at high risk from compounded effects of environmental hazards such as water shortages, air pollution, and wildfires. Socially vulnerable populations, including low-income households and those with limited access to healthcare, face disproportionate burdens.
Research reveals that wildfire smoke can carry contaminants hundreds of kilometers, leaving a toxic and lingering footprint. Urban landscapes accumulate