Discover the new Sensitron gas detection control panel

Strong heritage, new design.

Sensitron is a global gas detection company whose product range includes fixed gas detection systems, detectors, and control panels for all applications.

Committed to innovation, Sensitron previews its new control panel for reliable gas detection systems with up to eight gas detectors, which will be commercially available within 2026.

Grounded in Sensitron’s heritage, it evolves from the best-selling PL4+, preserving the proven reliability that has always defined Sensitron systems. Built around the needs of those who work with it every day, the new control panel introduces a new user-oriented design approach, expressed through an essential form and a completely redesigned interface: more modern, readable, and intuitive, delivering a simpler operation and a tangible improvement in the on-site user experience.

“We chose design as a strategy to complement our technical expertise, adding an element of differentiation in a highly competitive market.” explains Marco Passadori, Managing Director of Sensitron. “The decision to introduce design stems from listening to those who use the product. From our ongoing dialogue with customers came the desire to create a control panel truly designed for its users.”

Beyond design, the new control panel introduces a completely redesigned interface. New elements — including graphics, pop-ups, directional arrows, on/off switches, drop-down menus and contextual buttons — help users understand how the control panel works more quickly, without the need for prior knowledge. Menus are organised according to a logical tree structure, enabling intuitive navigation and immediate access to functions exactly where users expect to find them.

It complies with ATEX Directive 2014/34/EU, as well as the main performance and functional safety standards, including EN IEC 60079-29-1 and EN 61508 / EN 50402 (SIL1).

With this new control panel, Sensitron introduces a new language into the world of gas detection, continuing to demonstrate its ability to innovate within a highly specialised and regulated market, without losing sight of its roots.

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.

Fire safety: from a compliance obligation to a strategic enabler of autonomous buildings

Susanne Seitz, CEO of Buildings Smart Infrastructure at Siemens , explains why digital, IoT-enabled fire safety systems are transforming fire protection

For decades, fire safety systems have been viewed primarily through the lens of compliance. Essential, yes – but rarely seen as a contributor to performance, resilience or sustainability. As buildings become smarter and more autonomous, that perspective needs to change.

Across industries, aging fire safety infrastructure often hides significant inefficiencies: high false alarm rates, disconnected systems, rising maintenance effort and limited ability to use data effectively. Facility teams spend up to 60% of their time validating false alarms rather than focusing on value-adding tasks.

In a world of tight budgets and skilled labor shortages, this is no longer sustainable. As energy systems evolve – for example, with the increased use of lithium-ion batteries in data centers – modern fire detection and protection become even more critical.

Modern, IoT-enabled fire safety systems fundamentally shift this reality. By embedding intelligence and connectivity, fire safety moves beyond an isolated layer to become an integral part of the digital building ecosystem.

This deeper integration allows fire safety data and events to inform and interact with other critical building systems – from triggering HVAC adjustments to contain smoke, to coordinating with access control for safe evacuation, or even informing building automation for optimized emergency responses.

The impact is tangible. Reactive maintenance becomes predictive planning. Periodic testing evolves into continuous, silent monitoring.

And with solutions like Building X Fire Apps, single-building oversight expands to portfolio-wide visibility, enabling consolidated management and insights across multiple sites.

This digital transformation also helps reduce false alarms by approximately 80%, significantly improving operational efficiency and occupant experience.

Digital fire safety also unlocks a new generation of services. Cloud connectivity, remote diagnostics, and advanced analytics allow technicians to arrive prepared, resolve issues faster, and reduce repeat visits – helping organizations cope with ongoing talent shortages.

At the same time, predictive insights enable smarter investment and data-driven lifecycle decisions.

Sustainability is another critical dimension. Targeted upgrades instead of full system replacements reduce electronic waste. Remote management lowers emissions by minimising the number of site visits. And advanced detection algorithms help avoid unnecessary emergency responses triggered by false alarms.

New technology is already beginning to deliver value across sectors. In healthcare, digital fire safety supports uptime and patient safety through data-driven operations. In higher education, it simplifies the management of complex campuses with diverse building types.

And in commercial real estate, it forms a foundation for more autonomous, scalable building operations.

The conclusion is clear: the question is no longer whether fire safety systems should be modernised, but how strategically can organisations approach it.

As we move toward autonomous buildings, fire safety must be digital-native, cybersecure and seamlessly integrated into the building’s intelligence layer. Those who rethink fire safety beyond compliance will unlock meaningful gains in operational performance, sustainability and long-term resilience.

This article was originally published on LinkedIn. The original article can be found here.

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.

Hochiki Training Academy launches FIREbeam course for beam smoke detection projects

Hochiki Europe has expanded its online Training Academy with a free course covering the FIREbeam beam smoke detection range for large open-space application

Hochiki Europe has expanded its online Training Academy with the launch of a new course focused on its FIREbeam beam smoke detection range.

Available free of charge to registered users, the course is designed to help installers, specifiers and distributors develop their knowledge of beam smoke detection and gain confidence in specifying and installing FIREbeam systems for projects involving large, open spaces.

The course introduces both products in the FIREbeam range, including the addressable FIREbeam Xtra and the conventional FIREbeam Conex, alongside the accessories available across the portfolio. It also covers the fundamentals of beam smoke detection, which is commonly used in environments where point detection is impractical, such as warehouses, shopping centres, sports halls, museums, hotel atriums and transport terminals.

The new module forms part of the Hochiki Training Academy, a free online learning platform created for professionals working with Hochiki products, including installers, distributors, specifiers and facilities teams. Courses are completed online, allowing users to learn at their own pace from any location. Each course concludes with an assessment, with successful learners receiving certification.

According to Hochiki Europe, the Academy has grown to more than 2,000 users in just a few years and is now used by businesses across the UK, Europe, the Middle East and Africa.

Martin Green, Commercial Training and Support Manager at Hochiki Europe, said: “The FIREbeam course is another building block in the Academy library. Whether someone is new to our products or has worked with Hochiki for years, the Academy is there to support learning throughout their career, not just at the point of installation or specification.

“Because it is entirely self-paced and accessible from anywhere, our customers can build their knowledge in a way that fits around their own working day, no matter where they are based. If you have a project coming up with a large open space, whether that is a warehouse, an atrium or a sports hall, this course gives you a solid grounding in the FIREbeam range before you get started.”

The FIREbeam training course is available now through the Hochiki Training Academy.

Ramtech deploys wireless fire detection system at 2026 Le Mans race

Ramtech has successfully deployed its wireless fire detection technology at the 2026 24 Hours of Le Mans, providing temporary fire protection across key event infrastructure and demonstrating the increasing adoption of automated fire safety systems at major motorsport events.

Working alongside event infrastructure specialist iEvent and integration partner Prodomo, Ramtech France installed a temporary network of more than 300 wireless devices, including smoke and heat detectors and manual call points. The system protected 14 team paddocks and the Genesis Hospitality Building throughout the event.

Installed on a one-month rental basis, the system delivered continuous 24/7 fire monitoring during both the event build-up and race period, with the core live system operating for one week.

The deployment follows a similar installation at the Formula 1 Hungarian Grand Prix, reflecting a broader trend among major motorsport organisers towards wireless fire protection systems that can be rapidly installed and adapted.

Bruna Esposito, Business Unit Director at Ramtech, said: “The environment at a modern Grand Prix or endurance race closely mirrors the extreme complexities of major commercial construction or industrial sites; massive temporary structures, constantly evolving site layouts, tight installation windows and millions of dollars in critical team assets. Managing these risks via manual human patrols is increasingly seen as an outdated and reactive liability.

“We are seeing a fundamental shift in how the world’s largest public events manage fire safety. Rather than relying on traditional, human-led fire watch personnel to manually patrol grounds, tier-one event organisers are embracing automated wireless safety technology to protect people and temporary infrastructure. This project represents an important milestone for Ramtech, demonstrating the trust that global event organisers place in our technology.”

Because the wireless mesh system requires no cabling or conduit, additional devices could be installed or relocated as site layouts evolved during the build-up to race day, allowing organisers to respond quickly to changing operational requirements.

Wireless system chosen for flexibility

Antoine Galicher, Project Manager at iEvent, said: “Flexibility was one of the key reasons we chose Ramtech’s WES system. For an event of this scale, we needed a solution that could deliver both reliability and ease of deployment, allowing us to adapt quickly as requirements changed. The wireless technology simplified installation while helping us maintain the high safety standards expected at Le Mans.”

Sylvain Castaignau, Business Development Manager for Ramtech France, added: “The customer was initially looking for a solution to improve fire safety but was not aware that an automated system like WES existed. From the first demonstration, it became clear that the flexibility and functionality of the system were perfectly suited to an event environment where requirements change daily. This project proves how temporary fire protection can evolve beyond traditional fire watch approaches.”

Ramtech highlights wider event safety trends

Ramtech believes the Le Mans project reflects a wider shift in temporary fire protection for large-scale events, where organisers are increasingly seeking alternatives to manual fire watch patrols.

Esposito said: “With the additional risk posed by increasing summer temperatures and prolonged heatwaves, relying on manual human labour for continuous fire watch patrols introduces major occupational health risks and soaring overtime costs. In addition, there is a heightened concern around the potential for outbreaks of fire, particularly in conditions of dry outdoor spaces, where events may be held.”

The company says the project demonstrates how wireless fire detection technology can provide flexible protection for temporary venues, particularly where layouts change frequently during construction and event preparation.

Pye-Barker Fire & Safety appoints President of Commercial Services

Pye-Barker Fire & Safety has appointed Peter Robbins as President of Commercial Services, a newly created leadership role that will oversee the company’s acquisition activities, commercial strategy and growth initiatives across the United States.

Reporting to CEO Bart Proctor, Robbins will lead efforts to guide Pye-Barker’s acquisition strategy while helping evaluate, integrate and grow acquired businesses. The company has completed more than 200 acquisitions as part of its expansion strategy.

Robbins joins Pye-Barker from Baird, where he served as Managing Director in the Global Technology and Services Investment Banking Group. There, he jointly led the firm’s coverage of Facility, Industrial, Residential & Environmental (FIRE) services and advised on dozens of transactions across the fire and life safety sector.

His experience provides extensive knowledge of the industry’s operators, business models and market dynamics. Robbins is also a long-time advocate of Ownership Works, the non-profit organisation that partnered with Pye-Barker to establish its ALL In ownership programme, which provides employees with opportunities to build wealth through ownership.

Commenting on his appointment, Robbins said: “Pye-Barker is one of the few companies I’ve seen scale this quickly without losing what made it worth scaling in the first place. The operational rigor, the culture, the ownership — what this team has built is truly special, and I look forward to being part of its continued growth.”

Bart Proctor, CEO of Pye-Barker, added: “Peter has sat across the table from us, from our competitors, and from dozens of the businesses we’ve acquired. He understands this industry as well as anyone, but it was his commitment to the people that make this company great that truly stood out to me.

“Our growth, while rapid, is also very intentional. Peter’s growth philosophy matches ours perfectly, and I look forward to seeing what we accomplish together.”

Pye-Barker Fire & Safety is one of the largest providers of fully integrated fire protection, life safety and security services in the US. The company operates more than 250 locations nationwide, employs over 9,000 people and has been recognised as a Great Place to Work Certified organisation. It is also included in the Inc. 5000 list and ranked fourth in the SDM 100

PFAS-free fire extinguishers: future-proofing fire safety for sustainability and compliance

Andy Spence of Britannia Fire explains how fire safety professionals can prepare for PFAS restrictions, reduce carbon emissions and improve whole-life value through PFAS-free technology, circular economy principles and sustainable procurement

The fire safety sector is entering a period of significant change. Growing environmental expectations, evolving regulations surrounding PFAS and increasing pressure to reduce carbon emissions are prompting organisations to reassess how fire protection products are specified, managed and maintained throughout their lifecycle.

At the same time, budget constraints and supply chain considerations are placing greater emphasis on long-term value rather than upfront cost alone. Future proofing requires organisations to anticipate regulatory change, reduce environmental impact and invest in solutions that deliver long-term operational and financial benefits.

From PFAS free technologies to circular economy principles, the decisions made today will shape both sustainability performance and future resilience.

PFAS regulations and the fire safety challenge

Perfluoroalkyl and Polyfluoroalkyl Substances (PFAS), known as ‘forever’ chemicals, have historically been used in firefighting foams and fire extinguishers because of their unique ability to rapidly suppress flammable liquid fires.

However, they are under intense scrutiny as they do not degrade easily in the environment and can lead to a range of health issues, including decreased fertility, developmental delays in children, a higher risk of certain cancers and immune system suppression.

Across the European Union, regulations restricting PFAS in firefighting foams and extinguishers came into force on 23 October 2025, with a ban in most scenarios taking effect from 23 October 2030. The UK government is also taking this issue seriously.

Earlier this year the Department for Environment, Food and Rural Affairs (Defra) published its PFAS plan, which outlines key steps the government will take to understand, manage and reduce exposure to PFAS. Some action is already being taken, with the Health & Safety Executive (HSE), the agency which regulates chemicals placed on the market in Great Britain (GB), due to report back later this year on how PFAS should be phased out of firefighting foam in the UK.

The HSE is suggesting a staggered approach to phasing out PFAS in firefighting foam and extinguishers, depending on use and type. Looking at the proposed timescales for transition, it’s unlikely fire extinguishers containing PFAS would be phased out before 2031, but what we do know is that they will probably be the first to go – in part due to advances in technology and credible alternatives.

We are expecting the HSE to publish its final opinion later this year, with a decision on UK wide restrictions to follow soon after. As PFAS bans take effect across the EU and the

UK moves towards tighter regulation, those responsible for fire safety need to evaluate their existing assets, develop transition strategies for equipment containing PFAS, budget for replacement costs and manage the complex requirements associated with disposal and environmental compliance.

Transitioning to PFAS-free fire extinguishers and foams

We recognised the detrimental effects of PFAS some time ago and removed them from all our products in 2024. Since then, we have been at the forefront of shaping future fire safety regulation in the UK.

In June last year, I addressed the Environmental Audit Committee in the House of Commons, sharing our experience of phasing out PFAS with the aim of helping policymakers understand both the environmental urgency and the practical realities of a transition.

The emergence of high performing PFAS free solutions is helping to dispel the myth that switching to PFAS free is a compromise. Britannia’s lightweight, composite P50 fire extinguishers are a prime example of how the industry is evolving, combining proven fire suppression performance with PFAS free technology and a reduced environmental footprint.

They are tried and tested in the real world, meaning organisations can confidently transition away from PFAS while maintaining the levels of protection, reliability and compliance that modern fire safety demands.

Organisations need to start thinking about this now. They should review their stock to establish what needs replacing and put in place an action plan as part of their usual fire risk assessments and in accordance with their health and safety asset management plan.

If existing stock is nearing its end of life, has failed an inspection or Knowledge Partner additional units are required, make the switch and get ahead of the ban. Allow time for transition but don’t panic.

Use a reputable supplier that will support and provide advice throughout the process.

Circular economy principles for sustainable fire protection

Future-proofing fire safety requires organisations to look beyond the initial purchase cost and consider the entire lifecycle of their fire protection assets. Factors such as maintenance requirements, replacement frequency, waste generation and end-of-life disposal all contribute to the true environmental and financial cost of a product.

Adopting a lifecycle approach enables organisations to identify solutions that deliver long-term value, reduce resource consumption and minimise carbon emissions. In an era of increasing sustainability expectations, understanding the full lifecycle impact of fire safety equipment is becoming just as important as assessing its firefighting performance.

Composite fire extinguishers and long-life fire safety equipment

Traditionally, steel fire extinguishers have been the go-to solution for facilities managers and fire safety professionals, but they are prone to corrosion and therefore need servicing every year and often replacing every five years.

Composite fire extinguishers, however, are helping organisations to meet stringent waste and carbon reduction targets and simplifying fire safety. They’re made from a unique combination of durable plastic and aramid fibres, meaning they are strong, don’t corrode and therefore last 20 years.

They don’t require costly annual servicing, just simple, efficient in-house checks done as part of an organisation’s routine maintenance programme and a full refurbishment after 10 years.

They are also multipurpose, meaning organisations don’t need as many. Britannia’s composite P50 fire extinguishers are used worldwide and despite some claims to the contrary, they conform to all required regulations and standards, including BS EN3-7.

Delivering long-term cost savings Sustainable products like the P50 are well positioned to deliver long-term savings. High-quality, long-lasting equipment with reduced maintenance and replacement requirements lowers ongoing operational costs, while PFAS free solutions help organisations avoid future disposal expenses and compliance challenges associated with evolving regulations.

P50s are also multi-purpose, capable of tackling Class A and B fires as well as electrical fires, reducing the number of extinguishers needed and saving money.

By taking a whole-life cost approach, organisations can identify solutions that not only support sustainability objectives but also deliver measurable financial benefits over time.

Reducing carbon emissions across the fire safety lifecycle

Manufacturing, transportation, maintenance and end-of-life disposal all contribute to a product’s overall carbon footprint, making it important to look beyond operational performance alone.

By assessing lifecycle emissions rather than simply focusing on purchase price, organisations can identify opportunities to significantly reduce their environmental impact.

For example, selecting composite fire extinguishers that don’t require annual servicing reduces vehicle journeys and associated emissions, while products that don’t need frequently replacing, lowers the carbon costs linked to manufacturing and transportation.

They are also fully recyclable, with solar assisted, low energy manufacturing helping to minimise their carbon footprint. Choosing durable, reusable and recyclable fire safety equipment can therefore make a meaningful contribution to both carbon reduction targets and wider sustainability objectives.

Future-proofing fire safety with sustainable compliance strategies

Fire safety and sustainability are no longer separate considerations. By embracing PFAS-free technologies, lifecycle thinking and circular economy principles today, organisations can strengthen compliance, reduce costs and improve environmental performance. This will ensure that those organisations are well prepared for the challenges and opportunities of the future.

Ageing pressurised fire suppression systems white paper released by FirePro UK

New ageing pressurised fire suppression systems white paper examines the risks, costs and regulatory pressures

FirePro UK Ltd has published a new white paper examining the growing operational, compliance and financial challenges associated with ageing pressurised gaseous fire suppression systems.

Authored by Managing Director Tony Hanley, the paper, Considerations for the Extended Lifecycle and/or Replacement of Obsolete or Aged Pressurised Fire Suppression Gas Systems, explores the issues affecting legacy FM200, CO₂ and similar systems as they approach the end of their service lives.

Drawing on more than 40 years of fire engineering experience, Hanley examines factors including hydrostatic test failures, pipework degradation, increasing refill costs, environmental regulations and concerns over long-term reliability.

The paper states: “Older cylinders may often fail the test, making them noncompliant and requiring replacement,” and highlights that enclosure integrity, a critical requirement for gas-based suppression systems, can become increasingly difficult to maintain as buildings are modified and age over time.

The publication also outlines FirePro’s condensed aerosol fire suppression technology as an alternative to conventional pressurised gaseous systems. According to the company, the technology uses a solid-state, non-pressurised generator that chemically interrupts combustion rather than relying on room pressurisation or maintaining a specific gas concentration.

FirePro says this approach removes the need for cylinders, pipework, hydrostatic testing, refills and room integrity testing, while providing a certified 15-year lifecycle and lower ongoing maintenance requirements.

The paper also states that the technology is suited to retrofit projects, older buildings and mission-critical environments where maintaining airtight enclosures may be impractical. It further highlights environmental characteristics including negligible global warming potential (GWP), the absence of PFAS and CFCs, and compliance with BS/EN 15276 safety requirements.

Hanley, who serves as Managing Director of FirePro UK, Vice Chairman of the Fire Industry Association (FIA), and received the FIA Lifetime Achievement Award in 2023, said the white paper is intended to help industry stakeholders make informed decisions as legacy fire suppression systems reach the end of their operational lives.

The white paper is available for facilities managers, insurers, fire engineers and other industry professionals seeking guidance on lifecycle risks, regulatory considerations and replacement options for ageing fire suppression systems.

FirePro UK has also released an accompanying video alongside the publication.

Blackpool Airport fire service appoints new Senior Airport Fire Officer

Paul Lake brings more than 40 years of aviation firefighting and rescue experience to Blackpool Airport fire service

Blackpool Airport fire service has appointed Paul Lake as Senior Airport Fire Officer. Bringing more than 40 years of aviation firefighting and rescue experience, he joins the airport as it continues to support its long-term growth and operational resilience.

Blackpool Airport has appointed Paul Lake as its new Senior Airport Fire Officer (SAFO), bringing more than four decades of aviation fire and rescue experience gained across military, civilian and international airport operations.

Lake will lead the airport’s fire service, drawing on a career that has spanned operational leadership, firefighter training and international airport fire management in the UK and overseas.

He began his aviation firefighting career at Farnborough Airport before going on to hold senior operational and training roles at Boscombe Down, RAF Leeming, the International Fire Training Centre (IFTC) in Teesside, where he trained aviation firefighters from around the world, the International College of Engineering & Management in Oman and Falck Fire.

Most recently, he served as Chief Fire Officer at King Fahd International Airport in Saudi Arabia, the world’s largest airport by land area, leading a team of 150 firefighters across four fire stations.

Returning to the UK to join Blackpool Airport, Lake said: “After 40 years in the fire service I still love my job and I’m delighted to be back in the UK to take up the position of SAFO at Blackpool Airport.

“It’s an exciting time to join the airport and play a part in its growth masterplan. The team here is fantastic and it was great to see a few familiar faces from my time as an instructor in Teesside.”

Steve Peters, Airport Director, said: “We are very pleased to welcome Paul to Blackpool Airport. His wealth of experience, leadership credentials and international expertise make him an outstanding addition to our team.

“As the airport continues to develop and grow, Paul’s knowledge and commitment will be invaluable in ensuring the highest standards of safety and resilience.”

The appointment reinforces Blackpool Airport’s commitment to maintaining high operational standards while supporting its future growth and development plans.