NIST engineer honoured for wildfire research in the United States

Image credit: NIST

U.S. fire researcher awarded for public service impact

Alexander Maranghides of the National Institute of Standards and Technology (NIST) has received a 2025 Samuel J. Heyman Service to America Medal for his research into protecting people and buildings from wildfire.

According to NIST, the award recognises 25 years of work investigating destructive fires and producing guidance to help reduce future loss of life and property.

The medals, presented by the nonprofit Partnership for Public Service, honour federal employees whose work improves national outcomes.

The group said around 30 honourees are selected annually from a workforce of two million.

The medals are widely known as the “Sammies”.

Research examined community-level wildfire devastation

NIST explained that Maranghides’ approach to wildfire research involves analysing full-scale incidents in depth, identifying the factors that influenced their impact and documenting actionable guidance.

His recent investigation of the 2018 Camp Fire in California included interviews with emergency responders and high-detail disaster mapping.

The report spanned more than 1,000 pages and included laboratory tests and field analysis.

Key questions included how and why structures failed, how fires spread, and whether warnings reached residents in time to evacuate.

The organisation said these findings form the foundation for improved public safety practices.

Guidance now used by fire-prone communities

Maranghides’ work resulted in two programmes: the Hazard Mitigation Methodology (HMM) and Evacuation and Sheltering Considerations — Assessment, Planning, and Execution (ESCAPE).

HMM gives advice on structure protection, including how to prevent embers from entering homes and how to safely store combustible materials.

ESCAPE provides tools for emergency planning, with guidance on how to prepare evacuation routes and temporary refuge areas.

NIST said both systems were developed through community engagement and are now being adopted in locations at high risk of wildfire.

Maranghides said: “Those two programs are the most important work I’ve done over my career.”

Award celebrates collaborative fire safety efforts

Joannie Chin, Director of NIST’s Engineering Laboratory, said: “For more than two decades, Alex has demonstrated an unmatched ability to identify the most important lessons from wildfires.

“He then uses a variety of tools to convey these lessons to state and local officials in ways that they can understand the problem and develop solutions tailored to protect their communities.”

NIST added that the award reflects the broader contribution of federal agencies to disaster risk reduction.

The institute supports efforts across multiple hazards, including hurricanes, earthquakes and tornadoes.

In 2024, NIST researchers Marc Levitan and Long Phan were honoured with the same award for their work on tornado-resistant building codes.

Selection committee reflects cross-sector recognition

According to the Partnership for Public Service, the award selection committee includes figures from government, media, academia and the private sector.

The awards are named after Samuel J. Heyman, a businessman who supported the advancement of public service.

The partnership described the medals as recognition for public servants making the United States “better, safer, and stronger”.

Full details of the awards and recipients can be found on the Service to America website.

NIST engineer honoured for wildfire research in the United States: Summary

Alexander Maranghides of the National Institute of Standards and Technology (NIST) has been named a 2025 recipient of the Samuel J. Heyman Service to America Medal.

The award was announced by the Partnership for Public Service.

It recognises Maranghides’ 25-year career investigating major U.S. wildfires and creating guidance to improve building and evacuation safety.

His most recent research focused on the 2018 Camp Fire in California.

The resulting report exceeded 1,000 pages and included field investigations, laboratory testing and firefighter interviews.

Maranghides’ work has led to two public safety programmes: HMM and ESCAPE.

These programmes provide detailed advice for community wildfire protection and emergency planning.

The initiatives are being adopted in U.S. regions with high wildfire risk.

NIST Director Joannie Chin praised Maranghides’ ability to translate research into practical guidance.

The Service to America Medal is awarded annually to around 30 federal employees.

Honourees are selected by a committee of leaders across multiple sectors.

The role of nutrition in reducing cancer risks for UK firefighters

UK firefighters face cancer risk from workplace exposure

UK firefighters are at increased risk of developing several cancers, according to a review published by Cambridge University Press.

The review draws on UK-specific evidence and supports the 2022 decision by the World Health Organization to classify firefighting as carcinogenic to humans.

The authors highlight that the primary source of this risk is ongoing exposure to fire effluent contaminants, including benzene, formaldehyde, polycyclic aromatic hydrocarbons and asbestos.

Although personal protective equipment and decontamination protocols are in place, the paper explains that some chemical residues remain in the body long after exposure and may accumulate over time.

Additional risk factors include shift work and disrupted sleep patterns, which contribute to hormonal changes, inflammation and impaired cellular repair.

Diet identified as a protective factor against cancer

The review states that while exposure reduction remains the focus of fire service health policies, nutritional strategies could provide additional protection.

Referencing UK government data, the authors cite that up to 80 percent of cancer cases may be preventable in principle through dietary and lifestyle changes.

The report highlights that fruit, vegetables, wholegrains, omega-3 oils and legumes have been linked to lower rates of cancers such as bladder, colon, thyroid and prostate in published research.

By contrast, red and processed meats, sugar, alcohol and excess body fat were all identified as risk factors associated with increased cancer incidence.

The authors also cite a large Italian study that found high adherence to national cancer prevention guidelines resulted in reduced cancer-related mortality.

Mediterranean diet proposed as a practical model

The report suggests that the Mediterranean diet is one of the most evidence-supported dietary approaches to lowering cancer risk.

It outlines the typical Mediterranean pattern as being high in plant-based foods, whole grains, fish and olive oil, with low consumption of red meat and processed items.

The authors explain that many of the food components within this diet have been shown to have anti-inflammatory and antioxidant properties in both human and animal studies.

Findings from the EPIC cohort, which studied over half a million people across Europe, showed that a two-point increase in Mediterranean diet adherence scores was linked with a 12 percent lower cancer incidence.

The review notes that while Mediterranean foods can be substituted with local equivalents in the UK, uptake remains low.

Low dietary adherence among UK firefighters

The authors point out that few UK firefighters follow Mediterranean or government-recommended dietary patterns.

Referencing national surveys, the review notes that less than a third of UK adults eat enough fruit and vegetables, and that sugar intake is typically double recommended levels.

Studies on firefighters in other countries, including the United States and Germany, show a consistent pattern of higher body mass index and poor nutritional habits among shift-based fire service staff.

The authors cite preliminary studies from the US indicating that fire service workers may also have disrupted gut microbiomes, which may influence inflammation and immune health.

Although UK-specific data on firefighter diets is lacking, the authors argue that similar trends are likely and require further research.

Food-based compounds show potential in laboratory research

The review discusses a number of food-derived compounds that have demonstrated protective effects against fire-related carcinogens in laboratory settings.

These include sulforaphane from broccoli sprouts, omega-3 fatty acids from oily fish, and catechins found in green tea.

While most of the cited research was based on in vitro or animal models, some early-stage human trials have shown promising results, including enhanced detoxification of pollutants.

The authors caution, however, that such findings are not yet sufficient to inform formal guidelines, as they require larger trials to confirm safety and efficacy.

They recommend focusing on whole-food dietary patterns rather than individual supplements, citing the lack of benefit seen in antioxidant supplement trials.

Shift schedules and workplace culture present barriers

The report highlights a number of cultural and occupational barriers that may make dietary change more difficult for UK firefighters.

These include irregular working hours, disrupted sleep and stress, which are known to drive unhealthy food choices and affect metabolism.

Communal eating habits and the traditional ‘messing’ system used in UK fire stations may further complicate attempts to change individual behaviour.

The review also notes that firefighters often lack access to nutritional education and may be unaware of the link between diet and cancer risk.

The authors argue that interventions must be group-based and culturally tailored in order to succeed.

Communal culture could enable dietary change

While communal eating can be a barrier to change, the review also identifies it as a potential enabler.

Research from the US and UK suggests that peer influence and shared food preparation can help normalise healthier eating patterns when paired with education.

Examples include team-based nutrition programmes, cooking demonstrations, educational materials and targeted online support tools for firefighters.

Several studies referenced in the review show that such interventions led to improved adherence to the Mediterranean diet and better health outcomes.

The authors recommend that UK fire services develop and implement similarly structured, culturally relevant initiatives.

Diet and cancer risk in UK firefighters: Summary

UK firefighters face increased cancer risk due to occupational exposure to carcinogens.

The World Health Organization has classified firefighting as a carcinogenic occupation.

Contaminants such as benzene, asbestos and PAHs remain in the body after exposure.

Firefighters also face risks from shift work, disrupted sleep and chronic inflammation.

The Mediterranean diet has been linked to lower cancer incidence and mortality.

UK dietary surveys show low adherence to recommended healthy eating patterns.

Laboratory studies show food-based compounds may support detoxification.

Most of these studies are early stage and require human trials to confirm effects.

Firefighters often face barriers to healthy eating, including stress and shift patterns.

Communal food culture may influence dietary behaviour in fire stations.

Targeted education and peer support may help promote sustainable dietary change.

The report calls for more firefighter-specific research and organisational support.

Firefighter’s helmet reflectivity study reveals thermal risks from colour and soot

Helmet heat protection reduced by colour and soot, says French research

A new study has found that firefighter helmets lose their ability to reflect heat depending on their colour and surface condition.

According to Fire Safety Journal, Volume 155, chrome plated helmets reflected up to 83 percent of radiative heat, while coloured variants showed reflectivity as low as 3 percent.

When contaminated by soot or combustion deposits, reflectivity dropped to around 36 percent, even for chrome helmets.

The research, led by A. Collin and colleagues in France, analysed 16 helmet samples currently in use by Fire and Rescue Services across France, England and Canada.

The study focused on directional-hemispherical reflectivity and absorptivity across infrared wavelengths, measuring how helmets performed at temperatures up to 1000 K (727°C /1340°F).

Helmet types and thermal performance examined

The study used infrared spectrum analysis to examine heat reflection in helmets used in emergency response.

Chrome plated helmets showed the best thermal protection by reflecting most radiative energy and limiting absorption.

Coloured helmets had much lower reflectivity, depending on pigment, with red helmets absorbing nearly all heat exposure.

Soot or other residue significantly reduced reflectivity, regardless of original surface, suggesting that maintenance and cleaning influence thermal protection.

The findings build on earlier experimental work, including that of Barnett (2003), who studied abrasion and surface degradation in helmet materials under high heat.

Sample and standards used in testing

Sixteen helmets were tested as part of the research.

All samples met EN 443:97, the European standard for firefighter helmets.

The helmets were sourced from French fire departments including SDIS 54 (Meurthe-et-Moselle) and SDIS 49 (Maine-et-Loire), as well as from LCPP (Laboratoire Central de la Préfecture de Paris).

The helmets varied in colour and manufacturer, but none were named for confidentiality reasons.

Measurements were taken across different points on each helmet to assess consistency in performance.

Research context and motivation

The study responds to concerns about rapid helmet deterioration during use or training.

Infrared reflectivity, especially in contaminated helmets, is a major factor in heat protection for personnel in radiative environments.

The authors cite previous studies into garment protection, water spray use and nozzle dynamics, noting that helmets remain under-studied in heat transfer literature.

The research was intended to quantify radiative properties across real-world helmet types and provide data for future equipment design and policy decisions.

According to the authors, all raw data are available in a publicly accessible database.

Implications for firefighter safety and equipment design

The study reinforces the thermal advantage of chrome helmets under clean conditions.

It also highlights the need for regular cleaning to maintain heat protection levels during live incidents and drills.

The reduction in reflectivity from surface contamination may increase the risk of thermal injury in high-flux environments such as flashovers or backdrafts.

The researchers recommend greater awareness of surface degradation and cleaning protocols.

Future helmet designs may need to incorporate materials or coatings that retain reflectivity even after exposure to soot or abrasion.

Helmet reflectivity study reveals thermal risks from colour and soot: Summary

Fire Safety Journal has reported that helmet colour and soot contamination reduce the ability of firefighter helmets to reflect heat.

The study was conducted by researchers including A. Collin and Z. Acem in France.

It tested 16 helmets currently used by fire services in France, England and Canada.

Chrome plated helmets reflected an average of 83 percent of radiative energy at 1000 K.

Coloured helmets reflected between 3 and 14 percent of heat depending on pigment.

Soot reduced reflectivity to around 36 percent, even for chrome helmets.

The study used infrared spectrum measurements to assess heat reflection and absorption.

All tested helmets met EN 443:97 standards.

Previous research has shown helmets degrade during use, causing blistering and reduced surface performance.

The findings highlight the importance of cleaning and maintenance.

Raw data from the study are available in a public-access database.

Wildfire safety report warns of 2025 travel disruption risks

Wildfire safety report details travel risks worldwide

Safeture AB has reported that a new joint publication with Riskline has outlined the increased global travel risks caused by wildfires.

The ‘Wildfire Informer 2025’ provides practical safety guidance for travellers and highlights regions expected to face wildfire threats throughout the year.

The report said the United States experienced the most wildfires in 2024, followed by Chile, Australia, Canada and Greece.

It also noted that the UK experienced record-breaking wildfires in early 2025, affecting over 30,000 hectares.

Marcel Brandt, Chief Sales Officer at Safeture, said: “As wildfire seasons expand across every continent, so too must our awareness.”

Report outlines most affected regions in 2024

According to the report, the United States recorded the highest number of wildfires in 2024.

Chile and Australia were also among the most affected, followed by Canada and Greece.

The report said Greece is preparing for a ‘worrying’ 2025 season, with over 18,000 firefighters and 3,700 vehicles deployed in anticipation.

It noted that even in Northern Europe, fire activity has increased.

In the UK, over 30,000 hectares were burned in early 2025, a figure which surpassed previous records.

Travel disruption caused by wildfire events

The report stated that wildfires are affecting travel in multiple ways, even when fires are not immediately nearby.

These include cancelled flights, closed roads, widespread evacuations and air quality warnings triggered by distant fires.

The impact is not limited to rural or forested areas.

The report said cities and major destinations have also faced disruption due to smoke and emergency conditions.

The growing scale and unpredictability of wildfire seasons were cited as a key factor for increased travel risks.

Practical guidance for travellers

Safeture and Riskline’s report includes recommendations for travellers planning to visit areas at risk.

Advice includes checking official alerts, such as those issued by the European Forest Fire Information System.

The report recommends carrying emergency plans and monitoring local news in real-time.

Travellers were also advised to consider insurance policies that cover natural disaster-related disruption.

Brandt said: “Travel today requires more than a packed suitcase and passport. It demands preparation, flexibility, and a clear understanding of potential risks.”

Partnership between Safeture and Riskline

Safeture is a Swedish SaaS company that provides risk management tools for global organisations.

Riskline is a Danish content provider specialising in travel risk analysis supported by AI.

The two companies began collaborating in October 2022.

The Wildfire Informer 2025 is their latest joint publication, combining location-based risk data and global threat monitoring.

Both companies have stated that they intend to support safer travel planning through informed awareness.

Wildfire safety report warns of 2025 travel disruption risks: Summary

Safeture AB has published the ‘Wildfire Informer 2025’ in collaboration with Riskline.

The report outlines wildfire activity across multiple continents.

It identifies the United States, Chile and Australia as the most affected countries in 2024.

It states that Greece is preparing for a difficult 2025 wildfire season.

The UK experienced record-breaking wildfires in early 2025, burning over 30,000 hectares.

The report explains how wildfires can disrupt travel through air quality, transport closures and evacuations.

It provides advice for travellers including monitoring local alerts and preparing emergency plans.

The report recommends travel insurance coverage that includes wildfire-related disruptions.

Safeture and Riskline have worked together on risk intelligence since 2022.

Their joint report aims to inform travellers of environmental risks.

The report is available at: https://safeture.com/wild-fires-informer-2025/

Canada pledges $10 million to FAO’s Global Fire Management Hub

Canada pledges $10 million to FAO’s Global Fire Management Hub

The Food and Agriculture Organization (FAO) has reported that Canada will provide CAD 13.5 million (nearly $10 million) to the Global Fire Management Hub to strengthen international wildfire preparedness and ecosystem protection.

The pledge supports the Kananaskis Wildfire Charter, a joint initiative launched at last month’s G7 Summit in Canada.

The charter aims to improve global cooperation in responding to extreme wildfires, and Canada’s contribution will advance the Hub’s integrated fire management efforts.

Canada’s Associate Deputy Minister of Foreign Affairs Cindy Termorshuizen said the country’s leadership role in the charter reflects its commitment to global fire resilience.

The Global Fire Management Hub is coordinated by FAO alongside partner agencies including the UN Environment Programme and the Global Fire Monitoring Centre.

Support for global integrated fire management

The new funds will expand the Global Fire Management Hub’s work in supporting countries to shift from reactive fire suppression to proactive fire preparedness.

The FAO said the funding will enhance the capacity of governments and agencies to collaborate across jurisdictions and disciplines during wildfire events.

The Global Fire Management Hub focuses on coordination between science, policy and local action to reduce fire risk.

According to FAO Forestry Director Zhimin Wu, the funding will strengthen cooperation to minimise the economic and environmental effects of wildfire.

Wu said: “Wildfires adversely affect biodiversity, ecological services, human well-being and national economies, and can be especially devastating for developing countries.

“Canada’s support will help strengthen and enhance global collaboration to reduce the negative impacts of wildfires on livelihoods, landscapes and global climate stability.”

G7 summit drives international commitment

The Kananaskis Wildfire Charter was endorsed by all G7 leaders, as well as leaders from Australia, India, Mexico, South Africa and the Republic of Korea.

The charter aims to build international readiness for extreme wildfires through cooperative planning, data sharing and mutual assistance.

Cindy Termorshuizen said: “Wildfire seasons are becoming longer and more extreme, fuelled by climate change.

“The Global Fire Management Hub provides an important platform to coordinate international action in response to this trend, including strengthening global capacity for more proactive and effective integrated fire management.

“Canada’s leadership of the Kananaskis Wildfire Charter, launched by G7 Leaders and endorsed by international partners at the Kananaskis G7 Summit last month, is part of this effort.

“Canada is committed to working with the Global Fire Management Hub to better prevent, fight and recover from wildfires.”

Hub’s five-pillar approach to fire resilience

Canada’s funding supports the Global Fire Management Hub’s five strategic pillars: knowledge sharing, capacity building, community resilience, risk reduction and integrated policy development.

The FAO explained that the funding would also enable the creation of an Indigenous-led fire adaptation network.

This initiative is intended to support traditional knowledge in fire management and strengthen sustainable land use practices.

The Global Fire Management Hub was launched to coordinate the transition from reactive firefighting to preventive landscape management.

The Hub also works to build national and regional capability through early warning systems, education and training.

International mascot launched for fire awareness

Earlier this month, the FAO introduced ‘Pyra the Tiger’ as the public face of the Global Fire Management Hub.

The mascot was launched during the first Plenary of the Hub and is aimed at supporting community engagement around wildfire prevention.

The Global Fire Management Hub is jointly implemented by FAO, the UN Environment Programme, the Global Fire Monitoring Centre and other stakeholders.

In addition to Canada, the Hub is supported by France, Germany, Portugal and the Republic of Korea.

FAO said the Hub will play a role in reducing the 300 million hectares burned annually worldwide and preparing for the projected 50 percent increase in wildfires by the end of the century.

Canada pledges $10 million to FAO’s Global Fire Management Hub: Summary

Canada has pledged CAD 13.5 million to the FAO-hosted Global Fire Management Hub.

The funding supports the Kananaskis Wildfire Charter, agreed at the June 2025 G7 Summit.

The Global Fire Management Hub is a joint initiative of FAO, the UN Environment Programme and the Global Fire Monitoring Centre.

The pledge aims to improve international collaboration on wildfire preparedness and prevention.

The Hub’s work is guided by five strategic pillars focused on knowledge, capacity, resilience, risk and policy.

The funds will also contribute to an Indigenous-led fire adaptation network.

Cindy Termorshuizen, Canada’s Associate Deputy Minister of Foreign Affairs, said the funding supports proactive international fire management.

FAO Forestry Director Zhimin Wu said the contribution will help reduce the impacts of wildfires on climate and livelihoods.

The Global Fire Management Hub is additionally supported by France, Germany, Portugal and the Republic of Korea.

The FAO launched Pyra the Tiger as the mascot for the Hub during its first Plenary in July 2025.

Fire protection testing expanded through ift Rosenheim and Patras partnership

Partnership supports local fire protection testing in Greece

ift Rosenheim has announced a new collaboration with the University of Patras in Greece to deliver accredited fire protection testing services from the FireUP laboratory in Patras.

According to ift Rosenheim, the partnership enables system providers and manufacturers in Greece and surrounding regions to complete preliminary and official tests locally to support CE marking and structural verification.

The laboratory, based at the University of Patras, will conduct both initial checks and official tests under CPR Article 46.

ift Rosenheim stated that its role will include accredited testing and calibration, while engineers from its Greek branch, ift Rosenheim Hellas, will support on-site activities.

Inspections at the FireUP site in Patras are scheduled to begin in July 2025.

FireUP laboratory background and test capabilities

The University of Patras launched the FireUP fire testing facility in 2015 to support civil engineering research and student training.

The university approached ift Rosenheim to calibrate the fire kilns and equipment, which initiated the broader collaboration.

ift Rosenheim explained that the FireUP laboratory will now host both informal pre-tests and formal ift tests in line with European fire protection standards.

Tests will be conducted on windows, doors, gates, facades, walls and closures to standards including EN 1634-1, EN 1364-1 and EN 1365-1.

According to the company, the partnership will help reduce delays and support early identification of compliance issues.

Official testing procedures and CE marking support

ift Rosenheim confirmed it will perform tests under Construction Products Regulation Article 46, which is required for CE marking.

The organisation said these accredited procedures will ensure building law recognition for manufacturers seeking market access in Europe.

It added that preliminary tests conducted by FireUP staff will confirm readiness before official testing, which may prevent costly failures or delays.

According to ift Rosenheim, this staged approach provides an efficient path toward certification.

On-site support from Greek inspection team

ift Rosenheim noted that the collaboration benefits from local expertise through its Greek affiliate, ift Rosenheim Hellas.

The organisation said engineers from the Patras site will support on-site testing, allowing faster scheduling and execution.

This model was described as a way to improve flexibility while maintaining consistency with ift Rosenheim’s central standards.

The company added that using local resources reduces travel time and increases availability for Greek and regional manufacturers.

Equipment calibration and test integrity

ift Rosenheim said it is responsible for regular calibration of the FireUP laboratory’s test furnaces and measurement tools.

The organisation stated that its procedures ensure test equipment accuracy and reproducibility, in line with European norms.

The goal, it added, is to uphold high testing standards for all certification processes.

Regular performance assessments will be conducted to maintain reliability of fire resistance measurements at the Patras site.

Fire protection testing expanded through ift Rosenheim and Patras partnership: Summary

ift Rosenheim has partnered with the University of Patras in Greece.

The FireUP laboratory will host both preliminary and official fire protection tests.

ift Rosenheim will conduct accredited tests under CPR Article 46.

FireUP staff will perform initial tests to confirm readiness.

Tests will support CE marking and structural verification for building products.

On-site inspection services will be provided by ift Rosenheim Hellas.

The facility tests windows, doors, walls, gates, facades and closures.

Test methods include EN 1634-1, EN 1364-1 and EN 1365-1.

All test equipment will be regularly calibrated by ift Rosenheim.

Inspections in Patras will begin in July 2025.

US fatal firefighter injuries declined by 31 percent in 2024

US firefighter fatality figures fall to second-lowest level

NFPA has reported that 62 firefighters died while on duty or shortly after duty in the United States in 2024.

The total marks a 31 percent reduction from the 90 fatalities recorded in 2023 and is tied for the fourth lowest figure since the annual study began in 1977.

According to the National Fire Protection Association’s (NFPA) “Fatal Firefighter Injuries in the US in 2024” report, 51 deaths occurred while firefighters were on duty, and 11 occurred within 24 hours of duty.

NFPA stated that since 2022, fatalities occurring within 24 hours of duty are included if they align with criteria established under the Hometown Heroes Act of 2003.

The organisation noted that while the number of fatalities fluctuates annually, the 2024 figure represents a continuation of the long-term downward trend in on-duty firefighter deaths.

Heart attacks remained the leading cause of death

NFPA found that overexertion or strain accounted for 65 percent of all firefighter fatalities in 2024, with heart attacks making up nearly half of the total.

According to the report, 40 of the 62 fatalities were attributed to overexertion or strain, with 30 of these caused by heart attacks.

Twenty of the heart attacks occurred while firefighters were on duty and 10 occurred within 24 hours of duty.

Richard Campbell, senior research analyst at NFPA and lead author of the report, said: “Although the downward trend in the annual number of fatal firefighter injuries is an encouraging indication that injury prevention efforts through the years have been successful, there is a clear need for continuing attention to firefighter safety and health.

“Sudden cardiac deaths remain a critical concern.”

The organisation said that heart attacks were especially common among firefighters engaged in administrative, training, and fireground duties.

It added that volunteer firefighters made up the majority of those who died of cardiac arrest within 24 hours of duty.

Fireground activities posed the highest risk

NFPA reported that one-third of the deaths occurred during fireground operations.

The report identified 20 deaths during firefighting operations, a decrease from 32 fireground fatalities in 2023.

These included firefighters killed by explosions, structural collapses, vehicle accidents, and medical emergencies while at fire scenes.

The study recorded other fatal incidents during non-fire emergency calls, training, and station activities.

Jay Petrillo, research analyst at NFPA and co-author of the report, said: “Advances in firefighting practices and procedures, communications and equipment, training programs, and education have all helped to improve safety and health outcomes for the firefighting community through the years.

“Still, the unique variety of hazards encountered by firefighters across their multiple types of duties poses an ongoing challenge for comprehensive injury prevention.”

Petrillo added that preventing injuries would require coordinated efforts from both fire service organisations and external agencies.

Older age groups were disproportionately affected

NFPA reported that firefighters aged 40 to 49 accounted for the highest number of deaths in 2024.

The report recorded 20 fatalities in that age group.

Thirteen firefighters who died were aged 50 to 59 and 11 were 70 or older.

The data showed that volunteer firefighters aged over 70 were especially vulnerable, particularly when returning home after duty.

Among the 11 deaths that occurred within 24 hours of duty, eight involved volunteer firefighters with an average age of 69.

Three involved career firefighters with an average age of 48.

The study highlighted a disparity in immediate medical support between volunteer and career firefighters, noting that career firefighters often have quicker access to emergency care at their station.

Breakdown by role, type of incident, and injury

NFPA categorised the deaths by role, incident type, and injury cause.

Of the 51 on-duty deaths, 26 were career firefighters, 19 were volunteers, and six were non-municipal firefighters, including state and federal forestry staff, contract employees, and industrial firefighters.

Trauma accounted for 29 percent of all deaths, while heat stroke, drowning, gunshot wounds, electrocution, aneurysms, and burns made up the remaining cases.

The report noted that one firefighter was fatally shot during a domestic violence response and another died while inspecting a fire scene.

Only one multiple-fatality incident was recorded in 2024.

This occurred when a tree struck a vehicle during a hurricane response, killing two firefighters.

The 2024 total marks only the third time since 2000 that the annual report recorded one or no multiple-fatality incidents.

US fatal firefighter injuries declined by 31 percent in 2024: Summary

NFPA reported that 62 US firefighters died on or shortly after duty in 2024.

This represents a 31 percent decrease from the 90 fatalities reported in 2023.

Of the 62 fatalities, 51 occurred while firefighters were on duty.

The remaining 11 occurred within 24 hours of duty.

Heart attacks were the leading cause of death, accounting for 30 of the 62 fatalities.

Fireground duties accounted for 20 deaths.

Volunteers made up most of the fatalities within 24 hours of duty.

Most of those deaths involved firefighters aged 70 or older.

Trauma was the second leading cause of death after cardiac events.

Only one multiple-fatality incident occurred in 2024.

Non-municipal firefighters accounted for six of the fatalities.

The full report was authored by Richard Campbell and Jay Petrillo.

Smoke alarms failing in thousands of UK homes annually

Government data shows widespread failures in home smoke alarms

Over 12,000 residential fires occur each year in the UK in homes without smoke alarms, according to Safety Group.

The organisation cited government data indicating that more than 470 people have died since 2019 in house fires where no alarm was present or the alarm failed to function.

According to the same data, smoke alarms only activated in 36 per cent of house fires, with many failing to sound due to battery or maintenance issues.

Safety Group said the findings reveal a gap between reported alarm ownership and actual alarm functionality.

The data show that while around 90 per cent of homes report having smoke alarms, only 70 to 75 per cent of these are working.

Alarms fail due to age, poor maintenance or incorrect placement

Safety Group UK reported that many UK homes are equipped with outdated or poorly maintained smoke alarms.

The organisation explained that smoke alarms generally have a lifespan of about 10 years, after which their effectiveness declines.

It recommended checking the manufacture date and replacing alarms that are close to or past their expected lifespan.

Safety Group added that devices may also fail to work due to dust or insect obstruction, flat smoke alarm batteries, or incorrect installation location.

It recommended placing alarms on ceilings away from fixtures and testing units monthly.

Interconnected alarms can provide early alerts across properties

Safety Group UK advised upgrading to interconnected smoke alarm systems.

These systems are designed to trigger all alarms in the home simultaneously when one detects smoke.

The company stated that this can provide additional seconds for safe evacuation, particularly in multi-level homes.

According to the organisation, both wired and wireless models are available, with wireless systems offering easier retrofitting for existing homes.

Some newer systems can also alert residents through mobile phone notifications.

Fire services advise regular testing and evacuation planning

Fire England recommends testing all smoke alarms every month by pressing the test button for a few seconds.

Safety Group UK supported this advice and suggested making testing a regular household activity.

The organisation also stressed the importance of replacing batteries annually and keeping spare batteries dedicated to alarms only.

In addition, it encouraged households to develop clear escape plans, including two exits per room and support roles for residents with additional needs.

Smoke alarms fail to operate in 12,000 UK house fires annually: Summary

Government data show that over 12,000 house fires occur each year in homes without smoke alarms.

Since 2019, 471 people have died in fires where alarms were absent or failed.

Only 36 per cent of smoke alarms triggered during a fire.

Around 90 per cent of UK homes report having alarms installed.

Only 70 to 75 per cent of these alarms are in working order.

Common issues include flat batteries, poor maintenance, and incorrect placement.

Smoke alarms have a lifespan of around 10 years.

Safety Group UK recommends regular testing and annual battery changes.

Interconnected alarms can improve early warning across a property.

Fire England advises testing alarms monthly and preparing a fire escape plan.

France establishes joint fire resistance research lab for aircraft safety

Safran collaborates with French institutions on fire resistance research

Safran Group has announced the launch of a joint research laboratory in France focused on fire resistance in aerospace engineering.

According to Safran, the new facility – called Flames (Fire Laboratory for Assembly, Metal and Composite Engineering & Safety) – is a partnership between Safran Nacelles, the Insa Rouen Normandie, the University of Rouen Normandie and the CNRS.

The four-year initiative aims to support future developments in aircraft nacelle design by improving knowledge in fire resistance and related safety technologies.

Laboratory supports development of future nacelle systems

Safran stated that the research carried out at Flames will feed into the early stages of nacelle system development.

It explained that the programme is designed to anticipate changes in regulatory and technical requirements, with the findings intended to enhance fire protection measures in aircraft design.

Safran Nacelles, which leads the nacelle design and integration activities within the Safran Group, will use results from the Flames laboratory to inform its upcoming engineering work.

Research hosted in specialist university laboratories

The Flames laboratory is based within two facilities – the Materials Physics Group (GPM) and the Interprofessional Research Complex in Aerothermochemistry (Coria) – which operate under joint supervision by CNRS, the University of Rouen Normandie and Insa Rouen Normandie.

The laboratory is equipped to carry out full test campaigns using representative samples and will support the development of simulation models and optimised physical testing processes.

Fabienne Lacorre, Technical Director at Safran Nacelles, said: “This partnership with the Insa Rouen Normandie will enable us to work on complex problems, combining Safran Nacelles’ technical and industrial expertise with the academic excellence of the teams at the GPM and Coria laboratories.

“Flames strengthens our ability to innovate and meet tomorrow’s technical challenges.”

Collaboration includes engineers and researchers

The Flames team includes engineers from Safran Nacelles, researchers from CNRS, and teacher-researchers from the Insa Rouen Normandie and the University of Rouen Normandie.

Safran confirmed that Insa Rouen Normandie will also recruit one engineer and one teacher-researcher to enhance the team’s capabilities.

Mourad Boukhalfa, Director of the Insa Rouen Normandie, said:

“We are delighted that the work carried out in simulation and experimentation on combustion in turbojet engines has been extended to new areas, in particular the behaviour of innovative materials subjected to extreme thermal conditions in the aeronautical industry.

“This collaboration involves two research laboratories of excellence, Coria and the GPM, both co-founders of the Labex EMC3 and the Institut Carnot ESP, alongside Safran Nacelles, a leading industrial player.”

France establishes joint fire resistance research lab for aircraft safety: Summary

Safran Group has launched a fire resistance research laboratory in France.

The project is a partnership with the Insa Rouen Normandie, the University of Rouen Normandie and the CNRS.

The laboratory is named Flames, standing for Fire Laboratory for Assembly, Metal and Composite Engineering & Safety.

It will run for four years.

The aim is to improve fire resistance understanding for aircraft nacelle development.

The research will support early-stage aerospace engineering and regulation compliance.

Flames is based at GPM and Coria, two laboratories under CNRS and local university supervision.

Testing capabilities will enable physical and simulated fire resistance assessments.

Safran Nacelles engineers will work alongside university researchers.

Two new staff will be hired by Insa Rouen Normandie to expand the team.

Findings will feed directly into future Safran Nacelles designs.

The programme contributes to aerospace fire safety research in France.

Fire blankets may pose explosion risk during electric vehicle fires, warns NFPA and UL

Research finds fire blankets may trap explosive gases during battery fires

The NFPA and UL Research Institutes have reported that using fire blankets during electric vehicle fires with battery involvement may increase explosion risk.

According to a joint notice from the Fire Protection Research Foundation (FPRF) and the Fire Safety Research Institute (FSRI), fire blankets can eliminate open flames but may trap flammable gases underneath.

The notice warned that gases accumulating beneath the blanket during battery thermal runaway could ignite explosively if oxygen is reintroduced.

Fire blankets linked to confined gas build-up in experiments

The FPRF reported that during controlled testing, fire blankets used to cover burning electric vehicles succeeded in cutting off flames by limiting oxygen flow.

However, battery thermal runaway continued even after the flames were extinguished, releasing flammable gases into the space beneath the blanket.

The Foundation stated that in some trials, this created an explosion hazard for nearby responders when the confined gases mixed with fresh air.

Four suppression methods assessed in current FPRF project

The FPRF is analysing firefighting strategies through its ongoing research project titled Assessment of EV Firefighting Tactics, Tools and the Impact on Stranded Energy.

The Foundation explained that recent testing compared the use of standard hose streams (with and without added agents), fire blankets, and firefighting appliances on electric vehicle fires.

Preliminary findings will be presented at the NFPA Conference & Expo on 16 June 2025 in Las Vegas, and full results will be published later this year at nfpa.org/foundation.

FSRI conducting parallel studies on EV fire suppression

The FSRI is independently studying battery fire hazards and suppression techniques under its Fire Safety of Batteries and Electric Vehicles programme.

According to the Institute, it is evaluating hose streams, under-vehicle water nozzles, and fire blankets as control measures in confirmed battery pack fire incidents.

The FSRI stated that analysis of video footage and performance data is ongoing, with findings to be released later in 2025 at fsri.org.

Focus remains on firefighter safety during EV incidents

The FPRF said that its research aims to support safer incident response procedures for EV fires by identifying effective tactics and understanding the risks of re-ignition and gas build-up.

The FSRI added that its work is directed at enabling better control strategies and reducing hazards for emergency responders.

Both organisations emphasised that no suppression method is without risk, and current findings should inform future training and operational guidance.

NFPA warns of fire blanket hazard in EV fire suppression: Summary

The NFPA reported that fire blankets used during electric vehicle battery fires may pose an explosion risk.

This risk arises from the accumulation of unburned flammable gases beneath the blanket.

The Fire Protection Research Foundation and the Fire Safety Research Institute issued a joint notice on 2 June 2025.

They warned that introducing air into this gas buildup could cause ignition.

The warning is based on ongoing research into EV firefighting tactics and suppression tools.

The FPRF tested four approaches: hose streams with and without additives, fire blankets, and firefighting appliances.

Preliminary results will be presented at the NFPA Conference & Expo in Las Vegas on 16 June 2025.

A full report will follow in autumn 2025 at nfpa.org/foundation.

The FSRI is conducting separate experiments under its own battery safety research project.

Its tests included standard and under-vehicle water application and fire blankets.

The FSRI will publish its findings later in 2025 at fsri.org.

Both organisations aim to improve responder safety and inform tactical decisions.