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.

Advanced fire protection systems for battery storage, offshore wind and critical infrastructure

HAFEX CEO Ufuk Can Günaydın discusses how advanced fire protection systems are evolving to support battery energy storage, offshore wind, marine operations and critical infrastructure in increasingly complex risk environments

As industries accelerate investment in renewable energy, electrification, critical infrastructure and offshore operations, fire protection requirements are becoming increasingly complex.

From Battery Energy Storage Systems (BESS) and offshore wind turbines to marine vessels, high-risk environments require suppression systems designed specifically for operational demands that conventional solutions may not fully address.

In this context, HAFEX, a fire protection engineering company specialising in suppression technologies for technically demanding sectors, develops and manufactures fire protection systems with a focus on reliability, certification and performance in mission-critical environments.

Led by Fire Engineer and CEO Ufuk Can Günaydın, the company has expanded internationally by developing sector[1]specific solutions tailored to challenging operating conditions, including offshore environments, battery storage installations, telecommunications infrastructure and military assets.

“The key factor has been our ability to combine engineering expertise with sector-specific fire protection solutions,” Günaydın tells IFSJ. “These industries require more than standard fire suppression; they demand reliability, certification, adaptability and a deep understanding of operational risks.”

Fire protection strategies for battery energy storage systems

As renewable energy deployment accelerates globally, HAFEX has identified BESS as a major strategic growth area.

“BESS applications are one of the most important focus areas for us,” says Günaydın. “Lithium-ion battery fires behave very differently from conventional fires, especially because of thermal runaway and the risk of re-ignition.”

To address these challenges, HAFEX has developed aerosol and clean-agent suppression technologies designed for rapid activation, early-stage suppression and protection within enclosed battery environments.

The company also places emphasis on system integration, detection and risk-based design, aiming to reduce fire spread and support safer long-term operation of infrastructure.

Fire protection challenges across offshore wind and marine infrastructure

Marine and offshore environments represent another major focus area for HAFEX, particularly as offshore wind development continues to expand globally.

“Offshore and marine environments are challenging because fire protection systems must operate under harsh conditions such as vibration, humidity, saltwater exposure, limited access and extreme weather,” Günaydın explains.

For its part, HAFEX has developed systems incorporating real-time fire detection, continuous temperature monitoring and daily reporting of environmental changes to support early risk identification.

The company protects wind turbine risk zones separately, including nacelles, transformers and electrical cabinets, allowing more targeted suppression and risk management.

This approach has already been tested in operational environments. According to HAFEX, seven discharge cases have been recorded within installations for Enel Green Power Mexico across more than 300 Siemens Gamesa wind turbines, with three confirmed fire incidents successfully extinguished.

Following these deployments, the company has expanded further into the Asia-Pacific region, where it has reported protecting more than 400 offshore wind turbines across multiple global turbine brands.

Fire suppression solutions for critical electronic infrastructure

Meanwhile, in environments containing sensitive electronic infrastructure, fire suppression requirements differ significantly from conventional industrial settings. The priority is not only extinguishing fire quickly but doing so without damaging critical assets or disrupting operations.

“For sensitive electronics, the goal is not only to extinguish the fire but also to protect the equipment and avoid damaging the electronics,” says Günaydın.

Accordingly, HAFEX manufactures a certified strontium-based aerosol suppression system designed to avoid the conductivity issues that potassium-based extinguishing agents faces, particularly strontium-based aerosols has no hydrophilic characteristics.

The company proves that it’s clean and electrically non-conductive suppression technologies are suitable for data centres, server rooms, electrical cabinets and telecommunication systems.

HAFEX also reports protecting more than 4,000 4G and 5G base stations globally. “Our approach focuses on fast detection, targeted suppression and minimal residue—nearly none—which allows critical systems to remain protected without causing secondary damage,” Günaydın explains.

Fire protection requirements for defence and military applications

HAFEX also supplies fire suppression systems for naval and air force applications, where reliability and compliance requirements are significantly more demanding than in many commercial projects.

“Defence applications require a much higher level of reliability, durability and technical compliance,” says Günaydın. “Systems must perform under vibration, shock, restricted space, temperature variation and demanding operational conditions.”

Because defence platforms often involve mission-critical assets, fire protection systems must be engineered to function consistently under extreme operational stress.

In that respect, its defence-focused aerosol generators incorporate three detection and activation mechanisms within a single unit, alongside self-activation capability at 300°C.

Preparing for future fire risks

Looking ahead, HAFEX sees one of the biggest challenges as managing fire risks associated with rapidly evolving technologies. “The biggest challenge will be protecting new technologies before risks become widespread,” Günaydın explains.

Electrification, automation, renewable energy infrastructure, data centres and high-density battery systems are all creating new fire scenarios that legacy suppression technologies may not fully address.

At the same time, they are creating new opportunities for manufacturers capable of delivering specialised and application-specific solutions. “We believe the future will require smarter, more compact, environmentally responsible and application-specific suppression systems,” says Günaydın.

Navy Shore Enterprise announces 2025 Fire and Emergency Services Award winners

Commander, Navy Installations Command has announced the Calendar Year 2025 Navy Fire and Emergency Services (F&ES) Award winners, recognising fire and emergency personnel across the Navy Shore Enterprise for operational excellence and mission support.

The awards highlight teams and individuals responsible for emergency response across U.S. Navy installations worldwide, including structural fire suppression, aircraft rescue, hazardous materials containment and emergency medical response. According to the command, these capabilities are central to maintaining readiness across shore installations and supporting fleet operations.

By carrying out life-saving medical interventions and rapid emergency response operations, Navy F&ES teams help ensure that bases remain operational so that naval forces can train, deploy and conduct missions.

“Our personnel are the cornerstone of base resilience,” said CAPT Bill Lane, deputy director of CNIC operations. “Protecting our people and our tactical assets is essential for projecting power from the Shore Enterprise. These winners represent the best of the best in ensuring our mission remains uninterrupted.”

From this year’s recipients, three Navy representatives advanced to top honours in broader military competition at the Department of War (DoW) level: Naval Support Activity Annapolis; Katsuhiro Watanabe of Commander Fleet Activities Yokosuka; and Metro San Diego, a regional fire and emergency services organisation covering Naval Base San Diego, Naval Base Coronado, Naval Base Point Loma, and Naval Air Station North Island.

The awards span multiple categories recognising performance across different installation sizes and specialties.

Navy Shore Enterprise awards in full

In the Small Fire Department of the Year category, Naval Support Activity Annapolis received the DoW-level award, with Naval Submarine Base Kings Bay named runner-up. For Medium Fire Department of the Year, Naval Station Mayport was selected as winner, followed by Joint Region Marianas.

Metro San Diego FES earned the Large Fire Department of the Year award, with Navy Region Northwest as runner-up. Joint Region Marianas was also recognised for Fire Prevention Program of the Year, alongside Navy Region Mid-Atlantic District 3, Naval Air Station Oceana, and Joint Expeditionary Base Little Creek–Fort Story as runners-up.

Individual awards highlighted firefighters, officers, instructors and emergency medical personnel across the fleet. ABH2(AW) Kiara Robin of Naval Station Rota was named Military Firefighter of the Year runner-up, while ABH2(AW/SW) Joshua Acuna of Metro San Diego was also recognised. Civilian Firefighter of the Year went to Katsuhiro Watanabe of Commander Fleet Activities Yokosuka (DoW winner), with Ahmed Dakail of Naval Support Activity Bahrain named runner-up.

Other honours included ABH1(AW/SW) Leaundre Johnson of Naval Support Activity Naples as Military Fire Officer of the Year winner, and Eric Boggess of Naval Station Mayport as Civilian Fire Officer of the Year winner. Additional categories recognised training, inspection, EMS provision, and fire prevention leadership across multiple installations.

The Navy also recognised legacy contributors to the Fire and Emergency Services community through Hall of Fame inductions. Inductees included retired fire chiefs and senior leaders such as Ruben Perez, Edward Stillwell, David Inman, William Casey, Kenneth Snyder, and Jack Woodard (deceased), reflecting long-term service across multiple regions.

Lifetime Achievement Awards were also presented to senior leaders including Rodolfo Gonzales, William Killen, Christopher Connelly, and Daniel Gaumont, acknowledging decades of service within Navy fire and emergency operations.

Commander, Navy Installations Command oversees global Navy shore installation management, including infrastructure development, sustainment and quality of life programmes. The organisation manages 10 Navy regions and more than 70 installations, employing over 48,600 personnel focused on readiness, training and support for fleet operations.

According to the command, Navy installations function as operational platforms essential to supporting global naval missions and maintaining overall fleet readiness.

Survitec receives DNV qualification for Seahaven evacuation system

Survitec Seahaven gains DNV statement

Survitec has received a formal Technology Qualification Statement from DNV for Seahaven, its Advanced Evacuation System, covering a configuration designed to evacuate up to 1,060 passengers.

Survitec announced that the Seahaven configuration uses two self-propelled inflatable survival craft and four vertical escape helical slides to enable embarkation from the vessel.

DNV carried out the Technology Qualification process in line with DNV Recommended Practice DNV RP A203.

The assessment confirmed that Seahaven had been qualified to operate within defined limits and perform reliably under emergency conditions.

Jonny Whiteside, Chief Operating Officer at Survitec, said: “This Technology Qualification from DNV marks a significant milestone, demonstrating the system’s proven reliability through rigorous testing and independent evaluation.

“It reinforces an already well-established foundation of validation, complementing assessments conducted by Lloyd’s Register, RINA, and Bureau Veritas, and positioning Seahaven as a smarter and safer evacuation solution.”

Whiteside added: “We are advancing strategic discussions with leading operators to install Seahaven across cruise fleets, reflecting strong market interest and a shared commitment to elevating safety standards at sea.”

DNV sets out the technical assessment

DNV said the Technology Qualification work forms a basis for the Alternative Design and Arrangement (AD&A) process for application in passenger vessels.

Dr. Daniel Povel, Senior Principal Specialist Passenger Ship Safety and Risk Assessment at DNV Maritime Advisory stated: “We are pleased to support Survitec in advancing this innovative technology towards application in passenger vessels.

“Through DNV’s Technology Qualification process, the Seahaven system has been independently assessed against defined performance requirements and acceptance criteria.

“The work undertaken in the TQ forms a valuable basis for the Alternative Design and Arrangement (AD&A) process.”

DNV reviewed a technical test and verification programme covering full-scale deployment trials and slide integrity evaluations.

The programme also covered embarkation simulations at maximum capacity, propulsion performance assessments and manoeuvrability trials under representative operating conditions.

The assessment examined structural endurance, redundancy of critical components and resilience under load to confirm sailing-away functionality after evacuation.

DNV also reviewed repeated deployment testing to assess on-demand operational reliability, with the source material stating that existing SOLAS and LSA frameworks do not contain prescriptive reliability requirements for alternative systems of this type.

Survitec said Seahaven is designed as a direct alternative to conventional lifeboats, using propelled inflatable survival units and combining functions usually associated with lifeboats and Marine Evacuation Systems.

With the Technology Qualification completed, the company said it is positioned to move into the AD&A process for newbuild and retrofit passenger vessels.

Hydrogen detection deal adds new technology to Consilium portfolio

Consilium expands hydrogen detection portfolio

Consilium Safety Group has acquired all assets and intellectual property related to Insplorion AB’s hydrogen sensor technology business following approval at an extraordinary general meeting held on April 13.

Consilium announced the acquisition as part of its gas safety work for marine, critical infrastructure and energy-related applications.

The transaction includes Insplorion’s hydrogen sensor NPS-P2 and an ongoing certification process linked to the product.

The company said the acquisition adds hydrogen detection technology and related expertise to its existing safety portfolio.

Consilium deal includes NPS-P2 and certification process

The acquisition includes the NPS-P2 hydrogen sensor, which is described as having documented performance in demanding environments.

It also includes an ongoing certification process intended to open access to the marine sector and regulated industrial environments globally.

Consilium said it is positioned to take over that process and move the product towards full-scale commercialisation through its distribution network and brand presence in the safety sector.

Philip Isell Lind af Hageby, President and CEO, Consilium Safety Group, said: “For us, this is a strategic investment in the safety of tomorrow.

“With a sophisticated sensor technology and a capable team, that we are delighted to partner up with, we are now stepping straight to the forefront of hydrogen detection and strengthening our position as an industry pioneer,”

The acquisition was conditional on approval from an extraordinary general meeting of Insplorion AB, which was obtained on April 13.

New Zelim base in Canada supports maritime market growth

Zelim expands in Atlantic Canada

Zelim has opened new premises in Dartmouth, Nova Scotia, with the site set to serve as its Atlantic Canada base from April 2026.

Zelim announced that the office will be located at the COVE ocean facility, which it described as a technology hub for maritime innovation.

The company said the site will support ongoing partnerships and future opportunities in the region for its AI-enabled technologies designed for safety and security operations at sea.

The move follows activity in the Canadian cruise, ferry and defence sectors.

In 2024, Zelim demonstrated its man-overboard detection and monitoring system, ZOE, to the Canadian Coast Guard and other maritime partners.

In 2025, the company was selected for the NATO DIANA Phase II programme, through which ZOE was used in a NATO naval exercise and introduced to the Royal Canadian Navy.

Zelim also secured a commercial contract with BC Ferries in February 2026 to equip four new-build ferries with its ZOE technology.

Leadership and regional plans

Zelim said the Canada office will be led by its newly appointed regional Vice President, Brigadier General (Retired) Tom Dunne.

Dunne has served as a search and rescue leader with the Royal Canadian Air Force and the United States Coast Guard.

Sam Mayall, Zelim’s Founder and CEO, said: “Given the scale and complexity of its maritime domain and the operational challenges associated with remote and harsh environments, Canada is a strategically important market for Zelim’s maritime detection and automated alerting capabilities.

“With a number of partnerships and agreements already in place in North America, and significant potential for future development, establishing this office base and bringing Tom on board were the next logical steps in our growth journey, with a view to a long-term presence and economic contribution in the region.”

Melanie Nadeau, CEO of COVE, said: “Zelim’s expansion into Canada is an important step for the maritime industry.

“Since first connecting with COVE in 2024 through Innovate UK’s Ocean ScaleUp Accelerator, Zelim has demonstrated the innovation and expertise that strengthen the sector.

“Its Canadian presence will enable new partnerships, foster collaboration, and deliver maritime detection and automated alerting solutions, with COVE supporting access to an ecosystem designed for growth and opportunity.”

Zelim said the new office follows the launch of a defence business unit and additions to its senior leadership team as it continues its international expansion.

LGM to exhibit marine fire detection at Asia Pacific Maritime 2026

LGM to present marine fire detection systems in Singapore

LGM Products will exhibit its marine fire detection systems at the Asia Pacific Maritime exhibition taking place in Singapore between 25 and 27 March 2026.

The company confirmed its participation in the biennial Asia Pacific Maritime (APM) event, which brings together more than 20,000 maritime professionals, 750 exhibitors and over 150 speakers.

The exhibition focuses on shipbuilding, marine technology, offshore systems and port operations, along with electric and hybrid marine systems.

The event also addresses operational themes including zero emission vessels, autonomous ship technologies and digital vessel systems.

LGM marine detection systems to be displayed at exhibition stand

LGM stated that visitors can view its marine-approved fire detection systems at stand F-D19 during the exhibition.

The company’s WES3 wireless marine products are designed to provide fire detection coverage for marine environments.

The Esento Marine Conventional Fire Detection System is also part of the range being presented, alongside FireFinder Marine addressable fire detection technology designed to support system monitoring and control in marine installations.

The exhibition provides an opportunity for attendees to view these marine fire detection systems as part of the wider Asia Pacific Maritime conference and exhibition programme.

S Jones Conversions launches new tiered battery storage solution range

Battery storage range expands with Green Battery Store

S Jones Conversions has developed an entry-level battery storage solution called the Green Battery Store as part of its battery storage range.

The company said the unit is intended for lower-risk applications to house batteries categorised as ‘green’ or low risk by the Dangerous Substances and Explosive Atmospheres Regulations (DSEAR) assessment.

It is described as providing environmental protection and basic electrical safety for storing smaller quantities of batteries in lower-risk scenarios.

The Green Battery Store is available in sizes from 8’6″ to 40ft.

The unit’s listed features include aluminium louvre vents, fire-resistant board linings, an HVAC system and an anti-vandal multi-locking personnel door.

It is described as suited to use where risk assessments identify minimal fire and explosion hazard or where facilities have existing safety infrastructure.

How the tiered range is described

The Green Battery Store is described as the latest addition to a tiered range with units categorised by the level of safety features required.

Alongside Green, the tiers are described as Bronze for moderate-risk applications, Silver for higher-risk applications and Gold for the most demanding scenarios including destructive battery testing.

The company said selecting the most appropriate solution depends on the DSEAR assessment and considerations including property insurer requirements, local fire authority guidance, battery chemistry and volume, proximity to other infrastructure and risk tolerance of third parties.

Andrew Nicholls, Head of Conversions at S Jones Containers commented: “Over the last few years we’ve established our reputation as a ‘go to’ partner for containerised battery storage and testing units.

“Our new tiered approach to the range is an important development – making it even easier for our customers to choose the solution that best meets their specific project needs including budget requirements.

“The new Green Battery Store provides an affordable solution that still puts safety first for peace of mind.”

Features described for Bronze, Silver and Gold tiers

S Jones Containers’ Bronze Battery Store is described as combining fire-retardant passive protection with active environmental controls as well as explosion venting and thermal management.

It is described as intended to contain and mitigate hazards during normal operation and minor thermal events.

Silver is described as building on Bronze with 60-minute fire-rated compartmentalisation, automated fire detection and integrated sprinkler capability.

Gold is described as featuring independent gas detection, temperature monitoring and automated mechanical ventilation response as well as fire and explosion risk reduction features.

It is also described as including hermetically sealed access doors and gas detection systems.

The Gold tier is described as designed for high-risk applications including ultra-high-density storage and lithium-ion battery cell destructive testing, with a design intended to reduce exposure to toxic gases that may be released during the testing process.

Semmco LPS highlights risks across prisons marine and freight rail

Semmco LPS highlights risks ahead of Health and Safety Event

Semmco Life Protection Systems (Semmco LPS), which will attend the Health and Safety Event at Birmingham NEC from 28 to 30 April 2026 at Stand 3/G1, has outlined how changing working environments are creating new risks across multiple sectors.

Semmco LPS said procedural changes, new materials and technologies, and developments in cleaner energy and electric transport are contributing to these risks.

Escape breathing apparatus was described as a regulatory requirement in relevant working environments and as equipment used to support safe evacuation from hazardous or oxygen deficient conditions.

Semmco LPS designs and manufactures short duration breathing apparatus intended for escape and working rescue in confined spaces and extreme environments.

Sector examples including prisons shipping and freight rail

Semmco LPS cited the prison system as one example, stating that 2,287 fires in prison cells were recorded in 2023.

Eighty percent of these incidents were attributed to vape pens.

Semmco LPS is working with HM Prison and Probation Service to provide its HEAD RPE/CSRE (Cell Snatch Rescue Equipment) escape breathing sets to prisons across England and Wales.

The contract includes user training and a managed refurb and maintenance programme.

Semmco LPS also referenced the global shipment of electric vehicles onboard ships and cited increased awareness of battery fire dangers during transport.

In freight rail transport, the company described the highest risks as being linked to hazardous goods and materials.

Semmco LPS said recent legislation changes in the USA mandate that EEBDs be available to employees working in freight train cabs transporting hazardous material “that would pose an inhalation hazard in the event of release during an accident.”

Product specifications and manufacturing expansion

Semmco LPS said its EEBD is a self-contained oxygen breathing apparatus with a 15 minute duration and no fit testing requirement.

Both the HEAD and EEBD devices are head worn short duration escape sets using potassium superoxide (KO2).

The products provide a constant oxygen supply for the duration required to escape hazardous environments.

Semmco LPS has opened a new manufacturing facility in Woking Surrey with dedicated production pods and a service and refurbishment area for the HEAD product.

Semmco LPS will exhibit at Stand 3/G1 at Birmingham NEC from 28 to 30 April 2026.

Aberdeen safety hub opens as Arco expands training and offshore kit drops

Safety services and site capabilities

Arco has opened a specialist centre in Aberdeen to support oil, gas and renewables sector companies working across onshore and offshore operations.

The£500,000 site is intended to help companies minimise risk and maximise productivity across demanding working environments.

The 13,700 sq ft centre is based near Aberdeen airport.

It offers safety training, face fit testing, respiratory servicing and product decoration services.

The centre also provides offshore kit drops, with orders placed before 3pm delivered the same day.

Each week, up to 100 kit bags are dispatched from the Aberdeen centre to the North Sea and beyond.

Energy and export focus

The launch follows Arco’s November announcement of a 37 per cent rise in pre-exception EBITDA to £11.4 million over the past year.

Alex Richards, Arco’s Energy and Export Director, said: “We’ve been keeping customers in Aberdeen safe for nearly 40 years, and this new centre signifies more than just a move to a new site.

“Our £500,000 centre enables access to Arco’s more than 140 years’ safety experience through best-in-class training, respiratory servicing, face fit testing, and same-day offshore kit drops.

“We supply highly certified PPE selected specifically to combat hazards faced offshore, onshore and across complex industrial environments.

“Our people are energy sector specialists, with deep understanding of industry regulations, working conditions and operational challenges.

“That knowledge allows us to provide informed guidance, the right solutions first time, and a level of service customers can rely on.

“By keeping people at the centre, and offering products dedicated to the energy industry, we’ve built long-standing partnerships that help protect workers, reduce risk and maximise productivity across Aberdeen’s energy community.”

The company said it is supporting workers across the globe from the Aberdeen centre, including Africa and the Middle East.