Greece launches world’s first national wildfire satellite system

OroraTech has launched and deployment of the Hellenic Fire System, the world’s first national wildfire satellite system in Greece. The system is a four-satellite constellation dedicated to wildfire monitoring and represents the first national satellite network designed exclusively for wildfire detection and tracking. The satellites were launched aboard a SpaceX mission from Vandenberg Space Force Base in California.

The system was developed in collaboration with the Greek Ministry of Digital Governance and Artificial Intelligence, the Hellenic Space Center, and the European Space Agency (ESA). It provides continuous, real-time wildfire intelligence covering 100% of Greek territory, enabling rapid detection and tracking of wildfire activity nationwide.

“Today marks a major step forward in strengthening Greece’s national resilience against wildfires,” said Dimitris Papastergiou, Minister of Digital Governance & Artificial Intelligence. “By integrating space-based capabilities into our emergency response systems, we are equipping our fire services with the tools they need to respond faster, act more effectively, and protect lives, property, and the environment.”

“The deployment of this system demonstrates how European collaboration can deliver tangible impact for citizens,” said Simonetta Cheli, Director of Earth Observation Programmes at the European Space Agency. “By combining advanced space technologies with operational services on the ground, we are enabling faster, more informed responses to natural disasters and strengthening Europe’s leadership in Earth observation.”

“This is a defining moment not just for Greece, but also for how the world approaches wildfire management,” said Martin Langer, CEO of OroraTech. “For the first time, an entire country is protected by a dedicated satellite constellation built to detect and track wildfires in real time. This is the blueprint for how nations can use space technology to safeguard their people, ecosystems, and economies.”

Wildfire satellite system equipped with thermal infrared sensors

The Hellenic Fire System includes four satellites equipped with thermal infrared sensors, a ground station in Greece, and OroraTech’s Wildfire Solution platform integrated into national emergency response systems. Data is delivered through the Ministry of Digital Governance, enabling near real-time wildfire detection with latency measured in minutes and hotspot identification as small as 4 by 4 meters.

In 2025, Europe experienced its most severe wildfire activity in over 20 years, with significant impact in Greece and across the Mediterranean region due to rising temperatures and prolonged drought conditions. The new system is designed to address gaps in traditional monitoring by providing continuous coverage and rapid detection during peak fire conditions.

The project is being implemented under an ESA Contract within the framework of the Greek National Satellite Space Project. The Project: Small-Satellites (Measure ID 16855) is implemented by the Hellenic Ministry of Digital Governance and Artificial Intelligence with the European Space Agency (ESA) Assistance in the Management and Implementation. It is part of the National Recovery and Resilience Plan ‘Greece 2.0’, funded by the Recovery and Resilience Facility (RRF), a core programme of the European Union-NextGenerationEU.

Eccotarp to showcase ET-Roller 7 electric fire hose winder at INTERSCHUTZ

Eccotarp has said that it will showcase its ET-Roller 7 electric fire hose winder at the INTERSCHUTZ exhibition, which takes place next month.

While many end users still manually wind fire hoses, the company said winding various types of fire hoses doesn’t always have to be hard and physically demanding work. The ET-Roller 7 electric fire hose winder enables userrs to wind fire hoses up to 6 inches in diameter.

The winder features a motor powered by Milwaukee batteries, a telescopic handle, a stable four-wheel chassis and a Quick-Release mechanism for fast exchange of adapters for winding different types of fire hoses.

It also features two types of removable carriers (DRUM or 2 FORKS) according to the size of the hose to be wound up and is suitable for various winding methods such as smooth winding of the hose by the coupling as well as hoses folded in half.

The company, based in the Czech Republic, has also confirmed that it will showcase its range of magnetic leak patches, folding spill containment berms and tanks and drain covers at the event.

Visit the Eccotarp Booth E13, Hall 17 and try the ET-Roller 7 in person.

Water Mist Conference 2026 to take place in Prague

Prague to host conference on water mist technology

The 25th International Water Mist Conference (IWMC) will take place in Prague, Czech Republic, on 7th and 8th October 2026.

The conference webpage www.iwma.net/iwmc is now online.

Meaning: The ticket shop is open! And: The International Water Mist Association (IWMA) still has exhibition space on offer!

New training workshop for water mist systems

In 2026, IWMA will introduce a fresh element to the event.

The regular 1.5-day conference programme will be enhanced by a dedicated half-day training workshop focusing on the design and effective utilisation of water mist systems.

With this initiative, the association continues to invest in educating the fire protection industry on how to apply water mist technology more efficiently and confidently in practice.

CPD certificates will be issued to workshop participants.

Water mist technology, developed into its current form over the past three decades, is today a mature, well-established and environmentally friendly fire protection solution.

While the fundamental principles remain unchanged, significant progress has been made in expanding applications, strengthening validation methods and increasing international approvals.

These developments will be reflected in Prague.

Speakers will present case studies, discuss standards and guidelines, and address both achievements and remaining challenges.

Topics will include emerging risks, broader application areas and continued technological evolution.

Just as importantly, the conference provides valuable networking opportunities in an open and collegial atmosphere.

“Prague is more than a conference,” says Max Lakkonen, President of IWMA.

“It is where the global water mist community comes together to share knowledge, challenge ideas, shape the future of fire protection – and enjoy doing it together.”

Data centre expansion increases reliance on PFAS based fire suppressants

Data centre fire suppression systems use PFAS chemicals

Modern data centres increasingly rely on perfluoroalkyl and polyfluoroalkyl substances (PFAS) to manage high heat levels and mitigate fire risks associated with 24/7 server operations.

The Environmental and Energy Study Institute (EESI) reported that these synthetic chemicals are integral to clean agent fire suppression systems such as FM-200 and Novec 1230.

Unlike water-based alternatives, these agents are non-conductive and leave no residue – properties that prevent damage to sensitive electrical equipment and servers.

The durability of the carbon-fluorine bonds in these materials makes them resistant to environmental breakdown.

This persistence has led to the nickname forever chemicals because they accumulate in human tissue and ecosystems over time.

Toxic effects on the liver, blood, and kidneys are associated with bioaccumulation of these substances.

Market shifts and the phase out of Novec 1230

Fire safety procurement may face changes as major manufacturers move away from producing certain clean agents used in data centre environments.

The manufacturing conglomerate 3M confirmed it ended all PFAS manufacturing after previously announcing a deadline of late 2025.

This decision includes the cessation of Novec 1230 production.

Analysis of fire outbreaks in these facilities since 2021 indicates that risks often stem from equipment failures and lithium-ion battery failures in semiconductors.

Matt Dunn, a PFAS scientist at Tetra Tech, stated: “PFAS regulation represents a unique struggle due to how widespread the chemicals are.

“Since PFAS are in everyday products that are used by every American, from food to bath products, the question becomes: where do you draw the line?”

“Do you go after the user, or do you go after the manufacturer,” Dunn asks.

“And understanding the difference there is very important.”

Regulatory frameworks and legislative proposals

Federal and state authorities are evaluating different methods to manage the presence of these chemicals in industrial infrastructure.

Maine and Minnesota have introduced legislation to restrict products containing intentionally-added chemicals, though some fire safety applications remain exempt.

The 119th Congress proposed the Clean Water Standards for PFAS Act of 2025 (H.R.6668) to establish emission limitations under the Clean Water Act.

The PFAS Research and Development Reauthorization Act of 2025 (H.R.6667) seeks to extend funding for research into these substances.

A 2025 executive order directed several federal departments to expedite permitting processes for data centre infrastructure.

These fast-track initiatives cover the materials required for coolants, semiconductors, and fire suppressants.

 

The data drive: How UL Solutions supports business continuity through certification

Simon Ince, Program Manager, UL Solutions, explores fire safety considerations in data centres and potential strategies

The global data centre industry is constantly pushing the boundaries of innovation in power distribution, cooling, energy storage and server technology.

While these advances bring exciting opportunities, they also introduce new risks.

Mitigating many of these fire risks can be supported by choosing certified fire protection systems that have been properly specified, installed and maintained.

A global industry

While the data centre industry is expanding worldwide, data centres must still comply with regional fire protection standards.

Building codes and regulations differ from country to country, but they generally include prescriptive and performance-based fire safety requirements designed to provide a reasonable level of life safety and some property protection.

However, these regulations often lack measures specifically geared toward maintaining business continuity.

These model codes typically consider the size and complexity of a building, occupancy levels, fire load and potential fire growth rates, and require both passive and active fire protection to achieve an acceptable level of risk to life and structural property.

Regional differences in codes and approvals mean that the methods for achieving regulatory fire protection vary.

Therefore, wherever a data centre business operates, facilities must comply with all applicable local fire safety regulations.

Organisations such as UL Solutions support compliance with regional building codes and installation standards by providing third-party testing, inspection and certification designed to complement region-specific safety requirements.

Business continuity

Data centres operate 24 hours a day, 365 days a year.

For this sector, effective fire protection strategies must also be designed to consider business continuity.

Even a relatively small fire can result in significant operational disruption and financial loss.

Industry data indicates that fire disruption accounts for approximately 14% of significant outages.

While the total number of fire-related incidents may be decreasing, global reliance on digital infrastructure continues to grow.

As a result, outages are becoming more impactful and costly.

The average cost of downtime can soar as high as $9,000 per minute, with large enterprises facing average costs of $540,000 per hour.

Although major data centre fires are infrequent, their consequences can be severe.

In September 2025, a lithium-ion battery fire in South Korea forced the closure of a government-run data centre, disrupting 647 public systems.

Critical services were temporarily paralyzed, with the incident highlighting the vulnerability of critical digital infrastructure to fire-related events.

At the same time, the pace of digital transformation and artificial intelligence (AI) development is accelerating.

Global data centre construction is projected to grow by approximately 11.10% annually through 2034.

This rapid expansion is driving innovation in design, construction methods and energy systems.

As a testing, inspection and certification provider, UL Solutions works with major data centre providers to support innovation by evaluating safety performance.

 Regulations often struggle to keep pace with emerging technologies.

When new risks arise, science-based testing and certification protocols help demonstrate conformity with existing regulations and advance safety where standards have yet to be established.

One example is UL 2755, the Outline of Investigation for Prefabricated Modular Data Center Systems and Related Modular Units, which addresses the increasing demand for prefabricated modular data centres (MDCs).

Modular construction allows faster deployment than conventional builds, with modules often manufactured in one country and installed in another.

Supporting code compliance during factory construction is therefore essential.

Start with a fire strategy

Early engagement with a competent local fire engineer is essential during the planning phase of a data centre project.

Fire engineers routinely develop life safety strategies based on a site-specific hazard mitigation analysis (HMA), but they can also incorporate resilience and business continuity measures into such strategies.

Maintaining fire engineering involvement throughout construction helps ensure that the “on paper” strategy is properly implemented.

For example, many data centres rely on battery energy storage systems (BESS) to provide reliable and continuous power.

These systems can provide immediate backup power until standby generators start.

Fire engineers rely on design guidance such as NFPA 855, which addresses the installation of stationary energy storage systems and requires certification to UL 9540, the Standard for Energy Storage Systems and Equipment.

UL 9540A, the Test Method for Evaluating Thermal Runaway Fire Propagation in Battery Energy Storage Systems, is used to evaluate fire propagation characteristics of specific BESS.

Understanding how a battery system behaves under fire conditions is essential to managing that risk.

Design with function in mind

In addition to fire engineers, specialist designers for active fire protection, such as detection and suppression, along with passive fire protection for fire containment, should be involved early in the planning process.

For example, within the Royal Institute of British Architects (RIBA) Plan of Work, Technical Design is traditionally completed at Stage 4.

However, introducing detailed fire protection considerations during Stage 2 (Concept Design) can help identify and resolve potential fire protection issues early in construction.

Data centres contain extensive building services, such as power cables and air conditioning duct work, that penetrate fire-resisting compartments.

How these services pass through fire-separating elements while still maintaining fire separation is crucial.

Specialist designers understand the importance of third-party certification and selecting systems with verified performance.

Tools such as Product iQ® allow designers to confirm the tested scope and application of products.

Matching certification data to real-world installation conditions helps prevent costly remedial work later.

Protect, detect and suppress

Active and passive fire protection systems must perform reliably when required.

Selection should be based on verified performance testing, as failure during a fire event could result in significant and costly downtime.

Structural fire resistance and compartmentation are fundamental to any onsite fire protection strategy.

Standards such as UL 263, the Standard for Fire Tests of Building Construction and Materials(also recognized as ASTM E119), support the evaluation of structural stability and fire separation.

Separating plant rooms from server halls, for example, limits fire spread and protects critical assets.

Early fire detection is equally important.

Data centres typically have high airflow due to cooling requirements, making traditional detection less effective.

Aspirating smoke detection systems, which continuously sample air near server racks, provide very early warning.

UL 268, the Standard for Smoke Detectors for Fire Alarm Systems, specifies performance requirements for these detection systems.

Fire suppression systems vary depending on the area and risk profile within the data centre.

Typically, inert gas systems and water mist systems are used in areas containing sensitive electrical equipment.

Regardless of the type of system chosen, the components and system should have been tested and certified to be suitable for the specific on-site risk scenario they are intended to mitigate.

Competence matters

Specifying tested and certified products is only part of the solution.

Improper installation can undermine even the best-designed systems.

Installer competence should be established before work commences to avoid costly and disruptive remediation.

Schemes such as the UL Solutions Qualified Fire Stopping Contractor Program can support due diligence in selecting competent specialist contractors.

In a sector where uptime is paramount, fire protection must be approached holistically.

From building design and fire strategy through product selection and installation, each stage must be synchronised to protect life and to support business continuity.

Therefore, the competence of all involved must be specified and vetted.

As digital infrastructure continues to expand, competent specialists equipped with third-party verified fire safety solutions can help drive safer, more reliable data centre operations.

Ongoing management, testing and maintenance

Getting the design, specification and installation of fire protection systems right, helps reduce the risk of downtime from day one.

However, without ongoing inspection, testing and maintenance of fire safety systems, even the best systems may not function as intended over time.

Many data centre providers implement externally audited business continuity management systems, such as ISO 22301 or rely on data centre–specific guidelines such as UL 3223, the Outline of Investigation for Data Center Certification.

Documented, audited processes for fire risk mitigation can provide a proactive approach to maintaining the fire protection system in a data centre.

This was originally published in the April 2026 Edition of International Fire & Safety Journal. To read your FREE copy, click here.

Closing the gap before combustion: Can Sonic Fire Tech replace traditional residential sprinklers?

Remington Hotchkis, Chief Commercialization Officer at Sonic Fire Tech, outlines how infrasound systems detect ignition signatures and deploy targeted acoustic suppression

Wildfires across California and other fire-prone regions increasingly spread through wind-driven embers that travel far ahead of the main fire front.

Structures can ignite even where vegetation has been cleared, because existing protection measures often activate only after combustion has already begun.

Most building systems depend on heat detection, water-based suppression or manual response, leaving a gap between the arrival of embers and the moment a system reacts.

This problem has encouraged interest in approaches that interrupt ignition earlier in the fire chain.

One proposal focuses on infrasound, a form of low-frequency acoustic energy that operates below the range of human hearing.

Sonic Fire Tech is developing systems that use targeted infrasound to interfere with the combustion process and suppress ignition without water or chemical agents.

The technology is being explored for homes, critical infrastructure and operational firefighting tools.

IFSJ Editor Iain Hoey sat down with Remington Hotchkis, Chief Commercialization Officer at Sonic Fire Tech, to discuss how infrasound fire prevention systems are intended to work and where they could be applied.

The term infrasound may be unfamiliar to many readers; how would you describe it, and why did you decide to use it for fire prevention?

Infrasound refers to low-frequency sound waves that are below the audible range of human hearing.

Since it is inaudible, it does not create noise pollution or interfere with electronics.

Household pets, or everyday life.

We chose infrasound because of its effectiveness and that it allows us to address fire risk without causing collateral damage.

How do you believe infrasound interacts with embers or the surrounding air in a way that could stop ignition before a flame forms?

Fire requires three elements: heat, fuel, and oxygen.

When these combine in the right conditions, combustion begins.

Our infrasound technology disrupts this chemical reaction.

The acoustic waves create rapid oscillations in the surrounding air, which interfere with the combustion process by destabilizing the oxygen-fuel interaction.

In simple terms, the sound waves vibrate oxygen at a rate that the chemical reaction of fire can’t take hold, thereby preventing the flame from sustaining itself.

Our early testing has shown when our system is deployed against airborne embers, the soundwaves act as a forcefield which the embers reflect from.

When they land on the ground, they then decay rapidly.

With connective fuels, we also see that combustion process is stopped, such as a wood fence that connects two structures, in the areas that our frequency is being deployed on.

When you install your residential system, what parts of a home are you protecting first, and why those areas?

We have been focused on testing and promoting that our technology is being developed for the exterior wildfire defense of homes.

But builders, insurers, architects, and homeowners realize that we must continue our path proving the technology in 80-100mph winds, ember storms, and 40ft flames 10ft away from another structure that’s burning.

Though initial testing shows we create essentially a sonic forcefield around a structure that mitigates the threat of common ignitions.

The market unanimously has asked, “can you protect the interior of a home from internal residential fires in place of water sprinkler systems?” And the answer is YES.

Because we can detect the flame much quicker, we can respond immediately and suppress a small fire in its earliest state rapidly, without collateral damage of water.

And the best part, no possibility of water leaks ever occurring, which is a well-known liability of internal based water sprinklers.

Further, the homes that burned in LA County are required to integrate water sprinklers to meet the NFPA 13-D mandate in California.

But the water infrastructure is not adequate to provide ample water pressure to meet the mandated system.

So, homeowners who are rebuilding are forced to purchase an upgraded water meter for $20,000 and up, just to meet the sprinkler code mandate.

Turns out, validating our technology on the internal residential path enables a strategic approach to delivering a solution to the market as a foundational pillar to validating our technology in defending the exterior of homes during a wildfire conflagration event.

How does the system know when to activate, and what happens in the moments after it does?

The system is designed to operate autonomously.

FM-certified IR3 sensors continuously scan for early ignition signatures, including fire chemical traces and ember activity.

These sensors feed data into our AI-driven detection system, which evaluates risk conditions in real time.

When the thermal conditions exceed a defined threshold, the system deploys automatically with no human intervention required.

Activation occurs well before traditional sprinkler systems would engage, which typically happens only after flames are fully established.

Once activated, targeted infrasound waves are emitted to interrupt combustion or decay embers on the exterior of a home.

The process leaves no residue, does not alter oxygen levels in living spaces, and does not interfere with electronics or indoor air quality.

It is a silent, rapid-response system designed to act in seconds.

Beyond individual houses, what kinds of sites are you exploring for larger-scale protection, and what makes those sites different from a typical home?

While residential protection is central to our mission, the same core science applies to a range of environments.

We are currently developing our technology to meet all industry demands that water-sprinkler based fire suppression systems currently meet.

We are engaging in commercial pilots this year with several forward-thinking customers who require the most sensitive fire detection and who see the clear benefit of no collateral damage.

In most cases, we are installing our system as a voluntary system that acts as the first stage suppression tech in advance of being certified.

You have also mentioned equipment intended to be carried by people working in fire-prone areas; what problem is that meant to solve, and who might use it?

The Sonic Backpack is designed as a lightweight, portable tool for firefighters and first responders for use on small fires in wildland or urban environments.

In urban areas we are seeing potential for success in extinguishing small rubbish fires., which in Los Angeles account for 120+ calls weekly.

In wildland applications, hot shot crews use 5-gallon initial attack packs, which are quickly depleted and require refilling.

Our backpack unit eliminates that dependency on refilling.

It allows continuous operation for extended periods without water refills and avoids chemical exposure.

The goal is to develop a new tool for firefighters that is dependable and which complements existing equipment and saves critical response time.

What testing, standards, or approvals do you need before this type of technology could be widely accepted by regulators, insurers, or fire services?

We are actively working with leading fire protection engineers to develop our validation case studies needed to inform our certification paths with UL, FM, NFPA.

Currently we are on an initial path to validate the technologies efficacy in exceeding the intent of NFPA 13D, residential interior water sprinklers.

The Sonic Backpack is currently undergoing real-world field testing with firefighters.

Feedback from these deployments informs ongoing research and development.

For regulators and fire services, acceptance ultimately comes down to performance data, reliability, and integration with existing wildfire mitigation frameworks, hence our initial pursuit of NFPA 13D equivalency.

Looking ahead, how do you see this approach fitting alongside existing wildfire measures such as building materials, defensible space, and conventional suppression systems?

Our approach is to complement the proven mitigations that are available in the market today and what comes tomorrow.

We do not intend for our tech to be the silver bullet.

The threat of conflagration events across the world are growing, and we are designing Sonic Fire Tech to be part of the solution to property and community resilience.

How, when, & where our technology best performs in the future of wildfires & urban conflagration events is frankly why we all wake up every morning and are working with purpose to push the tech forward.

This was originally published in the April 2026 Edition of International Fire & Safety Journal. To read your FREE copy, click here.

New click-together CheckFire stands offer compact storage for fire safety professionals

CheckFire introduces flat-pack fire extinguisher stands

Fire safety supplier CheckFire has launched the Commander Flat-Pack Fire Extinguisher Stand range to improve storage and transport efficiency for fire safety engineers and maintenance professionals.

The new units use a click-together assembly method that allows them to be delivered in a flat-packed format.

This design enables professionals to store and handle the equipment more easily when vehicle or warehouse space is limited.

The stands are available as single or double units and are manufactured to hold most types of fire extinguishers.

Technical specifications of the CheckFire Commander range

The stand is constructed from 100% polypropylene to ensure the unit remains durable while maintaining a low weight for portable use.

The single fire extinguisher model weighs 1.2kg and the double stand version weighs 2.1kg.

Engineers can assemble the two-piece units without the need for drilling or additional fixings.

The design accommodates fire extinguishers with capacities ranging from 2kg or litres to 9kg or litres.

These units feature a built-in recess to assist with the installation of CO2 cylinders and provide designated space for ID signs without using clips.

Joshua Marshall, product manager at CheckFire, said: “The Commander Flat-Pack Stand has been designed in response to evolving demands on fire safety provisions.

“Those responsible for specifying, installing, or maintaining equipment increasingly need reliable solutions that are easy to transport, quick and simple to assemble, and durable enough for long-term use.

“CheckFire is proud to deliver on all these fronts with the new Commander Flat-Pack Stand.”

CheckFire stated that the range is intended to simplify installation and support regulatory compliance on site.

Eccotarp to exhibit at INTERSCHUTZ 2026

Eccotarp is to exhibit at INTERSCHUTZ 2026 (Hall 17, Booth E13), the world’s leading trade fair for fire and rescue services, emergency protection, safety and security, taking place in Hannover.

Visitors can explore and test solutions for firefighters and industry, including the ET-Roller 7 electric hose roller (for hoses up to 6″), magnetic leak patches, folding spill containment berms and tanks, drain covers, and more. Visitors can discover also the new range of spill containment berms made from the unique recyclable ReccoPro material.

INTERSCHUTZ , held every five years, brings together global leaders in firefighting, civil protection, rescue services and safety innovation. The event serves as a key platform for showcasing advancements in emergency response technology and fostering international collaboration.

Why the UK’s new PFAS report is a massive wake-up call for fire safety

UK PFAS report sets out tougher path for regulation, remediation and fire sector controls

The House of Commons Environmental Audit Committee has called for a faster and more precautionary UK response to perfluoroalkyl and polyfluoroalkyl substances, warning that the country is already carrying a growing legacy of contamination while harmful emissions continue.

In its report, Addressing the risks from Perfluoroalkyl and Polyfluoroalkyl Substances (PFAS), published on 23 April 2026, the Committee says the Government’s first PFAS Plan is a useful starting point but does not go far enough on restriction, enforcement, clean-up and disposal.

PFAS are used across a wide range of products and processes because they resist heat, water and oil.

The Committee says that same persistence is what makes them a long-term problem.

Once released, they remain in the environment, accumulate in soil, rivers, wildlife and the human body, and are now present in almost everyone’s blood.

The report links PFAS exposure with increased risks including certain cancers, immune suppression, fertility problems and developmental harms.

For fire and safety professionals, the report matters for three immediate reasons.

It reinforces pressure to remove PFAS from firefighting foams and non-essential products, it raises questions about which uses can still qualify as essential, and it highlights a disposal and destruction gap for PFAS-containing waste that already affects portable extinguishers, firefighting appliances and contaminated materials.

Why the Committee says the UK must move faster

A central criticism in the report is that UK REACH is moving too slowly.

The Committee says the domestic chemicals regime has fallen behind the EU and cannot respond quickly enough to emerging evidence on PFAS.

Ministers have said the UK will look to decisions made in trusted jurisdictions such as the EU, yet the Government’s own target for enabling that alignment under UK REACH is December 2028.

The Committee says that is too late and recommends reforming UK REACH by March 2027, with assessment times cut to half the current statutory maximums.

The report also says the UK’s current approach still relies too heavily on reviewing substances one by one.

In practice, that means continued use can carry on while assessment drags on.

The Committee argues that this delays control measures and increases future clean-up costs because PFAS continue to build up in the environment.

It therefore recommends a shift towards group-based regulation, so structurally similar PFAS cannot simply replace those already restricted.

That point is important operationally.

The Committee warns against “regrettable substitutions”, where one problematic PFAS is replaced with another that later proves similarly persistent or harmful.

For manufacturers, buyers and safety managers, that means future compliance will increasingly depend on understanding product chemistry rather than relying on broad marketing claims or partial reformulation.

The proposed essential-use test

The report supports an essential-use approach to PFAS.

Under that model, the first controls would fall on non-essential uses, meaning uses that are not necessary for health, safety or the functioning of society.

The Committee recommends that the Government adopt this framework and begin bringing forward restrictions on PFAS in non-essential consumer products from 2027, with examples including food packaging, cookware and school uniforms.

The report does, however, accept that some uses remain harder to replace.

Evidence to the inquiry pointed to continuing dependence on PFAS in areas such as medical devices, pharmaceuticals, semiconductors, defence applications and certain forms of occupational protective clothing.

One witness told the Committee that PFAS remain critical to personal protective equipment used by fire safety personnel responding to incidents at chemical plants.

The Committee’s position is that clearly defined exemptions may still be needed for essential uses, though these should be time-limited where substitutes are being developed.

For the fire sector, that creates a split picture.

PFAS in foams and some low-value consumer applications faces stronger pressure for removal.

PFAS in specific forms of protective equipment may continue for longer where a genuine performance requirement still exists and no feasible substitute is available.

The likely direction of travel is tighter justification, clearer documentation and less tolerance for routine or convenience-based use.

What the report says about firefighting foams

The Committee confirms that the UK is already consulting on restricting PFAS in firefighting foams.

It also records evidence from the Health and Safety Executive that any UK restrictions in this area will come after the EU, potentially by one or two years depending on how quickly legislation progresses.

The report notes that the EU adopted restrictions on PFAS in firefighting foams in October 2025, with a threshold of 1 mg/L for the sum of all PFAS from 23 October 2030.

That delay matters because the report links slow UK action with wider regulatory divergence.

Businesses operating across Great Britain, Northern Ireland and EU markets may face different obligations for the same products at the same time.

The Committee also warns that slower UK controls increase the risk of PFAS-containing goods that can no longer be sold into the EU ending up on the UK market instead.

The disposal side is just as significant.

Evidence from Britannia Fire told the Committee that more than 10,000 tonnes of PFAS waste from portable firefighting appliances is already waiting to be disposed of before any fresh ban takes effect.

The same evidence said disposal costs have risen sharply, from £0.52 per litre to £2.80 per litre, or £16.80 per extinguisher.

For fire protection firms, service providers and building owners, that points to a practical problem that is already here rather than one triggered only by future legislation.

Exposure, public health and why the report goes beyond drinking water

The Committee says PFAS exposure is not confined to one pathway.

It lists ingestion through drinking water and food, inhalation through air and dust, and absorption through skin contact.

Diet is identified as the main route for most people outside occupational exposure.

On drinking water, the report welcomes updated Drinking Water Inspectorate guidance published in March 2025, which requires water companies in England and Wales to monitor a wider range of PFAS.

That guidance sets a standard of 100 nanograms per litre for the sum of 48 specified PFAS, and the Committee backs plans to turn that guidance into statutory limits.

The Committee says regulation remains fragmented beyond drinking water.

It calls for statutory limits on PFAS in food and agricultural pathways, plus interim PFAS limits and standardised labelling for PFAS-containing consumer products while they remain on the market.

It also wants the Government to publish, within 12 months, a delivery plan for epidemiological studies, biomonitoring and enhanced health screening for groups with known or suspected elevated exposure.

That includes occupational groups as well as affected communities.

For the fire and safety sector, that could mean greater scrutiny of occupational exposure histories, stronger interest in health surveillance for workers handling foams or contaminated equipment, and more pressure to document where PFAS-containing materials are still used.

The report does not create those systems itself, though it clearly points the Government towards them.

The clean-up problem and the cost of delay

The report is clear that prevention alone will not solve the issue because large-scale contamination already exists.

It cites Environment Agency estimates that remediation costs for between 2,900 and 10,200 high-risk sites in England could be between £31 billion and £121 billion.

It also points to wider European analysis suggesting that continuing present levels of PFAS pollution until 2050 would impose very large economic costs, while acting earlier at source would reduce that burden.

The Committee says the current system has not applied the polluter pays principle strongly enough.

It recommends that the Government consult by March 2027 on a national PFAS Remediation Fund.

That consultation should examine an emissions levy on PFAS on the UK REACH candidate list, ways to extend polluter liability to imported products, and increased government funding for local authority remediation where no responsible party can be identified.

The report also says monitoring cannot work without enforcement capacity.

It argues that the Environment Agency needs clearer standards, more staff, more skills and more laboratory support if it is to identify hotspots, require remediation and restrict emissions in practice.

Waste, destruction and what this means in practice

One of the strongest operational sections of the report covers disposal and destruction.

The Committee says a lack of supply chain transparency leaves councils, waste operators and regulators unable to identify which products contain PFAS or how they should be handled safely at end of life.

It recommends consultation within six months on mandatory disclosures requiring manufacturers and importers to report the presence and purpose of PFAS in products placed on the UK market.

It also says the Government must set out a timeline for diverting PFAS waste away from landfill and towards safer treatment or destruction technologies.

That is because PFAS have been detected in landfill leachate and landfill gas, meaning disposal can simply shift contamination from one place to another.

On destruction, the Committee says current UK capacity is limited and depends heavily on high-temperature incineration.

The Minister told the inquiry there are only two hazardous waste incinerators permitted to accept PFAS and that current capacity is judged sufficient.

The report records concern from industry that waste volumes are rising and that poor combustion conditions can break PFAS into smaller chains and disperse them into the atmosphere.

The Committee therefore calls for investment in scalable remediation and destruction technologies, including non-incineration methods, and for formally approved remediation guidance so businesses, local authorities and regulators know what methods are accepted.

What fire and safety professionals should watch next

The report does not itself ban products or create new duties, though it sets out a strong parliamentary case for faster action.

For the fire and safety sector, the immediate pressure points are clear.

PFAS in firefighting foams remains a live regulatory issue and the UK is already behind the EU timetable.

PFAS waste from extinguishers and related equipment is building up, disposal costs are rising and available destruction routes remain narrow.

Some specialist protective uses may continue under an essential-use model, though those exemptions are likely to face closer technical scrutiny and time limits.

The wider message from the Committee is that PFAS should no longer be treated as a niche chemicals issue.

In the report’s view, it is now a regulatory, occupational health, waste management and public protection issue.

That puts it directly in scope for fire engineers, fire protection companies, risk managers, foam suppliers, maintenance firms, waste contractors and building safety teams who still buy, store, use or dispose of PFAS-containing materials.

Britannia Fire supports UK’s new PFAS incineration capacity review

Environmental Audit Committee report highlights Britannia Fire waste concerns

The Environmental Audit Committee (EAC) has published a report on perfluoroalkyl and polyfluoroalkyl substances (PFAS) calling for the Government to restrict non-essential uses of these chemicals across the United Kingdom.

Andy Spence, Managing Director of Britannia Fire, welcomed the findings following his address to the EAC in the House of Commons during June 2025.

Spence explained: “I welcome today’s report which reflects the thorough and focussed approach taken by the EAC.

“In June last year I was invited to address the EAC in the House of Commons to provide an industry viewpoint on the challenges facing the fire safety industry in achieving a smooth transition away from PFAS firefighting foams.

“The MPs listened carefully to my concerns and have highlighted them within the report, in particular the issue of impending bottlenecks and rising costs for the disposal of PFAS foam waste, with only two approved PFAS incinerating facilities currently operational in the UK.”

The cross-party committee warned that the current incineration capacity is insufficient to handle the expected volume of hazardous waste.

National remediation fund proposed for PFAS cleanup

The EAC report recommends that the Government should apply a polluter pays principle and consult on a national PFAS Remediation Fund by March 2027.

Toby Perkins MP, Chair of the Environmental Audit Committee, stated: “Our report calls for the Government to phase out PFAS uses that are clearly non-essential, such as in kitchen equipment and school uniforms, and to take a precautionary approach to approving new PFAS.

“Rather than waiting for proof that a chemical is harmful before banning it, companies should need approval before they introduce a new PFAS substance.”

Spence noted: “I agree wholeheartedly with the findings that urgent action needs to be taken.

“The UK is lagging behind Europe in restricting the use of PFAS.

“We haven’t kept pace and need to catch up.

“We eagerly await the recommendations from the Health and Safety Executive following a six month consultation on proposed restrictions of PFAS in firefighting foam and hope that swift action to phase them out follows soon after.

“Although the phasing out of PFAS for some essential applications may be challenging, banning PFAS foams in fire extinguishers is an easy win.

“There are PFAS-free foam alternatives already available as effective and affordable replacements, such as Britannia Fire’s P50 ECO model, introduced to the market back in 2024.

“Responsible customers are already beginning to make the switch, which is bringing the issue of safe disposal of PFAS foams to the foreground.”

The committee suggests a phased restriction on non-essential consumer products starting from 2027.