UK–Indonesia research collaboration studies air pollution from Borneo peatland fires

KaLi project uses air quality monitors to study community exposure in Indonesian Borneo

The University of Leeds has reported that researchers from the UK and Indonesia have collaborated on a multi-institutional project to measure and address the effects of peatland fires in Central Kalimantan, Borneo.

The KaLi project involved the placement of air quality sensors in public and private spaces to monitor airborne particle levels caused by recurring peat fires, which contribute to air pollution, environmental degradation and carbon emissions.

The research effort, led by the University of Exeter and including partners from multiple UK, Indonesian, and international institutions, aimed to build understanding of the social, economic and health effects of these fires, and to inform future disaster response and infrastructure planning.

Collaboration involved universities and local communities

The University of Leeds stated that establishing the KaLi project required collaboration between UK institutions and their Indonesian counterparts, including the University of Indonesia and the University of Palangka Raya.

Dr Ailish Graham, Research Fellow at the University of Leeds, said: “It wouldn’t have been possible to do the work without having international partner universities. This is a great example of universities working together.

“I found that I was really keen to keep working with the university as they had skills I didn’t have, which made the research so much better.

“They also have a lot of experience of research in the area, and many of the staff spoke the local language, which was a really big part of the project.”

Dr Graham added: “Colleagues from the Indonesian universities were able to help educate us about cultural differences – for example, how we might hold a meeting. For most meetings we would sit on a floor in a circle – it’s informal compared to what we might be used to, but it helped the community to relax and feel able to be open and contribute. They became part of our team, helping us collect data.”

She stated: “We were also going into people’s houses, and it was really important that we were respectful to their cultural norms.”

Researchers monitored schools and homes during fire season

Air quality sensors were placed in homes, schools, hotels, restaurants and offices to measure exposure to fine particulate pollution, which poses a health risk to those living in fire-affected areas.

The Borneo Nature Foundation (BNF), a conservation and research organisation, supported the research by identifying which communities to approach and helping researchers establish contact with village heads.

Dr Rory Padfield, Associate Professor in Sustainability and Business at the University of Leeds, said: “The BNF have been invaluable – they have been our go-to at times of facilitating access to groups. They’re interested in sustainability in this area, and they have an ear to the ground.”

Dr Padfield added: “Collaboration with other partners is so important – not just with other universities, but also with the communities affected. It’s so important we collect and document their experiences but also engage them in the research design.”

Researchers conducted focus groups with farmers, young people, women’s groups and local leaders, and met with policy stakeholders such as the Disaster Agency and Department for Education.

According to the University of Leeds, discussions with local authorities highlighted that schools in the region are often built without windows, allowing smoke to enter classrooms during fires.

Dr Graham said: “We hope that the monitors may help to reach ‘disaster status’ quicker, which would release funding. We also hope that monitors will emphasise the need to follow building regulations and that schools can be built with windows to provide protection when fires happen.”

Participants shared lessons learned through international collaboration

Research Assistant Hanun Nurrahmawati of the University of Indonesia played a key role in engaging with local communities and recruiting volunteers to support the data collection.

Nurrahmawati said: “Working with KaLi reminded me how good it feels to learn something new every day. It opened my eyes to how big the world really is—there’s always more to discover, both locally and globally. I genuinely improved my English and communication skills through this journey, and honestly, I’d love to see a KaLi 2.0 in the future.”

The University of Leeds reported that while most communities were welcoming, some challenges were encountered in the field. One of the air quality sensors was damaged after being pulled from a tree by an orangutan.

UK–Indonesia research collaboration studies air pollution from Borneo peatland fires: Summary

The University of Leeds has reported on a joint research project investigating peatland fire pollution in Central Kalimantan, Borneo.

The KaLi project placed air quality sensors in buildings across affected communities to measure particulate matter levels.

Partner institutions included the University of Exeter, University of Leicester, University of Indonesia and University of Palangka Raya.

The Borneo Nature Foundation supported the research team by connecting them with village leaders and local stakeholders.

Dr Ailish Graham and Dr Rory Padfield of the University of Leeds contributed to the project.

Meetings were held with the Disaster Agency, Department for Education and the local Mayor to discuss school infrastructure and emergency response.

Researchers engaged directly with farmers, women’s groups and young people through focus groups.

Research Assistant Hanun Nurrahmawati supported community engagement and volunteer recruitment.

Findings may help inform school design and emergency classification during future fire seasons.

Peatland fires in Borneo are linked to land clearing practices and occur during drought periods.

Further details are available on the KaLi Project and Borneo Nature Foundation websites.

Trust-based model and machine learning improve forest fire detection system

Forest fire detection model developed using trust and machine learning

A study published in Scientific Reports by Tayyab Khan, Karan Singh, Bhoopesh Singh Bhati, Khaleel Ahmad, Amal Al-Rasheed, Masresha Getahun and Ben Othman Soufiene has outlined the development of a trust-based, machine learning-enabled system for early forest fire detection.

The research introduces a Universal Trust Model (UTM) designed to evaluate the reliability of wireless sensor networks and improve the accuracy of fire detection by validating environmental data before transmission.

The study reports that the system was tested on a dataset of 7200 samples, which included varied fire and weather conditions across multiple locations.

Intelligent sensors assess environmental changes in real time

The study explains that forest areas are segmented into clusters, with each cluster equipped with intelligent sensor nodes (ISNs) that measure variables such as temperature, humidity, light intensity and gas concentrations.

Each sensor is uniquely identified and assessed for trustworthiness using metrics that include energy levels, communication consistency and data reliability.

The authors stated that ISNs deemed unreliable or malicious are removed from the network, allowing only trusted data to influence detection outcomes.

Trust ratings improve system resilience and detection speed

The Universal Trust Model functions in two phases. At the sensor level, it calculates trust values, and at the base station, it applies machine learning to verify fire-related patterns in the incoming data.

According to the study, this structure improves detection accuracy and reduces false alarms, especially under challenging environmental conditions such as low visibility or extreme weather.

The authors noted that the model enhances decision-making by combining continuous sensor validation with algorithmic analysis.

Experimental data supports improved performance

The model was tested in diverse conditions across locations such as Sanjay Van and Jawaharlal Nehru University campus in Delhi.

Researchers gathered data during daytime and nighttime, across dry and humid environments, and simulated both high- and low-intensity fire events.

According to the findings, the proposed system achieved an accuracy rate of 98.5 percent in identifying fire presence, with a reduced rate of false positives and negatives compared to earlier models.

Machine learning and trust model improve data efficiency

The authors reported that once environmental indicators exceed threshold levels, the base station’s machine learning algorithm verifies the likelihood of fire and, if confirmed, dispatches alerts to relevant authorities.

This process is designed to reduce alert time by using recent and validated data for decision-making.

By filtering unreliable sensors before reaching the central system, the model aims to ensure more consistent and responsive fire detection.

Energy efficiency and coverage considered in deployment

The research details how sensor deployment was optimised to maintain wide area coverage while conserving battery life, aided by solar panels and rechargeable batteries.

Sensor distances were calculated to balance energy usage with detection reliability, and the trust model factored in energy levels to avoid misclassifying low-power sensors.

This architecture supports longer network lifespan and more accurate detection, especially in resource-constrained environments.

Limitations identified in real-world implementation

The authors acknowledged that sparse sensor placement may cause detection gaps, while harsh weather could distort readings.

They also noted the need for retraining machine learning models as new fire scenarios emerge, and pointed to the potential risk of network congestion in large-scale deployments.

Plans for future development include adaptive clustering, energy harvesting and the use of federated learning to update models in real time.

Trust-based model and machine learning improve forest fire detection system: Summary

A study published in Scientific Reports outlined a machine learning and trust-based system for early forest fire detection.

The Universal Trust Model (UTM) uses intelligent sensor networks to monitor environmental conditions.

Each sensor is assigned a trust score based on communication, energy and data accuracy.

Faulty or malicious sensors are excluded from the network.

Sensor data includes temperature, humidity, CO levels and other fire-related indicators.

Data is transmitted to a base station only if verified as reliable.

A machine learning model analyses the data and triggers alerts if fire indicators are confirmed.

The model was tested with 7200 samples collected under varied weather and fire conditions.

It achieved 98.5 percent accuracy in fire detection with low false alarm rates.

Sensor placement was optimised for both energy efficiency and wide coverage.

Limitations include coverage gaps, model retraining needs and risks from coordinated attacks.

Future improvements will focus on energy harvesting, real-time learning and network scalability.

Fire statistics 2025 report to include global high rise buildings data

International data collection continues for 2023 fire report

Work is ongoing on the 30th edition of the Fire Statistics Magazine, due for publication by the International Association of Fire and Rescue Services (CTIF), according to CTIF.

The report will include a special chapter dedicated to fires in high rise buildings, with a planned length of nearly 200 pages.

CTIF has reported that the final deadline for submitting fire incident data from 2023 is the end of May 2025.

Data on high rise building fires under analysis

CTIF stated that it has already received fire statistics from several member countries.

However, it is continuing to seek further input from national authorities and organisations in non-member countries ahead of the deadline.

The organisation said all incoming data is currently being reviewed and analysed.

New chapter to assess use and fire risk in high rise buildings

According to CTIF, the high rise building chapter will include an introduction, historical overview, and literature review.

It will also feature case studies of international fires in tall buildings and examine high rises by use type, including hospitals, hotels and residential properties.

Other sections will address façade fires, national regulations, and building operations for vulnerable groups.

Global survey launched on high rise fire response and regulation

CTIF has developed a new survey that aims to gather country-specific information on tall building use, fire statistics and operational readiness.

The survey contains 16 questions covering issues such as fire brigade capabilities, building height thresholds, and the use of helicopters or drones in tall structure fire response.

It also seeks input on regulations for medical, educational, and mixed-use facilities in high rise settings.

According to CTIF, the report is scheduled to be finalised in time for its upcoming international event in Sofia.

Fire statistics 2025 report to include global high rise buildings data: Summary

CTIF is currently compiling its Fire Statistics Magazine 2025, covering fire data from the year 2023.

The deadline for submitting national fire statistics is the end of May 2025.

A new chapter in the report will focus specifically on fires in high rise buildings.

This section is expected to span around 200 pages.

CTIF has received data from member countries.

It has requested additional submissions from non-member countries.

The organisation is currently analysing all received data.

Content in the chapter will include case studies, regulatory frameworks and usage types for tall buildings.

A global survey has been launched to gather more detailed insights.

The survey includes questions on definitions, fire response tactics, and operational permissions in high rises.

CTIF plans to publish the completed report by the time of its Sofia event.

African women’s PPE study receives NEBOSH funding

NEBOSH funds research into protective equipment for African women

NEBOSH has reported that it is funding a year-long study by the Society of Women in Safety, Health and Environment – Africa (SOWSHE-A) to examine the risks associated with personal protective equipment (PPE) used by African women.

The project will focus on how ill-fitting PPE, designed primarily for men, may increase the risk of injury for women across various work settings in Africa.

The research will include data gathering, demonstrations, simulations and community campaigns to raise awareness about anthropometric differences and their impact on safety.

Research will address risks linked to poorly fitted PPE

NEBOSH explained that PPE is considered the last defence against occupational hazards, and if it does not fit correctly, it can endanger the user.

The organisation stated that issues such as oversized clothing causing entanglement, loose footwear increasing the likelihood of slips, and poorly fitted headwear failing to provide adequate protection, are among the concerns that the project aims to address.

The study is expected to provide insights into the health and safety needs of African women and promote more inclusive PPE design.

Project aims to improve data on PPE for diverse users

NEBOSH Social Development Manager Mariyah Mandhu said: “There is limited international data related to women’s protective equipment, and even less so for women from different ethnic backgrounds.

“Our funding will enable the health and safety and wider business communities to understand the challenges and barriers of current PPE, with a longer-term view of creating inclusive PPE design and production practices.

“Ultimately, this will improve the safety and health of these women in the workplace.”

Mandhu stated that the partnership with SOWSHE-A aligns with NEBOSH’s goals of addressing diversity gaps in health and safety research.

SOWSHE-A highlights safety and gender equity goals

SOWSHE-A Founder Funmi Adegbola said: “We are thrilled to have NEBOSH’s support in advancing this important initiative.

“Their commitment to workplace safety and health aligns perfectly with our goal of ensuring that African women are equipped with the right PPE to protect their well-being.

“This collaboration is not only vital for improving the safety of women workers, but it also strengthens the movement for greater gender equity in the workplace.”

Adegbola added that the initiative will contribute to building awareness around inclusive workplace practices.

African women’s PPE study receives NEBOSH funding: Summary

NEBOSH is funding a year-long research project led by the Society of Women in Safety, Health and Environment – Africa (SOWSHE-A).

The research focuses on the use of personal protective equipment (PPE) by African women.

NEBOSH stated that ill-fitting PPE can increase the risk of harm in the workplace.

SOWSHE-A will conduct research, public demonstrations, simulations and campaigns during the project.

NEBOSH Social Development Manager Mariyah Mandhu said there is limited international data on women’s PPE.

Mandhu stated that the project aims to support more inclusive PPE design and production.

SOWSHE-A Founder Funmi Adegbola said the initiative aligns with goals for safety and gender equity.

The project is based in Africa and targets black African women in particular.

Small spaces, big gains: How small-space suppression systems are shaping fire safety in the Middle East

IFSJ presents a detailed look into compact fire suppression in confined zones, covering strengths, setbacks, breakthroughs and heightened Middle East demand

In response to rising hazards in confined equipment environments, operators now use tailored suppression systems for small spaces.

This article examines the global market for compact solutions installed in buses, industrial machinery and similar settings.

It outlines market trends, explains system strengths, identifies frequent hurdles and discusses relevant technological updates.

Reacton Fire Suppression is among those having broadened its offerings to address the demands of public transport operators and production lines.

Data from Grand View Research informs this report, which highlights worldwide developments while noting growing interest in the Middle East, where new installations often favour advanced, automated protection.

Market overview

According to Fortune Business Insights, the overall fire suppression market was valued at USD 16.7 billion in 2022 and could reach USD 23.8 billion by 2029.

Within that sphere, small-space solutions are expanding due to greater attention on vehicles and enclosed machinery, where ignition risks can escalate quickly.

Many operators adopt automated units that detect heat through sensor tubing or electronic modules, triggering agent discharge with minimal downtime.

Government guidelines in regions such as the European Union and North America strengthen adoption, especially in transport and heavy industry.

The commercial bus sector, for instance, uses built-in systems to address potential engine fires and protect passenger well-being.

Emerging economies also show interest, as industrialisation drives machinery usage in confined areas.

This expansion is guided by continuous product innovation, with manufacturers striving to deliver efficient and eco-friendly alternatives that align with evolving regulatory standards across multiple global markets and operational reliability.

Strengths

Compact suppression systems offer advantages for equipment with limited space.

They often include immediate detection mechanisms, allowing swift agent release in areas with restricted airflow.

Suppliers such as Reacton Fire Suppression use temperature-sensitive tubing that ruptures at precise points, preventing fire spread at an early stage.

These smaller units reduce accidental discharges, requiring fewer chemicals and contributing to environmental responsibility.

Many configurations meet recognised standards like NFPA and UL, reinforcing trust among global purchasers.

Because of their size, these units are simpler to retrofit into older vehicles or machinery, extending operational lifespan without excessive modifications.

Maintenance can be less demanding, limiting the overall lifecycle cost.

They also fit well into varied applications, including off-road equipment and generator enclosures, where hazards can intensify in tight compartments.

According to MarketsandMarkets, this focus on compact yet reliable systems strengthens their position in numerous industrial, commercial and public transportation settings and global reach.

Challenges and developments

Varying regional regulations create compliance hurdles, as each zone imposes distinct mandates on agent types and system testing.

Budget constraints hamper some operators, who choose cheaper solutions lacking dedicated small-space protection.

Durability is also a factor: high vibration and temperature extremes can degrade components unless they are rigorously tested.

According to MarketsandMarkets, inconsistent manufacturing standards occasionally erode buyer confidence, prompting buyers to seek recognised certifications.

Environmental concerns around chemical clean-up and disposal may further influence purchasing decisions.

Frequent updates to safety codes, combined with the drive for greener suppressants, place added daily demands on manufacturers and end users alike.

Technological progress has introduced smart detection methods, using electronic sensors that signal control panels.

Some suppliers integrate remote alerts, enabling operators to monitor system performance through online dashboards.

Reacton Fire Suppression mentions refined nozzles and improved agent dispersion, allowing comprehensive coverage in cramped engine compartments.

Researchers are investigating eco-friendlier extinguishing chemicals, aiming to lower toxicity and residue.

Collaboration with vehicle manufacturers leads to factory-installed solutions that reduce retrofitting complexity.

Meanwhile, industry specialists predict that automated diagnostics will become more widespread, helping maintenance teams track component wear.

These moves indicate ongoing efforts to enhance reliability and safety in tight spaces.

Regional Insights

North America maintains a steady market for small-space suppression, largely driven by safety regulations in transit networks and industrial sites.

Europe enforces strict guidelines for machinery and public transport, spurring steady growth in automated suppression.

Asia-Pacific sees broad adoption in mining and manufacturing, where enclosed machinery must mitigate hazards linked to dust and high temperatures.

The Middle East stands out for ongoing construction projects and extensive industrial expansion, leading to growing demand for compact solutions that fit within limited footprints.

Frost & Sullivan note that countries such as the United Arab Emirates increasingly require advanced fire safety systems to safeguard high-value assets.

Many local authorities are aligning with international standards, encouraging installation of self-activating suppression units in buses and other vehicles.

This interconnected market development points to a worldwide surge in interest, as business sectors look for solutions that match evolving safety expectations without hindering operational capacity and resilience.

This article was originally published in the May 2025 issue of International Fire & Safety Journal – to read your FREE digital copy, click here.

NIOSH firefighter health researchers temporarily reinstated amid federal layoffs

Firefighter health staff recalled following public pressure

The Trump administration has reinstated some National Institute for Occupational Safety and Health (NIOSH) employees who had been laid off, including staff focused on firefighter health and safety, according to Politico.

The employees were called back temporarily until 2 June, but the future of the affected programmes remains uncertain.

The reinstatement affects workers tracking cancer rates among firefighters and supporting 9/11 survivors.

The U.S. Department of Health and Human Services (HHS) has not committed to a permanent return, but a spokesperson said: “It could be a possibility that [certain NIOSH employees] will be brought back permanently.”

The International Association of Fire Fighters (IAFF) said the decision followed “direct talks” between the union and HHS Secretary Robert F. Kennedy Jr.

Union and senator raise concerns over programme future

IAFF President Edward A. Kelly said in a statement: “It was explained to me that the Reduction in Force (RIF) ordered by a White House Executive Order was misinterpreted by ‘mid-level bureaucrats,’ and our programs — which Secretary Kennedy assured me were ‘critical’ — would continue.”

Kelly added that Kennedy claimed core firefighter safety teams would remain in place.

Senator Shelley Moore Capito (R-W.Va.) expressed concern that NIOSH roles at the Morgantown, West Virginia office, affected by mass layoffs on 1 April, might not be permanently restored.

Capito told Politico: “They did call some people back, which we’re very pleased about. But in terms of the technicalities of permanent [reduction in force], I think that still does loom out there.”

Capito also raised concerns about the Black Lung programme and said she remained “cautiously optimistic” about an extension beyond June.

Staff called back with unclear status

Two NIOSH employees who spoke to Politico anonymously said human resources contacted them and asked them to return to finish prior assignments.

One worker said the team was told to return despite no official job offer or documentation confirming permanent reinstatement.

Another NIOSH staff member said their coal mine safety office had received instructions to return but still faced the same termination dates.

The employee added that this also applied to some workers on the Fire Fighter Fatality Investigation and Prevention Program.

One worker said: “Everyone is very suspicious that this is just being done to create the appearance that HHS is addressing concerns. But programs will still be effectively eliminated in June.”

Broader cuts affected national safety research

The layoffs are part of a wider HHS restructuring that affected multiple agencies, including the Centres for Disease Control and Prevention (CDC) and NIOSH.

Health Secretary Robert F. Kennedy Jr. previously said up to 20 percent of those laid off could be rehired.

On 28 April, Kennedy posted on X: “Firefighter health and safety programs remain a top priority … As the agency continues to streamline its operations, critical services of NIOSH will remain intact.”

The American Federation of Government Employees Local 3430 President Cathy Tinney-Zara said the decision did not apply to all affected staff.

In a statement, Tinney-Zara said: “These are undoubtedly vital initiatives, but they are only a portion of the comprehensive, nationwide worker protection mission NIOSH fulfills.”

NIOSH firefighter health researchers temporarily reinstated amid federal layoffs: Summary

The Trump administration has recalled some laid-off NIOSH staff.

The reinstated staff include those working on firefighter cancer tracking and support for 9/11 survivors.

The call-backs are currently scheduled to last until 2 June.

An HHS spokesperson said permanent reinstatement is possible but not confirmed.

The International Association of Fire Fighters said the decision followed talks with Secretary Robert F. Kennedy Jr.

Senator Shelley Moore Capito said the situation in Morgantown, West Virginia remains uncertain.

Capito raised concerns about the future of the Black Lung programme.

NIOSH staff reported being contacted to return without formal reinstatement letters.

One worker said the move appears aimed at public relations, not programme restoration.

Some workers in coal mine safety and firefighter fatality investigations were also recalled.

Health Secretary Kennedy stated publicly that firefighter safety remains a priority.

The American Federation of Government Employees said the reinstatements are partial and focus on high-profile programmes.

NASA wildfire research faces uncertainty amid proposed US budget cuts

FireSense project monitored controlled burn in Georgia to aid wildfire management

NBC News has reported that a NASA wildfire research project called FireSense may be at risk due to potential federal budget cuts in the United States.

The project recently monitored a 700-acre prescribed burn at Fort Stewart Army base in Georgia using airborne instruments to collect data on fire behaviour and intensity.

The burn was carried out under controlled conditions to clear vegetation and study fire dynamics, helping scientists understand how wildfires spread and how they might be better managed.

NASA’s advanced technology used for real-time wildfire data collection

According to NBC News, FireSense applies technology developed for space missions to wildfire monitoring.

At Fort Stewart, researchers used an airborne infrared instrument known as AVIRIS-3 to map the fire’s spread, temperature and behaviour.

NASA said the project aims to provide wildland fire managers with field-ready tools to improve fire response and prevention efforts.

NASA FireSense Project Scientist Jacquelyn Shuman said: “The goal is to take our innovative technology, go into the field with wildland fire managers and actually transfer that innovative technology so that they can use it on a wildland fire.”

Former firefighter says fire science must be a tool in addressing the crisis

The programme’s team includes former wildland firefighters, such as FireSense Project Coordinator Harrison Raine.

Raine told NBC News: “We’re trying to combine all aspects of the fire life cycle and using science to understand what is happening and what we can do about it.”

Raine added: “This is a deep personal issue for me. I’m from Los Angeles. I’ve seen kind of the devastation and really trying to tackle this huge problem. And it takes every tool that we have, and science is a big one.”

Raine previously worked as a member of a hotshot crew dispatched to wildfires across the country, including in Idaho, Montana and California.

Budget proposal raises questions about future of NASA Earth science projects

NBC News reported that the White House is preparing a budget proposal that may include deep cuts to NASA’s Science Mission Directorate, which oversees Earth-focused research like FireSense.

Rachel Cauley, a spokesperson for the White House Office of Management and Budget, said: “No funding decisions have been finalized.”

NASA declined to comment and referred budget queries to the Office of Management and Budget.

Michael Wara, a senior research scholar at Stanford University, stated: “FireSense was born because NASA said: Wildfires are a big and emerging problem, and we’re going to invest and we’re going to use our skill set to help the rest of the government do its job better.”

Wara added: “There’s no question that our level of information about fire and fire risk has improved with FireSense. It would be a shame to lose it, because it would be very hard to get back.”

Congressman George Whitesides of California also told NBC News: “Cuts to crucial wildfire programmes like Firesense put communities like mine — which are just beginning to rebuild after the devastating Southern California fires — at extreme risk.”

NASA wildfire research faces uncertainty amid proposed US budget cuts: Summary

NBC News has reported that the FireSense project collecting wildfire data using NASA airborne technology is at risk.

The project recently studied a prescribed burn at Fort Stewart Army base in Georgia.

The burn was part of efforts to understand fire spread, temperature and behaviour.

FireSense uses AVIRIS-3 infrared sensors to map fire movement and provide insights for fire managers.

The data aims to support real-time wildfire response and inform vegetation management strategies.

The project involves collaboration with local, state and federal fire agencies.

Former firefighters working with FireSense have said science must be part of the fire response.

NBC News reported that proposed budget cuts could impact NASA’s Earth science programmes.

NASA declined to comment on the potential funding changes.

A White House spokesperson said no decisions have been finalised.

Experts including Stanford University’s Michael Wara said losing FireSense would reduce wildfire data availability.

Representative George Whitesides warned that programme cuts would place fire-prone communities at higher risk.

Scientific perspectives on wildfire risk management at the WUI property scale

Portugal research centre leads international release on WUI wildfire risk management

The Forest Fire Research Centre of ADAI, based at the University of Coimbra in Portugal, has coordinated the publication of a new open-access scientific volume on wildfire risk management at the property scale in the wildland-urban interface (WUI).

According to CTIF, the book titled Scientific Perspectives on Wildfire Risk Management at the WUI Property Scale presents contributions from 34 researchers across 10 countries, addressing how built environments can be made more resistant to wildfire damage.

The book is freely available online via the University of Coimbra’s digital press.

Book introduces scientific context for wildfire risk in WUI areas

CTIF reported that the publication aims to provide a knowledge base for more effective wildfire risk reduction strategies at the interface between natural and built environments.

The introduction to the book, written by Jack Cohen, retired US Forest Service research scientist and WUI fire expert, outlines decades of fire loss in the United States and highlights the need for ignition-resistant design.

Cohen wrote: “A trend of increasing community destruction during wildfires is apparent. The United States provides a prime example.

“In 1985, 1400 homes and structures burned during wildfires. This motivated the establishment of the US national Wildland-Urban Interface Initiative.

“Approximately 9000 homes burned during US wildfires from 1985 to 1994. The recent decade from 2012 to 2021 had over 45,000 US homes burn during wildfires.”

Local ignition conditions determine wildfire damage to homes

Cohen stated that the primary cause of property destruction in WUI fires is not direct flame contact from wildfire fronts but ignitions due to embers and heat exposure in the immediate vicinity of homes.

He explained: “Research results indicate practical opportunities for effectively creating ignition resistant homes and thereby preventing community fire disasters without necessarily controlling wildfires.”

He added: “Disaster examinations have determined that intense wildfire flame fronts do not continuously spread within communities having moderate to high structure density.

“A community’s streets, utility corridors, driveways, parking areas and building sites create gaps in the continuous tree and shrub canopies that cease high intensity wildfire spread.”

Preface outlines need for design and mitigation strategies at the property scale

The preface of the book discusses the concept of the Home Ignition Zone (HIZ), defined as the area within 30 metres of a structure, and notes that ignition resistance within this zone is key to reducing community-level wildfire risk.

Cohen wrote: “The typical WU fire patterns indicate a structure’s local conditions principally determine its ignition.

“Unburned area surrounding the destroyed home indicates lofted burning embers as the principal source of ignition directly on the home or from ignited materials immediately adjacent.”

He continued: “Reducing structure ignition potential remains the principal factor for reducing community wildfire risk.

“Thus, WU fire disasters must be defined and approached as a home-structure ignition problem, not as a problem of wildfire control.”

Conclusions call for broader collaboration including citizen involvement

Miguel Almeida, Senior Researcher at ADAI and coordinator of the publication, concluded that more stakeholders need to be involved in WUI wildfire risk management.

Almeida stated: “The increasing frequency and severity of wildfires in the wildland-urban interface across the globe underscore the critical importance of understanding and managing wildfire risk at these areas.

“Recent dramatic fires have highlight the need for continued research and practical application in both operational and policy-making spheres.”

He added: “One of the key challenges highlighted by recent wildfire events is the incapacity and insufficiency of public civil protection services to address all incidents during very large-scale fires.
There is a growing recognition that citizens must play an active role in this challenge.”

The book presents international research on property-scale wildfire mitigation

CTIF reported that each chapter was coordinated by its lead author and presents independent analysis on topics ranging from WUI characterisation and ignition mechanisms to regulations and fire behaviour modelling.

The book includes sections on self-protection systems, defensible space design, and insurance policy development as it relates to wildfire risk.

According to Almeida, the structure of the book allows readers to explore the topic progressively or by interest area.

Almeida stated: “While some redundancy or varying approaches to the same topic may be detected through the book due to the independent nature of the chapters, they follow a logical sequence that allows readers to progress over the book methodically.

“These chapters collectively demonstrate that there are multiple, complementary approaches to managing wildfire risk in the WUI.”

Researchers from ten countries contribute to the open-access volume

CTIF listed the contributors as including scientists and engineers from Portugal, the United States, Chile, Israel, Spain, France, Japan, China, South Korea, Australia and New Zealand.

The authors represent academic institutions, national research organisations, and operational fire services.

The book is available for free download via the University of Coimbra’s academic press.

Contributing authors

Miguel Almeida, Luís Mário Ribeiro, Domingos Xavier Viegas, MohammadReza Modarres, Hafsae Lamsaf and Almerindo Ferreira from ADAI, University of Coimbra, Portugal; Dulce Lopes and Inês de Oliveira Martins from the University of Coimbra – Institute for Legal Research and Faculty of Law, Portugal; Jack Cohen from the US Forest Service (retired), USA; Albert Simeoni from Worcester Polytechnic Institute, USA; Pedro Reszka from Universidad Adolfo Ibáñez, Chile; Avi Bar-Massada from the University of Haifa, Israel; David Caballero from MeteoGrid, Spain; Inês Cardoso Oliveira, Carlos Viegas Damásio, João Moura Pires, Diogo Lopes and Gonçalo Prates from Universidade Nova de Lisboa, Portugal; Marielle Jappiot, Eric Maillé and Anne Ganteaume from INRAE and RECOVER, France; Samuel L. Manzello from Tohoku University, Japan and Reax Engineering, USA; Bruno Guillaume and Eric Guillaume from Efectis, France; Kuibin Zhou from Nanjing Tech University, China; Sayaka Suzuki from Tokyo Institute of Technology, Japan; Elsa Pastor, Pascale Vacca, Eulalia Planas and Alba Àgueda from CERTEC, Universitat Politècnica de Catalunya, Spain; Kim Donghyun from Jeonju University and the International Institute of Applied Systems Analysis, South Korea; Greg Baker from Fire Research Group Limited, New Zealand; Greg Penney from Fire and Rescue NSW, Australia; and Jacquelyn R. Chase from California State University–Chico, USA.

Scientific perspectives on wildfire risk management at the WUI property scale: Summary

The Forest Fire Research Centre of ADAI published a new open-access book on WUI property-scale wildfire risk management.

CTIF reported that the book features contributions from 34 researchers in 10 countries.

The lead coordinator of the volume is Miguel Almeida of the University of Coimbra.

Jack Cohen of the US Forest Service contributed the preface.

The book explains that ignition resistance in the Home Ignition Zone is essential to community wildfire protection.

Cohen stated that most home losses are caused by embers and local conditions, not fire fronts.

The book covers WUI characterisation, structure vulnerability, and fire modelling.

It also addresses regulation, insurance, and citizen involvement in wildfire prevention.

The conclusions call for more inclusive strategies, beyond traditional firefighting responses.

Researchers from universities, research institutes and fire services contributed to the book.

The book is available to download for free from the University of Coimbra’s press.

Climate change adaptation in UK emergency response: Fire chiefs raise concerns

NFCC warns of increasing climate risk to fire services

The National Fire Chiefs Council (NFCC) has responded to new findings from the Climate Change Committee, highlighting the lack of progress in preparing the UK for climate change impacts.

NFCC Lead on Environment and Climate Change, Ben Brook, said fire and rescue services are already facing increased pressures from climate-related incidents such as floods and wildfires.

According to Brook, these events are escalating and placing greater demands on the emergency services.

He said: “Today’s report echoes our own warnings earlier this year that the UK is not fully prepared for the impacts of climate change.”

Brook continued: “Already this year, the UK has experienced significant flooding whilst wildfire numbers threaten to overtake those we saw in 2022, a record year for wildfires.”

He added: “It is impossible not to be concerned about the very real and immediate threat climate change poses to our communities, with that threat only set to grow.”

Brook said: “When it comes to the emergency response to these events, it is fire and rescue who are at the forefront and yet they risk being the forgotten member of the emergency service family.”

He added: “With risks around extreme weather increasing, we need urgent and sustained investment in fire and rescue services. Without this, our ability to keep communities safe and protect homes and businesses is seriously undermined.”

Committee outlines current and projected climate risks for the UK

The Climate Change Committee’s 2025 adaptation progress report states that extreme weather linked to climate change is already affecting the UK.

According to the Committee, impacts include increased flooding, higher temperatures, and wildfire-conducive conditions.

It reported that over 6.3 million properties in England are currently in areas at risk of flooding, with projections estimating this could reach 8 million by 2050.

The Committee also highlighted risks to transport infrastructure, with more than a third of roads and railways already exposed to flooding, increasing to around half by 2050.

It stated that extreme heat is also disrupting railways and electricity systems and contributing to thousands of deaths each year.

Without action, it warned this number could rise to over 10,000 annually by 2050, particularly affecting older people.

Climate change poses broader national impacts

The Climate Change Committee warned that climate-related risks extend beyond emergency services and infrastructure.

It reported that more than half of England’s highest quality agricultural land is at risk of flooding, with greater exposure predicted in the next 25 years.

The Committee said UK biodiversity is also threatened, noting it is already in decline.

It stated that sea level rise is expected to increase coastal flooding and erosion risks.

Estimates suggest climate change could reduce UK GDP by up to 7 percent by 2050 if left unaddressed.

According to the Committee, public and private institutions are currently unprepared for these pressures.

Committee outlines four recommendations for improved adaptation

The Climate Change Committee called for action in four key areas to strengthen the UK’s climate change preparedness.

It recommended that the Government set clear and measurable adaptation goals, assign roles across sectors, and link climate risks to national resilience efforts.

The report also urged that adaptation planning be embedded in relevant policies and supported with funding through the next Spending Review.

It stated that assets and services such as hospitals and transport networks must be resilient to current and future weather conditions.

Finally, the Committee called for a monitoring and evaluation framework to track progress and improve learning across all sectors.

Baroness Brown, Chair of the Adaptation Committee, said: “We have seen in the last couple of years that the country is not prepared for the impacts of climate change.”

She continued: “We know there is worse to come, and we are not ready – indeed in many areas we are not even planning to be ready.”

Brown said: “The threat is greatest for the most vulnerable: we do not have resilient hospitals, schools, or care homes.”

She added: “Public and private institutions alike are unprepared.”

She stated: “We can see our country changing before our eyes.”

Brown said: “People are having to cope with more regular extreme weather impacts.”

She added: “People are experiencing increasing food prices.”

She said: “People are worried about vulnerable family members during heatwaves.”

Brown concluded: “Ineffective and outdated ways of working within Government are holding back the country’s ability to be future-fit.”

She asked: “Is this Government going to face up to the reality of our situation?”

She concluded: “Failing to act will impact every family and every person in the country.”

Climate change adaptation in UK emergency response: Summary

The National Fire Chiefs Council has said that fire and rescue services are under pressure from rising climate-related emergencies.

The statement was made in response to a new report from the Climate Change Committee.

The Committee reported that extreme weather events such as floods and heatwaves are becoming more frequent in the UK.

NFCC Lead on Environment and Climate Change Ben Brook said fire services need investment to respond effectively.

Brook said that wildfires and flooding are becoming more severe.

The Committee’s report found that 6.3 million properties in England are at flood risk.

This number could reach 8 million by 2050.

Over a third of UK road and rail infrastructure is already at flood risk.

This is expected to increase to around half by mid-century.

Extreme heat is contributing to thousands of deaths annually.

Without further measures, this number could exceed 10,000 deaths each year by 2050.

Over half of top-quality farmland in England is currently exposed to flooding.

Sea level rise is increasing the risk of coastal erosion and flooding.

The Committee warned that climate change could reduce GDP by up to 7 percent.

It said adaptation targets, cross-government coordination, policy integration, and monitoring must improve.

The Committee concluded that adaptation efforts across the UK remain inadequate.

Fire research testing developments at FPA: Supporting UK safety and construction strategy

FPA expands UK fire research testing to meet construction and safety demands

The Fire Protection Association (FPA) has expanded its fire research testing capacity to meet the growing needs of UK insurers, regulators, manufacturers, and fire engineers.

According to the Fire Protection Association, its Gloucestershire-based Fire Testing Laboratory – accredited by UKAS – now offers testing aligned with multiple British Standards including BS 8414 for cladding, BS 8458 for watermist systems, and several fire resistance standards for building components.

The FPA explained that its expanded facility is designed to support experimental fire testing, full-scale reconstructions and fire simulation research. The organisation stated this research plays a role in supporting new safety strategies across government, construction, and the fire and rescue sector.

Technical director highlights the importance of experimental fire testing

George Edwardes, Technical Director of the FPA, said the association’s expanded research testing supports fire safety and industry adaptation.

Edwardes said: “Research and experimental fire testing is going to play a critical role in enabling net zero construction.”

Edwardes added: “We are pleased to have further expanded our capabilities with our dedicated research team who can support the needs of the industry in shaping fire safety strategies, improving building resilience and informing regulatory and insurance practices.”

The FPA stated that its new facility can support tests involving fires up to 8 MW, with features including integrated suppression systems, overpressure vents and environmental controls for smoke extraction and wastewater management.

Research into external cladding systems informs safety practices

The FPA said its fire research is primarily carried out through its RISCAuthority research programme, which is funded by UK insurers and supports sector-specific working groups.

The organisation explained that it recently published a guide on fire risks associated with green and living walls. This guidance was produced in collaboration with living wall suppliers and insurers including Vertical Meadow, Viritopia, Biotecture, ABI, Growing Revolution and Scotscape.

The FPA added that it also developed a new fire test method for cladding systems, known as RISC 501, in response to identified shortcomings in BS 8414 and BR 135 testing. The FPA stated the new approach was created with the University of Central Lancashire, insurers and consultants to improve assessment reliability and limit fire spread.

Ongoing projects aim to improve fire resilience in changing construction methods

The FPA stated that its future research initiatives focus on enabling safe use of modern construction materials and technologies.

The association reported plans to examine fire safety in timber-framed buildings, insulation installation, photovoltaic panel use, and lightweight steel structures.

It added that other work will include compiling a database on combustible product behaviours, and developing a fire safety classification system for buildings that could integrate with BIM platforms.

The organisation also plans to carry out horizon scanning for emerging fire risks.

Fire research testing developments at FPA: Summary

The Fire Protection Association (FPA) has expanded its fire research testing facility in Gloucestershire.

The facility supports British Standard-aligned testing, fire reconstructions and simulations.

FPA’s Technical Director George Edwardes stated that experimental fire testing supports net zero construction.

The new facility includes suppression systems, overpressure vents, smoke extraction, and wastewater treatment.

Research projects are conducted via RISCAuthority, a UK insurer-funded programme.

Recent studies include fire risk guidance for green walls and development of the RISC 501 cladding test.

Collaborating organisations include Vertical Meadow, Viritopia, ABI, Biotecture, Growing Revolution and Scotscape.

FPA plans future research on safe use of timber, insulation, photovoltaic panels and steel framing.

Other aims include a combustible materials database and building classification system.

The research will feed into fire strategy development and BIM integration.

Horizon scanning for future risks is also part of the FPA’s 2025 research priorities.