Lithium-ion battery fires: Why prevention alone is no longer enough

As lithium-ion battery fires become more frequent, Juho Toukola, CSO of Latauspolku Oy, examines why fire safety strategies must move beyond prevention and address the consequences of thermal runaway

Lithium-ion batteries are everywhere. They power e-bike commutes, cordless tools on every construction site and robot mowers in groundskeeping fleets. Their numbers grow every year and so do the number of fires they cause. In January 2026, a DSV logistics terminal in Poland burned to the ground.

In Finland, a country of roughly 5.7 million people, two battery fires made national news within this spring. In Oulu in April 2026, a family of two adults and four children were forced to evacuate their home and were subsequently hospitalised, while neighbouring apartments suffered smoke damage.

In Espoo in May 2026, a tenant noticed an e-scooter battery beginning to overheat and did exactly what every safety guideline instructs: he moved to take it away from everything else. It exploded in his face and the fire spread to an e-bike battery beside it.

Apartment destroyed, building and other apartments suffered massive smoke damages. These are not exotic events anymore. More batteries mean more failures and a failing lithium-ion battery is unlike anything else in our buildings and workplaces. Once thermal runaway begins, there is no practical way for an ordinary person to put it out.

What happens when a lithium-ion battery fails

Thermal runaway is a self-accelerating chain reaction inside the battery cell. Heat generates more heat, cell by cell and the battery becomes its own fuel and its own oxygen source. This is why a battery fire behaves so differently from a bin fire. It reignites.

It ejects burning material. Cells can rupture violently, turning the battery into a source of projectiles as the Espoo tenant learned at close range. The fire itself is only part of the danger.

A burning lithium-ion battery releases a cocktail of toxic gases, most notably hydrogen fluoride. It is dangerous even at low concentrations. In large quantities it penetrates skin and tissue, but even in the light smoke we see before visible ignition it attacks the lungs and can cause severe injury to people who never see a flame. The Oulu family were hospitalised not because flames reached them, but because smoke and gas did. This combination of unstoppable fire, violent failure and toxic gas is what makes the lithium-ion problem categorically different from the fire risks our buildings were designed for.

Three pillars of lithium-ion battery fire safety, two of which fail at the critical moment

Society currently governs this risk with three tools: guidelines, restrictions and technology. It is worth being honest about what each one can and cannot do.

Guidelines are genuinely valuable. Charge with the original charger, inspect batteries for damage, do not charge unattended, do not charge near exits. Followed properly, they greatly reduce the already small probability of a fire.

But probability reduction is all they do. Guidelines do not stop thermal runaway once it begins and they quietly assume a level of supervision that does not exist in real life. The standard instruction to “supervise charging” asks a resident to watch a battery for seven hours or a logistics operator to assign a human to every charging shelf.

Nobody does this. Everybody knows nobody does this. And as Espoo showed, even the person who notices the problem early and follows the guidance to the letter can end up in the path of the failure. Restrictions are the newer instrument and they deserve more scrutiny than they get.

Housing companies and facility operators across Europe are responding to the risk by banning e-bike and e-scooter charging indoors. On paper, the risk disappears. In practice, it goes underground.

People do not stop charging the device they depend on for their commute. They charge it in their apartment, behind a closed door, where no policy reaches and no detection exists. A prohibited risk that everyone quietly takes is not a managed risk.

It is a denied one and it surfaces exactly the way the Espoo and Oulu fires did: inside homes, where people live and sleep.

A wild west of lithium-ion battery fires solutions

Walk through any fire safety exhibition and you will find an expanding catalogue of products marketed against battery fires. Many of them solve a fraction of the problem and leave the rest untouched.

Fire pouches, blankets and battery tarps can be useful for small consumer cells, but an e-mobility battery pack in full thermal runaway generates enough sustained energy to defeat most of them in seconds rather than contain them for minutes.

Specialised battery extinguishers exist but using one effectively means approaching a device that is ejecting flame, gas and potentially projectiles. For a trained responder in protective equipment with self-contained breathing apparatus, that is workable.

For a resident, a warehouse worker or a night-shift caretaker, in normal clothing it is not a realistic instruction. Passive fireproof cabinets are a step up.

They contain the fire and protect the surrounding space from flame spread. But containment is not suppression. The reaction continues inside and the toxic gases still need somewhere to go.

The effect to people problem remains unsolved. Active suppression systems based on aerosols go further and attempt to interrupt the fire. The difficulty is that aerosols suppress visible flame without reliably stopping the chain reaction underneath it and testing has shown that suppressing the flame while the cells continue venting flammable gas can create explosive conditions. Slowing the reaction is not the same as ending it.

Stop arguing probability. Engineer for consequence of lithium-ion battery fires

The uncomfortable truth is that these fires cannot be prevented. As long as lithium-ion chemistry surrounds us, a small number of failures is a statistical certainty. The meaningful question is not ‘how to reach zero probability’, because we cannot.

It is what happens in the building when the failure occurs. Research within Finland’s national LION project points to a clear answer: water immersion.

Decontex joins NFCC National Firefighter PPE Framework for specialist decontamination

Decontex’s appointment to the NFCC National Firefighter PPE Framework follows a comprehensive evaluation process, in which Decontex achieved an outstanding score of 98.5/100 in the National Fire Chiefs Council’s assessment

Decontex, the Global specialist in the decontamination and maintenance of firefighter personal protective equipment (PPE), has been awarded a place on Lot 9 (Specialist Decontamination) of the National Fire Chiefs Council (NFCC) National Firefighter PPE Framework, following a competitive procurement process conducted by Kent & Medway Towns Fire & Rescue Authority on behalf of the NFCC.

The appointment enables Decontex to provide decontamination services for Fire Structural Personal Protective Equipment (PPE) and Lightweight Firefighting PPE through the national framework.

The award followed an extensive assessment process in which suppliers’ decontamination capabilities were evaluated against technical and quality criteria set by the NFCC. The framework is designed to help fire and rescue services access approved suppliers that meet recognised standards for firefighter PPE maintenance and safety.

During the evaluation, Decontex achieved an outstanding score of 98.5% , earning a weighted result  of 192.50 out of 195.50 and a raw totalscore of 217 out of 220. This  provides independent validation of the quality and reliability of its decontamination service.

Contaminant removal

Decontex is a leading developer of proprietary supercritical carbon dioxide (scCO₂) decontamination technologies for firefighter personal protective equipment (PPE), combining superior decontamination performance with preservation of protective functionality and environmental sustainability.

The process removes contaminants, including polycyclic aromatic hydrocarbons (PAHs), heavy metals and other carcinogenic residues, from deep within fabric and membrane layers that may not be fully addressed through conventional water-based washing methods.

The technology is designed to preserve the protective performance of garments while operating in line with the decontamination tier of NFPA1850 and BS ISO 23616, the international standard covering the care and maintenance of firefighter PPE.

Decontex is currently preparing to introduce its proprietary supercritical CO₂ technology to UK fire and rescue services through a dedicated PPE decontamination service, with operations scheduled to commence latest in the fourth quarter of 2026.The rollout is expected to provide firefighters with access to specialist decontamination technology aimed at reducing long-term exposure to potentially harmful contaminants encountered during operational duties.

The company said it looks forward to working with fire and rescue services across the UK to support firefighter health and safety through enhanced PPE decontamination.

Global Fire Equipment launches FALCON fire detection and extinguishing panels

Global Fire Equipment (GFE) has expanded its fire protection portfolio with the launch of two new control panels, FALCON and FALCON Ex, designed for commercial, industrial and critical infrastructure applications.

The new range brings together certified fire detection and extinguishing control technology, with GFE saying the panels have been developed to support vigilance, reliability and precision across a range of fire safety environments.

FALCON is an intelligent conventional fire detection control panel intended to meet a wide range of building requirements, while FALCON Ex is a dedicated extinguishing control panel certified to EN12094-1 for fire suppression management.

According to GFE, the FALCON panel offers a scalable conventional fire detection solution with Double-Knock logic to help reduce unwanted alarms, cause-and-effect programming and EN54-certified reliability supported by comprehensive power supply monitoring.

FALCON Ex has been developed for applications where fire suppression performance is critical. The panel includes advanced discharge management, integrated Hold and Abort functions, and full monitoring of valves, pressure, release circuits and extinguishing status to support operational control.

Both panels are certified to EN54 and EN12094-1 requirements. GFE said the range has been created to meet the evolving needs of fire safety professionals by combining certified performance with ease of use.

José A. Azevedo, Business and Innovation Manager of the GSS Group, said: “Innovation remains a pillar of our international growth strategy. The FALCON range reinforces our commitment to delivering Portuguese-developed technology capable of meeting the fire safety challenges faced by customers around the world.”

Part of the GSS Group, Global Fire Equipment develops and manufactures fire detection, alarm and control systems for customers in more than 90 countries. The company said the launch of FALCON and FALCON Ex strengthens its strategy of delivering certified fire protection technologies to international markets.

The only FM approved automated monitor system

FM approved automated monitor systems have received dedicated guidance for the first time under FM Data Sheet 4-14. Ryan Fogelman of Fire Rover explains what the new standard means for industrial fire protection, insurers and high-risk facilities

For years, automated monitor fire suppression technology has occupied a unique position within the fire protection industry. While conventional sprinkler systems have long been regarded as the gold standard for property protection, certain occupancies and hazards have continued to present challenges.

Now, a significant development from FM is helping to reshape the conversation. In April 2026, FM published Data Sheet 4-14, Automated Monitor Fire Suppression Systems, marking the first time the organisation has issued dedicated guidance covering FM Approved automated monitor fire suppression systems.

For Fire Rover, the publication is particularly noteworthy because it reflects years of development, testing and industry adoption that have helped establish automated monitor technology as a recognised fire protection solution for some of the most challenging hazards faced by industrial operators.

The hardest part to understand is that an automated monitor is not what you think it is. The automated monitor solution still requires use of a UL/FM approved central station in order to be considered “automatic.”

FM Data Sheet 4-14 signals a new era for automated monitor fire suppression systems

Historically, water monitors have primarily been used as supplementary fire protection equipment. In many facilities they have supported sprinkler systems, assisted firefighting operations or provided additional suppression capabilities in difficult-to reach areas.

FM’s new guidance acknowledges that modern automated monitor systems are fundamentally different from traditional manually operated monitors. Equipped with advanced detection technology, thermal imaging, visual analytics, remote monitoring capabilities and automated targeting, these systems can identify a fire, locate its source and direct suppression streams without human intervention.

The data sheet recognises that while automated monitor systems are typically used as supplementary protection, there are specific applications where they may serve as sole have viewed automated monitor technology as an enhancement to sprinkler protection.

FM’s new guidance now recognises that in certain environments these systems can provide primary protection when designed and installed in accordance with FM’s occupancy-specific guidance and approval requirements.

Waste and recycling facilities drive demand for automated monitor technology

The occupancies identified within FM’s guidance are not typical commercial or industrial environments. Instead, they represent some of the most demanding fire protection challenges in the industry.

Among the applications specifically highlighted are waste fuel-fired facilities, including tipping halls and bunker buildings. These areas frequently contain large volumes of combustible waste materials, constantly changing fuel loads and operational conditions that can make traditional sprinkler protection difficult.

Waste facilities face a unique fire risk profile. Materials are often delivered continuously, stockpiles change throughout the day and fires can develop deep within waste piles before becoming visible. Early detection and rapid suppression are critical to preventing significant losses, operational disruption and environmental impacts.

Automated monitor systems have increasingly been deployed in these environments because they are capable of continuously monitoring large areas and directing high-volume water streams precisely at developing fire events.

FM’s recognition of tipping halls and bunker buildings as suitable applications for automated monitor protection reflects the industry’s growing understanding of how these systems can address hazards that do not always fit conventional models. “

Firestopping InternationalFireandSafetyJournal.com 29 July 2026 But all solutions are not the same. While some automatic systems have shown vulnerabilities during their deployment, especially in “active” locations with a ton of activity, like we see on tipping floors, baling operations and bale storage operations.

In these cases, the only FM Approved Smart monitoring Solution has proven 99.9% effective stopping major or catastrophic losses during events. The Fire Rover solution can work with front line responders to provide experienced firefighting capabilities to the front lines.

Last year Fire Rover agents responded to over 3600 confirmed fires/hotspot and suppressed 473 fires on the front lines. This year they are on pace to suppress over 700 fires. Expanding recognition within storage environments

The FM guidance also recognises applications within pulp and paper operations, particularly or primary protection. This distinction is significant. For many years, facility owners, insurers, engineers and risk managers outdoor storage and storage within non-combustible buildings associated with baled wastepaper.

Fire protection within bale storage environments has long presented challenges. Traditional suppression approaches can face limitations when dealing with large, densely packed storage arrangements.

Automated monitor systems provide an alternative method of applying large volumes of water directly to affected areas while maintaining coverage. For operators managing baled wastepaper, recycling materials and related commodities, the inclusion of these occupancies within FM’s guidance provides additional recognition of automated monitor technology as a viable protection strategy when implemented in accordance with FM recommendations.

The importance of FM approval

One of the most significant aspects of the new data sheet is its emphasis on FM Approved systems. The document repeatedly stresses that automated monitor fire suppression systems are more complex than conventional sprinkler systems and that approval, testing, validation and compliance with manufacturers’ design, installation, operation and maintenance requirements are critical to achieving acceptable levels of reliability and performance.

FM notes that only one FM Approved automated monitor system was commercially available at the time of publication. That solution is Fire Rover. Please reach out to rfogelman@ firerover.com if you are interested in learning more.

This highlights the extensive testing, evaluation and validation required to achieve approval status. For facility owners and insurers, FM Approval provides confidence that systems have undergone rigorous assessment for performance, reliability, functionality and integration.

In an industry where reliability is paramount, third-party validation plays a crucial role in supporting adoption and acceptance. Beyond suppression A defining characteristic of modern automated monitor technology is that it extends beyond simple water delivery. Today’s systems integrate advanced detection capabilities, thermal imaging, visual analytics and automated decision-making.

These capabilities allow facilities to identify developing incidents at a much earlier stage than would be possible through traditional suppression systems alone.

Rather than waiting for a fire to activate a sprinkler head, automated monitor systems continuously observe protected areas, detect abnormal heat signatures or visible flames, verify incidents and initiate suppression activities.

This combination of early detection and targeted suppression can be particularly valuable in environments where fires can grow rapidly or develop within large open areas. The technology’s ability to provide continuous monitoring also delivers operational benefits beyond fire suppression, including improved situational awareness, faster incident verification and enhanced support.

What FM recognition means for the future of automated monitor fire protection

The publication of Data Sheet 4-14 is not occurring in isolation. Automated monitor systems are also referenced within other FM property loss prevention data sheets covering specific hazards and occupancies.

This broader integration demonstrates how the technology is increasingly being recognised as part of a comprehensive risk management strategy.

As FM continues to gain experience with automated monitor systems and as additional applications are evaluated, future guidance will likely continue to evolve. The data sheet itself notes that the range of recognised occupancies may expand as technology develops and additional performance experience is gained.

For Fire Rover and the wider automated monitor sector, FM’s publication represents an important milestone. The new guidance reflects a growing industry recognition that certain hazards require specialised protection strategies beyond traditional approaches.

It acknowledges the role that automated monitor systems can play in addressing those challenges

LEADER GROUP acquires MERCEDES TEXTILES to strengthen firefighting equipment portfolio

LEADER GROUP acquisition of MERCEDES TEXTILES expands its North American presence

LEADER GROUP has acquired Canadian manufacturer MERCEDES TEXTILES as part of its strategy to expand its international presence and strengthen its portfolio of firefighting and rescue equipment.

The acquisition brings together LEADER GROUP’s existing range of emergency response technologies with MERCEDES TEXTILES’ expertise in manufacturing fire hoses, fittings and portable pumps, enhancing the Group’s offering for fire and rescue services worldwide.

Founded in 1979 in Quebec, MERCEDES TEXTILES designs and manufactures equipment for municipal, military, industrial and wildland firefighting services. The company exports products to more than 50 countries through its three entities – MERCEDES TEXTILES Ltd., HIGHWATER HOSE Inc. and HYDRO-WICK INDUSTRIES Ltd.

LEADER GROUP said the acquisition will strengthen its long-term presence in North America while expanding its product offering, particularly for wildland firefighting, and supporting MERCEDES TEXTILES’ international growth through the Group’s global distribution network.

The move represents the latest stage in LEADER GROUP’s transformation from a specialist manufacturer into an international provider of complementary firefighting and rescue solutions.

Since 2021, the Group has doubled its revenue through a combination of organic growth and strategic acquisitions, including ZELUP in France and C.E.T. Fire Pumps in Canada.

The expanded portfolio now covers key operational requirements across emergency response, including fluorine-free foam concentrates, firefighting nozzles and monitors, ventilators, search and rescue equipment, portable pumps and high-performance fire hoses.

Miguel Ferreira, President & CEO of LEADER GROUP, said: “This operation marks a major milestone in the development of LEADER GROUP. With MERCEDES TEXTILES, we strengthen our presence in North America and expand our range of solutions dedicated to firefightingng and rescue professionals.

“This complementarity enables us to support our customers with an ever more complete, innovative, and high-performance offering, driven by a single mission: helping save lives.”

Weber Rescue Systems launches Smart-Force OS

Weber Rescue Systems has unveiled Smart-Force OS at Interschutz 2026, describing the platform as the first digital operating system for hydraulic rescue equipment.

The new system is said to bring together rescue tools, a control app, location services and device management software in one connected platform, designed to support emergency services during operations, training and maintenance.

According to the company, Smart-Force OS enables real-time monitoring of key equipment data, including tool status, pressure readings and battery levels. The platform can also automate the documentation of training exercises and rescue operations, reducing manual processes and helping to minimise potential sources of error.

A key feature of the system is ‘Anti-Theft’, which provides long-lasting protection for rescue equipment. If tampering or unusual behaviour is detected, the device can deactivate automatically. When theft mode is activated, the tool transmits its location at intervals for up to ten days using an internal backup battery and localisation via GPS, Wi-Fi and LTE.

Smart-Force OS also introduces new digital training functions. Exercises can be documented, analysed and reviewed digitally, with force curves, loads and equipment data visualised and supplemented with images, notes or voice recordings. Weber says this will support more transparent and structured learning for rescue teams.

For equipment managers, the platform includes ‘Service’ functions intended to simplify fleet management. These include Auto-Check-In for battery status updates, as well as maintenance checklists and notifications relating to service intervals.

Weber said the launch reflects its aim of making rescue operations faster, safer and more efficient, while easing the workload on emergency services personnel through practical digital innovation.

Alongside the launch, the company has expanded its service offer with new warranty extensions for rescue equipment. The extension can be taken out at the point of purchase or after a service and is available for up to six years. Warranty periods and maintenance statuses are managed centrally through the Weber Rescue Hub.

UK Government invests £100m in wildfire resilience measures ahead of summer

The UK Government has announced a £97 million investment in national resilience assets as part of measures to strengthen wildfire response capability ahead of the summer months.

The funding will support what the Government describes as the largest upgrade of national resilience fire assets in almost 20 years, including new specialist equipment and vehicles for Fire and Rescue Services.

Dedicated off-road appliances will also be introduced to improve access and operational effectiveness in challenging terrain, supporting crews responding to wildfires and other complex incidents.

The new wildfire response teams will be hosted by Fire and Rescue Services in Lancashire, Greater Manchester, Northumberland, London and South Wales.

The teams will be able to deploy to incidents across England from the end of June, providing additional specialist capability during the peak wildfire season.

According to the Government, crews have undergone intensive training in wildfire response techniques, including tactical burning, with firefighters also learning from international colleagues experienced in large-scale wildfire incidents.

Building Safety Minister Samantha Dixon said: “This country benefits from a dedicated Fire and Rescue Service operation and, as incidents continue to evolve in complexity, it’s critical that we back those on the front line with the latest equipment.”

Dixon added: “Last year witnessed some of the most devastating wildfires in our recent history and, as we head into peak season, we’re delivering the resource, training and assets needed to minimise the escalating risk.”

The Fire National Resilience Programme was established following the terrorist attacks of 11 September 2001 to provide specialist capabilities, personnel and resources for Fire and Rescue Services responding to major national emergencies.

The latest investment will support the modernisation of existing resilience assets and improve the national response to incidents including wildfires, flooding and structural collapse.

National resilience capabilities were deployed more than 1,000 times during 2025, highlighting the increasing demand placed on Fire and Rescue Services and the need to maintain specialist response resources.

FLIR to showcase early fire detection and firefighting technology at NFPA 2026

FLIR will present its fire safety and first responder technologies at the NFPA Conference & Expo 2026, taking place from 22 to 24 June at the Mandalay Bay Convention Center in Las Vegas.

The company will exhibit at Booth 471, where it will demonstrate industrial Early Fire Detection solutions and tactical firefighting equipment, including A-series thermal monitoring cameras and K-series hand-held cameras.

Thermal monitoring for high-risk environments

FLIR said its Early Fire Detection systems use continuous radiometric monitoring and intelligent alarming to identify abnormal heat patterns before smoke or flame is visible.

The technology is designed for high-risk environments including battery storage sites, solar fields, manufacturing lines, waste facilities, warehouses and logistics centres. According to FLIR, the systems can be integrated with plant safety controls to trigger automated responses and support 24/7 situational awareness.

Keynote session to discuss life safety compliance

On Wednesday 24 June, Aaron Lawrence, Director of Sales, Automation at FLIR, will lead a keynote session alongside Martin Casillas, Clark County Fire Inspector, and Ryan Sandler, Vice President of Fire & Life Safety at Everon.

The session will examine how thermal imaging, analytics and system design are influencing the next generation of life safety compliance.

FLIR said its technologies are intended to help operators detect risks earlier, support faster response and improve performance in challenging fireground and industrial conditions.

Britannia Fire launches P50 Monnex fire extinguisher

Britannia Fire has added to its P50 composite fire extinguisher range with the introduction of Monnex, a specialist, high performance dry powder for high-risk industrial settings.

Monnex powder is non-conductive and rapidly extinguishes Class B (flammable liquids) and Class C (flammable gas) fires. It works differently to standard dry powder, breaking into smaller particles in intense heat which increases its surface area and coverage to extinguish fires quickly and more efficiently.

Britannia Fire’s P50 Monnex fire extinguishers are designed for high-risk sites including petrochemical plants, airports, fuel depots, power stations and manufacturing facilities. They are also particularly suitable for isolated, offshore locations such as ships or oil and gas facilities.

All P50s are environmentally friendly and fully recyclable with a 20-year life span and a 10-year guarantee. Unlike traditional, metal fire extinguishers, they don’t require costly external annual servicing. Instead, simple checks can be carried out by a responsible person.

“High-risk industrial sites need fire protection that performs instantly and reliably in extreme conditions,” said Andy Spence, Managing Director of Britannia Fire. “The launch of our P50 Monnex extinguisher gives operators a specialist solution that delivers rapid knock-down on flammable liquid and gas fires, while also reducing long term maintenance and environmental impact.”

A model certified to the Marine Equipment Directive (MED) is also available, which includes the required Schrader valve for equipment used on ships, offshore platforms and marine installations.

“The MED approved P50 Monnex is ideal for offshore environments, where conditions are harsher and regulations are stricter,” added Spence. “The P50 doesn’t corrode like traditional metal extinguishers and is much more durable. It also doesn’t require annual servicing, something that’s historically been very difficult and costly in these hard-to-reach sites. The Schrader valve allows easy pressure checks and re-pressurisation.”

Flame resistant fibre protective wear range launched by Lenzing

Cellulosic fibre specialist Lenzing has launched a new range of Flame resistant fibre protective wear.

The company says its three-tier protective wear offering is a range of hybrid and flame resistant-finished garments, with independent testing indicating lower heat stress than several conventional FR fabric options.

Lenzing’s portfolio is built around LENZING FR and TENCEL Lyocell fibres, positioning the range as a single-source system for manufacturers developing garments for structural firefighting, utilities, oil and gas, welding and heavy industry. The company says the line-up combines inherent flame-resistant, hybrid and FR-finished options so specifiers can match protection levels more closely to operational risk, comfort demands and cost targets.

For the fire and safety market, the most significant part of the launch is the way Lenzing has split its offer into three application tiers. The inherent protection tier, based on LENZING FR blended with aramid, is aimed at the highest-risk environments including structural firefighting and electrical utilities.

A hybrid tier using TENCEL Lyocell A100 with modacrylic is positioned for oil and gas, industrial workwear and high-visibility applications, while the flame resistant-finished tier is targeted at steel, welding and metalworking where lower-cost protection remains a priority.

A central claim in the launch is wearer performance under thermal strain. Lenzing cited independent physiological testing at 35°C showing that garments containing LENZING FR/aramid blends produced a 29% lower rise in core body temperature than flame resistant-treated cotton (0.75°C vs 1.05°C), and lower readings than both 100% aramid (1.05°C) and modacrylic/cotton blends (1.1°C).

“For too long, the protective wear industry has relied on a one-size-fits-all fibre approach, yet a structural firefighter and a welding technician face fundamentally different risks,” says Alexander Gstettner, Global Commercial Director, FR fibres at Lenzing. “With PFAS regulations accelerating and workers operating in increasingly demanding thermal environments, we see a clear need for a more structured approach.”

Alongside performance, Lenzing is pushing the sustainability case for its cellulosic. |The company claims that dope-dyed LENZING flame resistant fibres eliminates additional dyeing processes, enabling up to 50% reductions in energy and water use and up to 60% lower carbon footprint compared to conventional dyeing.