Maritime lithium-ion battery fire detection starts with heat

AP Sensing explains how fibre optic Linear Heat Detection enables earlier lithium-ion battery fire detection on ships through continuous thermal monitoring

On the open ocean, where a ship’s hull is its entire world, fire is one of the few threats that can escalate faster than a crew can respond. Today, that threat is increasingly linked to lithium ion batteries.

Once specialty cargo, they now move through global supply chains in huge volumes, powering electric vehicles, e-bikes, tools, laptops and portable electronics. The maritime industry understands how lithium ion batteries behave under failure conditions.

The chemistry is well studied and the progression from defect to thermal runaway is familiar. What remains difficult is spotting developing thermal events early enough to act. Conventional systems often react only once smoke or fire is visible.

At sea, earlier automatic detection and precise situational awareness can make a critical difference.

How lithium-ion battery fires begin at sea

A lithium ion battery failure usually begins quietly. A defect, manufacturing flaw or Lithium-Ion Battery Fires “The maritime industry understands how lithium ion batteries behave under failure conditions.” impact can cause a small, localised rise in temperature. Inside a battery pack or sealed container, that heat can build slowly and invisibly.

On ships, where containers are tightly stacked and airflow is limited, early detection is difficult. Monitoring still often relies on inspections and fire watches, but thermal events can develop between checks, especially where visibility is restricted.

This is why maritime fire safety is shifting from reacting to visible fire toward continuous, automated awareness of developing thermal conditions.

How fibre optic Linear Heat Detection works

Fibre optic Linear Heat Detection addresses this challenge by continuously monitoring temperature along the protected area.

AP Sensing uses a passive fibre optic sensor cable routed through the ship or cargo zone, creating a continuous sensing line rather than isolated detection points. Wherever the cable runs, temperature is measured.

The system provides thousands of temperature readings along the cable, creating a real time thermal map that updates every few seconds. If thresholds or abnormal thermal developments are detected, it automatically alarms on the bridge, helping crews assess and respond earlier.

How fibre optic sensing detects heat before fire

At the centre of the system is a controller that sends short laser pulses into an optical fibre. As light travels through the fibre, a tiny portion scatters back from every point along the sensor cable.

Part of these backscattered light changes with temperature, while another part remains stable. By comparing the two, the system calculates temperature at every point along the cable. It also measures how long the light takes to return, allowing localised temperature changes to be precisely located.

This creates a complete, real-time temperature profile across the monitored area, not just a reading at one hotspot. Operators can see where heat is developing, how temperatures change and whether a thermal event is spreading.

For lithium-ion battery cargo, where conditions can escalate rapidly, continuous awareness is critical.

Maritime lithium-ion battery fire detection proven at sea

Technology is already proven in demanding environments.

Fibre optic Linear Heat Detection has long been used as a certified special detector within fire alarm systems. Before lithium-ion batteries became a growing maritime concern, it was deployed across road and rail tunnels, parking garages, large photovoltaic installations and storage facilities.

In these settings, reliability is essential. Detection systems must perform despite contamination, electromagnetic interference, vibration, weather and other harsh influences.

Fibre optic LHD has demonstrated this resilience while helping operators maintain safety and avoid unnecessary interruptions. This history is important because the technology is not new to challenging conditions.

At sea, however, airflow, motion and operational constraints create a distinct detection challenge. To explore this, AP Sensing’s system was evaluated alongside conventional and alternative detection technologies in a major European and insurance research initiative focused on fire safety on RoRo (Roll on, roll off) and container vessels. Testing included laboratory work and long-term onboard trials under real operating conditions.

The findings contributed to the inclusion of fibre optic Linear Heat Detection in the maritime SOLAS Fire Safety Systems (FFS) Code in early 2026, reflecting growing recognition of continuous thermal monitoring in maritime fire protection.

AP Sensing’s solution is also DNV-approved for safety-critical ship environments. The results highlighted the limits of traditional smoke detection on ships. In controlled settings, smoke detectors performed well. At sea, airflow, humidity, salt aerosols and engine related particles could delay detection or increase nuisance alarms.

Fibre optic Linear Heat Detection was unaffected by these challenges. Because it measures temperature directly along the cable, it remained reliable regardless of airflow or airborne contaminants.

The trials also showed that the system can reveal how a thermal event develops. It pinpointed the heat source and helped operators track spread and direction, giving crews precise, real-time information instead of a general alarm.

Why fibre optic heat detection suits maritime fire safety

Beyond detection performance, fibre optic Linear Heat Detectors fit maritime operations. The sensing cable is passive and needs no electrical power along its length, simplifying installation and removing potential ignition sources.

The system also remains active during loading and unloading, when cargo handling introduces added risk.

How early heat detection improves maritime fire response

Detecting heat early is only part of the equation. What matters is how quickly and effectively that information becomes action. In a maritime environment, where response time is critical and access can be limited, crews need to know where something is happening and how it is evolving.

Fibre optic sensing provides this insight in real time. Temperature data is processed in the measuring unit and visualised through a graphical user interface (GUI), giving operators a continuous view of conditions across the vessel.

Alarm strategies can be configured around absolute temperatures or temperature gradients, enabling early warnings of abnormal developments before a localised issue escalates.

Lithium-ion battery fire detection beyond maritime transport

With lithium-ion batteries, the challenge does not begin or end at sea. A battery’s journey spans storage, transport, use and recycling. Across these stages, the pattern remains the same: heat develops before fire.

Fibre optic Linear Heat Detection applies this principle consistently. A continuous sensing cable enables early detection and precise localisation, supporting a unified approach to fire safety beyond maritime transport.

This is especially relevant in battery storage facilities, where large volumes of cells are concentrated in confined spaces and in recycling operations, where damaged or unstable batteries add risk during handling and processing.

Across these environments, the value is consistent: early insight enables faster, better-informed decisions and safer operations.

Meet AP Sensing at SMM Hamburg

At SMM maritime exhibition in Hamburg, September 1-4, discussions around lithium-ion battery safety and early fire detection will continue across the industry.

AP Sensing’s fire detection expert, Felix Heck, will be on site to present how fibre optic Linear Heat Detection and Distributed Fibre Optic Sensing are applied in real maritime environments. He will share how continuous thermal monitoring supports earlier detection and more informed response strategies.

5 of the biggest fire safety news stories of 2026 so far

2026 has already delivered no shortage of headlines in terms of fire safety news. As fire risks continue to evolve, so too does the industry’s response, with innovation, regulation and investment shaping the future of fire protection and life safety.

In this roundup, we look back at five of the biggest fire safety news stories of 2026 so far. These developments have captured the attention of fire safety professionals worldwide, influencing policy, operations and the technologies protecting people, property and critical infrastructure.

KiddeFenwal expands NATURA line with Micro fire protection for small assets

In January, KiddeFenwal launched NATURA Micro, a compact inert gas fire suppression system offered through its Kidde Fire Systems brand.

The system was introduced at Intersec in Dubai, which took place from 12 to 14 January. NATURA Micro forms part of the company’s inert gas systems portfolio and is intended to protect enclosed, small-sized assets.

Swiss ski resort fire at Le Constellation

January also saw a devastating fire break out at Le Constellation, Crans-Montana, Switzerland, during New Year celebrations in the early hours of 01/01/2026.

Police said the fire started at around 1:30am local time, when the basement bar was busy with revellers marking the turn of the year.

Click here for our coverage on timeline, casualties and investigation.

New Class L created specifically for lithium-ion battery fires

February kicked off with the launch of a new classification for lithium-ion (Li-ion) battery fires. BSI confirmed the update reflects the growing use of Li-ion batteries across the built environment, from large energy storage systems to electric vehicles and personal mobility devices.

Fire safety news

The standard classifies fires according to the nature of the material undergoing combustion.

Battery storage standard UL 9540A updated with large-scale fire testing

Standards and regulations were also on the mind in terms of fire safety news in March, with UL Standards & Solutions publishing the sixth edition of UL 9540A, adding large-scale fire testing requirements to the standard for evaluating thermal runaway fire propagation in battery energy storage systems.

The new edition was published on 13 March and is described it as a key standard for battery energy storage systems (BESS), including lithium-ion systems.

Philippines launches Fire Prevention Month

Meanwhile, March saw the Bureau of Fire Protection (BFP) officially launch Fire Prevention Month in the Philippines with an assembly of more than 3,000 people and over 300 vehicles on March 1.

The Manila Bulletin reported that the event was led by BFP chief Director Jesus Fernandez.

The launch brought together BFP personnel, national government agencies, local and barangay Disaster Risk Reduction and Management Offices, fire volunteers, fire brigades, private partners and non-government organisations.

Fluorine-free firefighting foam without compromise: The role of Enviro 3×3 NEO from Dafo Fomtec

John Olav Ottesen explains how the company’s new fluorine-free firefighting foam combines evidence-led testing, fully hydrated polymer technology and operational reliability

In January 2026 Dafo Fomtec announced the launch of Enviro 3×3 NEO, the sixth-generation alcohol-resistant synthetic fluorine-free firefighting foam (AR SFFF) that represents the culmination of its Enviro Programme.

Following the launch, International Fire & Safety Journal sat down with Founder and CEO John Olav Ottesen to discuss what sets the new concentrate apart, why an evidence-led testing programme has underpinned Fomtec’s approach to the fluorine-free transition and why the Middle East remains central to its strategy as the GCC accelerates its own move away from PFAS-based foams.

Enviro 3×3 NEO is described as the sixth generation in the Enviro range. Where does it sit in Fomtec’s line-up and why now?

NEO is the product that the Enviro Programme has been driving towards from the beginning. It is an alcohol-resistant synthetic fluorine-free concentrate engineered specifically for petrochemical, oil and gas, marine and offshore operations.

The timing of the launch reflects both where the regulatory landscape is heading and where our evidence base has brought us.

NEO delivers the performance profile those high-hazard industries demand, while meeting the environmental expectations industry and regulators are rightly placing on us. It is, in every sense, a no-compromise product.

You describe the Enviro Programme as the foundation of everything Fomtec has done in SFFFs. Why has it mattered so much and what has it actually delivered?

When we began the Enviro Programme more than a decade ago, we recognised early that removing fluorine from firefighting foam could not be a marketing exercise and had to be science.

Fluorinated foams had decades of real-world data behind them; a credible fluorine-free

alternative needed a comparable evidence base and it did not yet exist. The Programme has been built on full-scale fire testing at a scale few have attempted: over 2,500 full-scale fires to date, on hydrocarbons from heptane to Jet A-1 to plant-based fuels and gasoline blends, alongside polar solvents, foam destroyers and fuels tested with fresh, brackish and sea water.

Out of it has come the entire Enviro family (Class A, ICAO, USP, ARK, 3×3 Plus, Ultra, eMax and now NEO). We have also developed an analytical modelling tool that allows us to predict performance on a client’s fuel without setting it on fire.

For Fomtec, the Enviro Programme is a benchmark for how fluorine-free foam should be developed and not just a research project.

The launch material highlights the elimination of the “hidden gum” effect associated with partially hydrated polymer systems. Can you expand on this and explain where it sits within Fomtec’s broader formulation approach?

This goes to the heart of Fomtec’s formulation philosophy and it applies across the entire Enviro range. Alcohol-resistant foams need polymers to build the membrane that extinguishes polar solvent fires, but how those polymers are handled in the concentrate matters enormously.

There are broadly three possibilities. Un-hydrated polymers — essentially dry polymer added to the concentrate — will absorb water unpredictably over time, leading to viscosity drift, sediment formation and potential proportioning failure.

Partially hydrated polymers avoid the dry-powder problem but bring their own issue: the “hidden gum” effect, where viscosity increase, phase separation and polymer drop-out can develop when the foam encounters water ingress or suboptimal storage.

Either way, the operator ends up with a concentrate that no longer behaves like the product they originally approved. Fomtec’s commitment, across every AR product in the Enviro range, is to use only 100% fully hydrated polymers. That is a formulation decision, not a marketing one.

It means stable viscosity and known shear-thinning today and in the  future. For high-hazard sites where systems can sit dormant for long periods and must perform on first demand, that reliability is not optional.

NEO is a 3 × 3 product (3% for hydrocarbons and 3% for polar solvents). Why does that matter operationally?

For any facility holding both hydrocarbon and polar solvent inventories a single 3% concentrate simplifies almost everything. One product in the tank, one proportioning setting, one set of procedures.

The envelope includes MEK, ethyl and butyl acetate, IPA, methanol, ethanol and acetone, and it handles what we call “foam destroyers” such as MTBE. For a fire officer, that breadth under one SKU is a real operational advantage.

Performance with seawater and brackish water is repeatedly highlighted in the NEO documentation. Does that tie back to what we have just been discussing?

Directly. Many GCC and offshore installations draw firewater from the sea and the quality is simply not a controlled variable. We have validated NEO across fresh, brackish and sea water so the performance envelope is the same whichever source the deluge draws from.

The 100% hydrated polymer formulation holds its viscosity and shear-thinning profile and proportioning remains uniform.  For Gulf operators, marine and offshore facilities anywhere in the world, that consistency across water qualities is what separates a predictable fire performance margin from a guess.

ECHA’s restriction dossier is advancing, with SEAC and RAC opinions due by end-2026 and legislation anticipated in 2027. How should end users interpret the timeline?

I would urge end users not to confuse the regulatory timetable with their own planning timetable. Even with the derogations we expect — and Fomtec has

consistently supported the time-limited derogations approach — the direction of travel is settled globally, not just in Europe. The GCC is watching ECHA closely and procurement specifications in the region are already shifting toward fluorine-free.

A safe transition takes time, and Fomtec continues to supply fresh, approved C6 foam to customers while they plan and execute that work. That is not a contradiction; it is how we reduce risk. A responsible transition is holistic — the foam, the system, the procedures, the training.

What should the industry, and the Middle East region in particular, take from NEO and the next phase of the Enviro Programme?

First, demand evidence: ask your foam supplier for full-scale data on your fuels, your hardware and your water quality. Second, treat fluorine-free as an engineering project, not a procurement decision. Third, start now. Enviro 3×3 NEO is where the Enviro Programme was always heading, but the Programme continues — more fuels, more hardware combinations, more validation.

The Middle East will be central to that next phase, through Leaders in Fire 2026, through Intersec and through engagement with the region’s NOCs and the wider JOIFF community. We are ready for what comes next — and with NEO, our customers are too.

New UL 3115 safety standard awarded to Omniconn in Abu Dhabi

Omniconn secures GCC first with UL 3115 certification

Omniconn has become the first company in the Gulf Cooperation Council (GCC) to receive UL 3115 certification for the ethical and secure deployment of artificial intelligence in safety-critical building environments.

The UAE-based firm announced the achievement following an assessment of its Platform 4.0 by UL Solutions, an international leader in applied safety science.

This certification establishes a verified framework for using artificial intelligence (AI) and machine learning (ML) within systems that manage fire panels and other essential building infrastructure.

UL 3115 requires that these technologies operate in a predictable and reliable manner while maintaining appropriate human oversight throughout the lifecycle of the software.

The evaluation ensures that AI systems used in mission-critical applications meet rigorous international standards for risk governance and auditable performance.

Ibrahim Lari, Chairman of Omniconn said: “Being the first company in the region to achieve UL3115 certification marks a major milestone for Omniconn and for AI innovation developed in the UAE.

“This certification validates the trustworthiness of our platform and its AI in supporting mission-critical systems that protect buildings, assets, and people.

“Through centralised monitoring, real-time control, and intelligent automation across fire, energy, and building systems, Omniconn helps strengthen the resilience, safety, and reliability of the UAE’s infrastructure, supporting its vision for smart, secure, and connected environments.”

Integration of fire panels and building systems

The certified Platform 4.0 serves as a centralised dashboard that unifies building management systems, operational technologies and Internet of Things (IoT) devices.

It integrates fire panels, sensors and HVAC systems into a single interface to allow for real-time monitoring and predictive analytics across a facility.

This consolidation provides a single point of control for complex operations to help organisations improve energy efficiency and reduce costs.

The technology is designed to interface with existing infrastructure to transform raw data into actionable intelligence for data-driven decision-making.

In addition to safety functions, the platform supports sustainability targets and carbon emission reductions through the optimisation of resource consumption.

The system also incorporates cybersecurity measures to safeguard building operations and prevent unplanned downtime in connected environments.

By meeting the UL 3115 standard, the company aims to support the development of secure digital ecosystems and long-term infrastructure reliability.

Arab States fire simulation examines preparedness at petroleum facility

Preparedness tested in Radès simulation

A regional workshop on fire risk prevention included a large-scale simulation at a high-risk petroleum facility in Radès from 6 to 8 April.

The United Nations Office for Disaster Risk Reduction – Regional Office for Arab States said the workshop was organised by the Naif Arab University for Security Sciences in collaboration with Tunisia’s civil protection authorities.

The exercise tested inter-agency coordination and emergency response systems.

Participants applied preventive planning frameworks in a realistic operational setting.

The simulation was also used to identify gaps in preparedness and response.

Workshop sessions examined fire risk management in complex urban and industrial systems.

Discussions covered artificial intelligence and predictive tools in fire risk analysis.

Participants also reviewed engineering standards, international best practices, emergency management and business continuity planning.

Regional cooperation and preventive planning

According to the United Nations Office for Disaster Risk Reduction – Regional Office for Arab States, the workshop also focused on regional cooperation, innovation and institutional coordination in fire risk management.

Participants discussed smart systems for early detection and monitoring.

They also examined predictive modelling for risk assessment and analysis, alongside systems linking safety, infrastructure and operations.

The workshop highlighted coordination between civil protection authorities, municipalities and infrastructure operators.

Discussions also addressed institutional capacity, training systems and awareness across sectors.

Raidan Alsaqqaf, Deputy Chief of Office at the United Nations Disaster Risk Reduction Office for Arab States (UNDRR ROAS), said: “What makes this workshop particularly impactful is the strong link between knowledge and practice.

“The simulation in Radès demonstrates that effective disaster risk reduction requires not only planning, but the ability to test systems, coordination, and readiness in real conditions.

“Across the Arab region, there is a growing recognition that investing in prevention, innovation, and coordination is essential to managing increasingly complex risks, particularly in critical infrastructure.”

Participants also called for wider use of preventive planning approaches, broader deployment of innovative technologies and stronger cross-sector coordination.

New fire protection classification rule set for Abu Dhabi consultants

Fire protection accreditation becomes mandatory

The Abu Dhabi Civil Defence Authority has launched a mandatory accreditation programme for engineering consultancy offices in Abu Dhabi working in fire protection and life safety engineering.

Abu Dhabi Media Office reported that the scheme is described as the first regulatory model of its kind in the UAE and applies to consultancy offices submitting fire protection system designs in the emirate.

The programme was launched in collaboration with the Department of Municipalities and Transport (DMT) and the National Fire Protection Association (NFPA).

It requires engineering consultancy offices to obtain a classification in Fire Protection and Life Safety Engineering Consultancy by completing the Certified Fire Protection Engineer (CFPE) programme.

The requirement is intended to improve the quality of engineering designs related to fire protection and safety systems and compliance with approved standards.

Certification deadline set for September 2026

Engineering professionals within consultancy offices in Abu Dhabi will complete an internationally recognised training and professional accreditation programme to obtain CFPE certification.

The certification will also be included within the classification management system of the DMT.

The Abu Dhabi Civil Defence Authority said the requirement will become mandatory when consultancy offices submit fire protection system designs in Abu Dhabi.

The deadline for completing the training programmes and obtaining official certification is 1 September 2026.

After that date, preliminary engineering design submissions from consultancy offices will not be accepted unless the registered engineer holds a valid CFPE certification.

Standards and design review requirements

The accreditation programme is intended to standardise design, review and compliance practices in line with NFPA standards.

It is also expected to improve the quality of design and review processes for fire protection systems in buildings and facilities.

The authority said the programme forms part of its work on fire protection and life safety systems in Abu Dhabi.

New Sharjah safety committee targets warehouse fire risk and compliance

Safety inspections approved for Sharjah warehouses

Sharjah has approved a specialised committee to inspect commercial and industrial warehouses across the emirate and address violations linked to safety compliance and fire risk.

Gulf News reported that the decision was taken during a meeting of the Executive Council of Sharjah chaired by Sheikh Abdullah bin Salem bin Sultan Al Qasimi, Deputy Ruler of Sharjah and Deputy Chairman of the Executive Council, and attended by Sheikh Sultan bin Ahmed bin Sultan Al Qasimi, Deputy Ruler of Sharjah and Chairman of the Executive Council.

The committee will carry out comprehensive inspection campaigns covering all commercial and industrial warehouses.

Its role includes assessing compliance with safety and security standards.

It will also oversee corrective measures and enforce preventive procedures aimed at reducing fire incidents.

Committee membership and enforcement powers

Sharjah Police will lead the committee.

It will include representatives from the Civil Defence Authority, Department of Town Planning and Survey, Sharjah Economic Development Department and Sharjah Electricity, Water and Gas Authority.

The council said stricter penalties will apply to violators.

This includes those failing to meet regulations on the storage of hazardous and flammable materials.

Other decisions from the council meeting

The same meeting also approved a new framework regulating media activities in the emirate.

Entities engaged in media-related work will be required to obtain prior approval from the Sharjah Media Council, which will also receive revenues from related fees and violations.

Abu Dhabi authority gains Fire Investigation accreditation from NAFI

Fire Investigation accreditation and recognition

Abu Dhabi Civil Defence Authority has obtained global accreditation from the National Association of Fire Investigators (NAFI), recognising it as an accredited international testing proctor in fire and explosion investigations.

Abu Dhabi Media Office said the authority was also officially recognised during NAFI’s annual conference in Charlotte, North Carolina.

The designation allows professionals from across the UAE and the region to undertake internationally recognised certifications, including Certified Fire and Explosion Investigator and Certified Vehicle Fire Investigator.

It also enables access to the Certified Fire Investigation Instructor certification.

Certification and investigator training

According to Abu Dhabi Media Office, the authority has also certified 19 investigators from its technical teams through a training programme that included accredited courses and professional assessments based on internationally recognised protocols and standards.

The programme was described as strengthening incident analysis and root cause identification.

It was also presented as supporting preventive policy development and wider safety and response systems.

Institutional development and standards

Abu Dhabi Media Office said His Excellency Brigadier Salem Abdullah bin Barak Al Dhaheri, Director General of Abu Dhabi Civil Defence Authority, linked the accreditation and recognition to confidence in the authority’s training system and the competence of national cadres.

The authority said qualifying fire investigators to international standards forms part of its proactive prevention systems and supports data-driven decision-making.

NAFI also commended the authority’s training and qualification systems, stating that its programmes are aligned with international standards.

Conference update: Revised date for IFSJ Leaders in Fire & Safety event

We would like to inform all invited attendees that the IFSJ Leaders in Fire & Safety Conference in Dubai has been rescheduled to Thursday, 8 October 2026.

After a comprehensive review of recent regional developments, we consider the decision to move the event to October to be the most responsible and appropriate course of action.

Please note this is a postponement, not a cancellation. If you have a confirmed ticket this remains valid and no action is required from you at this stage.

We would also like to reaffirm our continued commitment to supporting the international fire and safety industry. The UAE remains a regional hub for fire and safety innovation, professional development and strategic investment, and we remain fully dedicated to contributing to the advancement of the sector through the Leaders in Fire and Safety Conference and our wider industry activities.

Our team will provide updated event details and next steps in the coming weeks.

We appreciate your understanding and look forward to welcoming you in October for a highly valuable and timely gathering of regional fire and safety leaders.

NAFFCO forms UAE shelter joint venture with Verona Shelters

NAFFCO joint venture targets shelter production

NAFFCO Group has signed a Joint Venture Agreement with Verona Shelters to develop and manufacture civil defense and military shelter solutions in the United Arab Emirates.

NAFFCO Group announced the agreement with Verona Shelters as a strategic partnership focused on expanding production capacity for protective shelter infrastructure.

The partnership combines NAFFCO’s safety engineering and large-scale manufacturing capacity with Verona Shelters’ work in protective shelter systems.

It is intended to supply shelter systems for civilians and critical facilities, with a stated focus on the Middle East, Europe and North Africa.

Executive comments on the agreement

Marko Nokka, CEO of Verona Shelters Group, said: “Civil protection infrastructure is becoming a strategic priority for governments around the world.

“This partnership allows us to scale our shelter technology globally and bring proven protection solutions to regions where preparedness and resilience are becoming increasingly important.”

Mikko Lähtönen, Executive Director of Verona Shelters Middle-East, said: “In light of recent events in the region, we expect a major growth in the GCC region and beyond.”

Khalid Al Khatib, CEO of NAFFCO Group, said: “NAFFCO has long been committed to advancing safety and emergency preparedness.

“Partnering with Verona Shelters enables us to expand our capabilities in advanced civil defense shelter solutions and deliver these systems at an industrial scale across the Middle East, North Africa, and beyond.

“We expect this partnership to become one of the most significant industrial collaborations in the civil protection shelter sector.”

Shelter systems aimed at regional preparedness

The companies said the joint venture is intended to support regional preparedness through shelter systems engineered to international standards for emergency and crisis situations.

They described the agreement as a shared commitment to innovation, resilience and public safety through high-performance shelter solutions.

The partnership sets out a manufacturing base in the UAE for shelter systems aimed at civil defence and military use.