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.

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

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

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

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

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

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

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

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

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

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

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

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

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

Household pets, or everyday life.

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

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

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

When these combine in the right conditions, combustion begins.

Our infrasound technology disrupts this chemical reaction.

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

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

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

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

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

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

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

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

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

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

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

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

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

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

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

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

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

The system is designed to operate autonomously.

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

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

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

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

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

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

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

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

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

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

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

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

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

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

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

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

Our backpack unit eliminates that dependency on refilling.

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

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

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

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

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

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

Feedback from these deployments informs ongoing research and development.

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

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

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

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

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

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

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

How LEADER Group’s DIPHASIC mist system improves fireground safety

Firefighting system uses mist to provide 98% radiant heat protection

LEADER Group has announced a new firefighting technology called the DIPHASIC system which provides up to 98% protection against radiant heat flux during fireground interventions.

The system was developed in collaboration with the Paris Fire Brigade and other fire services to address increasing operational challenges.

This technology uses an air and water mixture to generate a mist composed of more than 1.5 billion micro-droplets per litre.

Projected at high speed, these droplets disperse throughout a volume and move around obstacles to act directly on hot gases.

The system prioritises the effectiveness of each litre of water rather than increasing overall flow rates.

Operational deployment of the technology has been in place since 2023 following scientific validation and real-scale testing.

The company will present the system at INTERSCHUTZ 2026 in Hall 13 at Booth F20 / G20.

Reducing water consumption and structural damage

Fire crews using the mist can reduce water usage by four to six times in some configurations while maintaining operational effectiveness.

Lower volumes of water limit structural loading from accumulation and reduce flooding in residential or commercial buildings.

This reduction in water use also decreases restoration requirements following fire incidents.

The system is intended to stabilise fire behaviour including flashover and backdraft conditions.

Crews can use the technology for the rapid cooling of smoke and hot gases to improve safety during advancement.

It supports firefighting without a direct line of sight and improves visibility within compartments.

Tactical applications in confined and remote environments

The DIPHASIC system has been applied in structural fires, underground parking fires and naval or airport operations.

Its ability to move through enclosed volumes is intended to support firefighting in confined environments or remote locations with restricted water access.

LEADER Group explained that the system is designed to complement existing firefighting methods rather than replace them.

It is positioned as a tactical option for use alongside established equipment depending on fire conditions and crew judgement.

The technology contributes to wider discussions regarding whether operational strategy should prioritise higher flow rates or efficiency in water application.

LEADER Group has 40 years of experience in manufacturing firefighting equipment and supplies products to more than 120 countries.

United Safety announces Reacton partnership and recapitalisation

Reacton joins United Safety in new partnership

United Safety & Survivability Corporation (United Safety) has announced a recapitalisation and strategic partnership with Reacton Fire Suppression that adds Reacton to its mobile fire suppression portfolio.

In a 9 March statement, United Safety said the agreement brings Reacton into the combined company’s product family and expands its offering across sectors including mining, heavy machinery, defence, transportation, marine, energy and critical infrastructure.

Reacton has operations in the United Kingdom, United States and the United Arab Emirates.

The company said the partnership will combine Reacton’s fire suppression technology with United Safety’s manufacturing base and international infrastructure.

The combined organisation will offer water mist, liquid, dry powder, clean agent and dual-agent fire suppression systems.

United Safety said the agreement will also maintain the Reacton and Fireward brands, along with their existing engineering standards and customer approach.

Expansion plans and customer continuity

Joseph Mirabile, CEO of United Safety, said: “This partnership marks a defining moment in our mission to save lives and protect infrastructure around the world.

“By combining engineering excellence with global scale, we are building the strongest fire suppression platform in the industry.

“I am incredibly excited about the growth opportunities ahead across Europe, the Middle East, APAC, and the Americas as we expand our ability to protect people and high-value assets in mission critical environments.”

Sam Malins, CEO of Reacton Fire Suppression, added: “This partnership is the natural evolution of the journey we began years ago.

“We built Reacton on engineering integrity, simplicity, and trust – growing deliberately, protecting our standards, and earning our reputation in some of the world’s toughest environments.

“Joining forces with United Safety allows us to preserve that DNA while scaling globally.

“I’m incredibly proud of our people and excited for what we can achieve together.

“As a result of the enhanced investment, infrastructure, and global reach, the newly combined organization is uniquely positioned to lead the next era of mobile fire protection, delivering life-saving solutions where they matter most.”

The companies said customers and partners will continue to work with the existing Reacton and Fireward brands as the combined business expands its product development work and international support.

Simplifying pump room procurement: Idroelettrica and Millars Pumps’ approach to fire pump projects

Giovanni Vaccari, Sales Export Manager at Idroelettrica, sets out how collaboration with Millars Pumps combines Italian manufacturing expertise with local UK technical support across the project lifecycle

Sourcing reliable fire pump systems has become an increasingly challenging task for the UK fire industry, across both new build and retrofit projects.

Fire pumps are highly specialised components within a building’s fire protection system, which must perform seamlessly in critical situations.

As a result, they are subject to strict regulations, and must comply with a range of UK and international standards.

In addition, bespoke designs are often required to suit the specific needs of each building according to its use, size, layout and fire safety procedures.

This combination of technical complexity, regulatory compliance and customisation can make procurement time-consuming and complicated, with fire protection contractors and engineers facing long lead times while trying to source the right equipment for each project.

Millars Pumps, the new exclusive distributor of Idroelettrica fire pumps and pump room solutions in the UK, has been created to help alleviate these issues.

 By combining decades of Italian manufacturing expertise with local UK technical support, the aim is to simplify procurement, improve reliability and competitiveness and provide greater support throughout the entire process, from specification to installation to long-term maintenance.

Expert specification

One of the biggest challenges facing UK fire pump projects is getting the specification right at an early stage.

This is essential to avoid late design changes, delays, or even costly remedial work.

Specification starts with understanding and assessing the characteristics of the building, such as the type, use, occupancy levels, number of floors, the planned sprinkler or water mist system design, available space for the pump room, and access to a water supply.

These factors will determine the ‘fire demand’ or amount of flow and pressure the pump system must support, and whether additional equipment such as a water storage tank is required.

Building-specific calculations are made to determine the most suitable pump system, which must then be designed to comply with relevant standards.

At Idroelettrica, our strength lies in our engineering-led approach to fire pump design.

We have extensive experience in manufacturing fire pump systems for global markets, which means we can work closely with Millars Pumps to support UK contractors, consultants and developers during the crucial specification phase.

We ask the right questions and draw from our expertise to ensure pump sets, controllers and enclosures are correctly sized and configured for each application, reducing risk later in the project.

Compliant and future proof

Navigating the standards and regulations for UK fire pump systems is particularly complex.

 For example, depending on the application, fire pumps may need to comply with BS EN12845 which covers automatic sprinkler systems in buildings in the UK and Europe, BS 9251:2021 for fire sprinkler systems in UK residential buildings, NFPA-20 which is an international standard for the installation of stationary fire pumps, or FM 3-7 which covers requirements from the independent testing agency, FM Approvals, for fire pump sets.

 For many buildings, a combination of these will be needed.

Each of these standards brings its own requirements around testing, control systems and documentation which are not only highly technical but are also regularly updated, making compliance increasingly challenging.

 Updates are driven by changes in building use, insurer demands or lessons learned from fire incidents.

 So it’s important that design specifications are not only compliant at the time of design, but also robust enough to adapt to possible requirement changes in years to come.

This is where modular pump rooms solutions can provide a more forward-thinking and future-proof approach.

 While traditional fire pump rooms are constructed on site, with different parties responsible for building work, mechanical installation and electrical installation, modular pump rooms are pre-engineered in their entirety in the factory.

 Working to detailed specifications, the components can be assembled and tested prior to delivery to ensure the complete system conforms to industry standards, offering greater control and reassurance.

Our Idroelettrica factory in Modena in Italy, for example, features a state-of-the-art, in-house testing facility, where all our pump systems are assembled and tested under controlled conditions, providing documented assurance.

Pre-engineered for convenience and access

At Idroelettrica, our most popular modular system is the Firebox.

 It’s a pre-engineered ‘plug and play’ pump room that arrives on site fully fitted, tested and ready for installation.

Firebox combines pump sets, controllers, pipework and the enclosure into a single, integrated solution, manufactured in advance to suit each building’s space, fire protection plan and technical requirements.

For developers and contractors working to tight programmes, where schedule certainty matters, the convenience is a major advantage.

Firebox reduces installation time on site, cuts labour costs and reduces project risk compared to traditional onsite builds.

The innovative design of Firebox means that all sides are also doors that fully open, providing 360° access.

This provides clear working space around pumps, valves and controllers and supports regular inspection, testing and servicing.

Local customer support and maintenance

While manufacturing quality is fundamental, we understand that the long-term performance of a fire pump system depends on effective local support.

Fire pumps require regular inspection and maintenance to ensure they continue to be operational.

As our exclusive UK distributor, Millars Pumps provides a direct link between manufacturer and customer, helping to streamline procurement.

This simplified route to market improves communication, shortens lead times and provides greater certainty around delivery.

The team at Millars Pumps are also on hand to support customers throughout installation, commissioning and with ongoing servicing and maintenance.

In this way, our customers benefit from both the expertise of a global leader and the practical, long-term customer relationships available from a UK-based firm.

From factory to site

As fire safety expectations continue to rise, it’s clear that fire pump room procurement is no longer simply a matter of selecting equipment.

 It requires careful consideration of compliance, build quality, programme certainty and long-term serviceability.

 Traditional site-built approaches can struggle to keep pace with these demands, particularly on complex or time-sensitive projects.

Pre-engineered, modular pump rooms, like Firebox, can provide a more controlled and reliable alternative, offering bespoke design with factory-built quality and certified performance.

When combined with the local technical expertise and long-term support provided by Millars Pumps, this approach offers a more resilient model for improving consistency, reducing risk and future-proofing critical fire protection infrastructure.

 Solutions like this that can simplify procurement while enhancing reliability, compliance and long-term value are likely to play an increasingly important role across the UK fire industry in the years ahead.

For more information visit: www.millarspumps.co.uk

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

UL certifies TLX Technologies solenoid valve for clean agent and inert gas systems

TLX Technologies achieves UL recognition for solenoid valve

TLX Technologies has announced that its Supervised Direct-Acting Solenoid Valve has completed testing and is now a UL 429 and UL 429A Recognized Component.

The company confirmed the certification on Tuesday 7 October 2025.

According to TLX Technologies, the solenoid valve is designed for clean agent, inert gas, carbon dioxide (CO₂) and hybrid fire suppression systems that use valve-integrated actuation.

The valve body can also be configured for use as a selector valve.

Compliance with NFPA 2001 and EN 15004-1 supervision standards

TLX Technologies said the valve features the same patented integrated supervision as its range of linear electric actuators for fire suppression.

It meets supervision requirements under Section 4.3.4.1 of the National Fire Protection Association (NFPA) 2001 standard and the EN 15004-1 European standard.

The company added that this design removes the need for an additional supervisory component or electrical connection.

This integration allows the valve to meet required supervision criteria while simplifying installation and maintenance.

Technical configuration and design options

The valve consists of a removable coil assembly and a threaded valve body.

TLX Technologies explained that the coil housing is made from electroless nickel-plated carbon steel.

Depending on system requirements, the valve body can be produced in brass or stainless steel.

In its standard form, the valve body includes a release valve and is available with 1/8-inch or 1/4-inch NPT thread options.

When specified for selector valve use, the valve body is modified to function as a coupler and can be customised for the specific selector valve design.

Ease of installation and maintenance features

The coil assembly is designed to rotate freely, providing flexibility during installation.

It includes a captured fastener to prevent loss when the coil is removed for testing or maintenance.

TLX Technologies said this fastener also ensures full seating of the coil on the valve body.

The feature provides technicians with confirmation that the coil has been correctly installed.

Relevance for fire and safety professionals

The UL 429 and UL 429A recognition for TLX Technologies’ Supervised Direct-Acting Solenoid Valve provides assurance for system manufacturers and designers developing clean agent, inert gas, CO₂ and hybrid suppression systems.

For fire engineers and mechanical contractors, the integrated supervision design could reduce wiring complexity and lower the number of components required for system compliance with NFPA 2001 and EN 15004-1.

Procurement officers and specification consultants involved in selecting UL-recognised components for global installations may find the new certification relevant when sourcing valves that combine supervision capability and simplified installation.