Florida private school faces barriers due to fire safety rules

School founder faces high costs for compliance

A small private school in Sarasota, Florida, has been unable to expand beyond five students due to fire safety regulations that require a costly sprinkler system.

According to Forbes, Alison Rini, the founder of Star Lab, set up the school in an unused building within a public housing complex.

Despite making minimal modifications, she encountered zoning and fire safety rules that imposed significant financial burdens on the project.

Her initial planning application required a $20,000 full survey, which was later reduced to a $1,035 scaled-down version.

After receiving conditional approval, she was informed that a sprinkler system was mandatory, with installation costs reaching $97,000.

Fire safety measures questioned by officials

According to Forbes’ report, Rini commissioned a fire safety engineer’s report to demonstrate the existing fire safety measures in the building.

The facility has smoke detectors, fire extinguishers, multiple emergency exit doors, and a maximum exit distance of 35 feet.

Despite this, Sarasota city officials maintained that the school’s fire precautions did not meet the required safety standards.

Larry Murphy, a city building official, stated: “The City worked diligently to have this project move forward and have made concessions to allow it to move forward. I am sure that the applicant would agree.”

Regulatory framework limits small schools

Under Sarasota’s regulations, having more than five students in the facility would classify Star Lab as a school, triggering the requirement for a sprinkler system.

Without the ability to afford the upgrade, Star Lab has been unable to expand enrollment.

Rini argued that fire safety regulations should reflect the scale and design of modern small schools: “A school no longer means 800 kids in 60 classrooms on two floors.” She noted that her school operates on a single level with direct outdoor access.

Calls for policy adjustments

Forbes reported that some education advocates believe state and local governments should review regulations for small private schools.

They suggest allowing alternative fire safety measures in place of costly sprinkler systems when other protections, such as smoke detectors and clear emergency exits, are in place.

Without adjustments, small schools such as Star Lab could struggle to operate, limiting educational opportunities under Florida’s school choice program.

Florida private school faces barriers due to fire safety rules: Summary

A small private school in Sarasota, Florida, has been restricted to five students due to fire safety regulations that require a sprinkler system.

Alison Rini, the founder of Star Lab, set up the school in a public housing complex but faced high compliance costs, including nearly $100,000 for fire safety upgrades.

Despite implementing smoke detectors, fire extinguishers, and multiple emergency exits, city officials determined that these measures did not meet safety standards.

Sarasota regulations classify the facility as a school once enrollment exceeds five students, making a sprinkler system mandatory.

Some education advocates argue that regulations should be updated to accommodate smaller schools with different safety needs.

Without changes, schools such as Star Lab may struggle to expand under Florida’s school choice program.

New Armstrong fire pump reaches 160PSI for global markets

Expanded fire pump range introduced

Armstrong Fluid Technology has expanded its line of Constant Speed Vertical-In-Line Fire Pumps, now offering a model with a maximum 500 US gallons per minute (USGPM) flow rate for both 60Hz and 50Hz markets.

The new pump includes high-pressure ratings of up to 160PSI.

It has been designed to reduce the need for offset piping and motor realignment while occupying less floor space than Horizontal Split Case models.

Features of the new fire pump

The latest addition to Armstrong’s Vertical-In-Line series includes a smaller motor than comparable pumps at the same duty point.

It also has a smaller environmental footprint than standard diesel-driven pumps.

The pump has been approved by UL, ULC, and FM, ensuring compliance with industry safety and performance standards.

Industry positioning

Michael DeMille, Global Offering Manager for Fire Pumps at Armstrong Fluid Technology, highlighted the product’s unique capabilities: “Armstrong is one of only four manufacturers who can offer a VIL fire pump reaching 160PSI at 500 USGPM.”

He added: “This new model is an excellent addition to our existing Vertical-In-Line pump series.”

Availability and applications

The pump is designed for use in fire protection systems across a range of global markets.

Its vertical in-line configuration allows for easier installation and maintenance in settings where space is limited.

The expansion of the Vertical-In-Line Fire Pump range aligns with Armstrong’s broader efforts to provide efficient and compact fire protection solutions.

New Armstrong fire pump reaches 160PSI for global markets: Summary

Armstrong Fluid Technology has expanded its Constant Speed Vertical-In-Line Fire Pump range with a model that delivers a maximum flow rate of 500 USGPM and a pressure rating of up to 160PSI.

The pump is available for both 60Hz and 50Hz markets.

The design reduces the need for offset piping and motor realignment while taking up less floor space than Horizontal Split Case models.

It also features a smaller motor and a reduced environmental footprint compared to diesel-driven alternatives.

The pump has received UL, ULC, and FM approvals.

Armstrong’s Global Offering Manager for Fire Pumps, Michael DeMille, stated that the company is one of four manufacturers offering a vertical in-line fire pump reaching 160PSI at 500 USGPM.

UK Environment Agency issues guidance on waste fire extinguisher use for training

Regulations on waste fire extinguisher use in training

The UK Government has issued updated guidance on the use of waste fire extinguishers for training purposes.

The regulatory position statement (RPS 221), published by the Environment Agency, states that while an environmental permit is required for storing waste fire extinguishers, the agency will not typically enforce this requirement if organisations meet specific conditions.

The guidance applies to recognised training providers using waste fire extinguishers for fire safety exercises.

Providers must ensure that their activities do not cause pollution or harm to human health and do not risk air, water, or soil contamination.

Conditions for using waste fire extinguishers in training

Training providers must meet several conditions to comply with RPS 221.

They must be recognised firefighting training organisations and only store and use waste fire extinguishers that require no treatment or repair.

Extinguishers must be accompanied by a material safety data sheet and classified under waste code 16 05 05.

Storage must be in a secure, covered location on an impermeable surface with sealed drainage.

Any discharged foam must be sent offsite for appropriate treatment.

Records of compliance must be kept for two years and provided to the Environment Agency upon request.

Providers must not store more than 100 waste extinguishers at a time or use extinguishers containing PFOS, PFOA, or PFHxS.

Review and enforcement of RPS 221

The Environment Agency will review RPS 221 by 31 December 2027 and may amend or withdraw it before this date if necessary.

Organisations are advised to check for updates regularly to ensure continued compliance.

The RPS remains valid until it is removed from the UK Government website or formally withdrawn.

Organisations can subscribe to email updates for notifications about changes.

Steps for non-compliance

Training providers that can no longer comply with the conditions of RPS 221 must stop the related activities immediately and inform the Environment Agency.

Notifications should be sent to enquiries@environment-agency.gov.uk with “RPS 221” in the subject line.

For further inquiries, organisations can contact the Environment Agency at the same email address.

UK Environment Agency issues guidance on waste fire extinguisher use for training: Summary

The UK Government has published guidance outlining conditions for storing and using waste fire extinguishers in fire safety training.

The Environment Agency’s RPS 221 states that while an environmental permit is legally required, enforcement action will not typically be taken if specific conditions are met.

The guidance applies to recognised training providers using waste fire extinguishers classified as waste code 16 05 05.

Providers must store extinguishers securely on an impermeable surface, ensure extinguishers require no repair, and keep compliance records for two years.

Storage is limited to 100 extinguishers at a time, and those containing PFOS, PFOA, or PFHxS are prohibited.

The RPS will be reviewed by 31 December 2027, with potential amendments before that date.

Training providers unable to comply must stop activities and inform the Environment Agency.

Updates and inquiries can be directed to enquiries@environment-agency.gov.uk.

From space tech to fire safety: The innovation behind MAUS Fire’s Stixx Pro

Thomas Hughes, Managing Director of Aerocom UK and MAUS UK, discusses Stixx Pro’s role in safeguarding enclosed spaces from electrical fire risks

MAUS Fire Safety has developed a fire suppression system called the Stixx Pro, designed to protect enclosed areas vulnerable to electrical fires.

This system, featuring a potassium-based extinguishing agent, stands out due to its fully autonomous operation, requiring no power or maintenance.

In this interview, we speak to Thomas Hughes, Managing Director of Aerocom UK and MAUS UK, to learn more about the company’s vision, the unique features of the Stixx Pro and how this product addresses critical fire safety challenges, particularly in areas like EV charging points and electric scooters.

Could you start by telling us a bit about MAUS Fire Safety?

The technology used within MAUS Fire safety devices originated from a space program in the 1980s.

There was a need to develop a technology that could extinguish all types of fires without destroying the expensive technology inside the spaceships.

MAUS took that technology and placed it in small devices to protect people and buildings on earth.

The devices are based around a patented potassium smoke and as a result is a more effective extinguishing agent than conventional powder.

What motivated MAUS to focus on developing fire suppression systems for enclosed areas prone to electrical fires?

The motivation for developing fire suppression systems for enclosed areas prone to electrical fires came from irreversible amounts of damage and ever increasing risk to life, created by preventable fires.

Massive amounts of destruction created as a result of a small fires ignited by faulty sockets or outlets, components overheating, outdated wiring, old appliances and loose components.

There are fire extinguishers out there that can extinguish electrical fires, yes, but none of them can fit inside or automatically extinguish and leave no residue within the electrical cabinets and enclosures where they are almost always ignited from.

There was a severe gap in fire extinguishing capabilities and our MAUS system solves that.

A super compact, simple, quick, easy, self-adhesive device that is automatically activated when a fire starts, our device extinguishes the fire before it spreads and eliminates any need for wide scale evacuation, reactive damage control and intensive clean up.

Can you introduce the Stixx Pro fire suppression system and what makes it different from conventional solutions?

The MAUS Stixx Pro fire suppression system works in the form of a solid substance potassium compound.

Our Heat detecting cable will activate automatically once a fire is detected at 170’c.

This then creates a chain reaction into activating the potassium compound which is released as very small particles of gas.

These potassium gas particles interrupt the chemical combustion reaction by neutralising the hydrogen, oxygen and hydroxide radicles within the flame.

Therefore, suppressing and extinguishing the fire.

Our system is residue free and will cause no further damage.

What does the potassium-based extinguishing agent used in the Stixx Pro do?

The MAUS Stixx extinguishing agent works in the form of a solid substance potassium compound, activated only by HDC detecting a fire at a temperature of  >170’c.

Our device is considered environmentally friendly because of a few reasons; Our plastic shell is 100% recyclable.

Secondly, due to our agent being a solid substance potassium compound it can be disposed of safely.

Our system has zero Global Warming Potential (GWP) and negligible Atmospheric lifetime (ALT).

 Our systems are ozone-friendly and contain no CFC’s.

We are committed to environmental sustainability in both our technology and business practices as we continually strive to reduce our overall carbon footprint.

What are the benefits of the system being autonomous in environments like EV charging points?

The benefits of our system being autonomous or not requiring any electricity or wiring means that installers can discreetly and easily retrofit, specify, or implement it into the workings of both EV charging points and Scooter stations.

As a result of our system not needing any wires, batteries or power, they can be installed very quickly and without any disruption.

They have a manufacturer’s warranty of five years with zero maintenance, this means that once installed (unless there is a fire and they have been activated) you will only need to renew and replace every five years.

The Stixx Pro provides “100% flooding” once activated.

What does this mean?

Our MAUS Stixx Pro series comes with a recommended ‘volumetrically protected area’ for each different device.

If the volumetric area recommendation is followed, then upon activation, the potassium gas with completely flood the entire area within seconds which allows maximum surface area for the potassium gas particles to interrupt the chemical combustion of the fire.

To go into more detail of how that works; The falling speed of the Potassium particles decreases with a smaller diameter as the surface becomes large in relation to the mass, which means that air resistance becomes relatively large in relation to the force of gravity.

This results in the particles remaining suspended for a longer time and thus contributes to a longer inerting time.

As a result the fire will be extinguished as quickly as possible and you get better protection against re-ignition.

The extinguishing effect per unit of weight is in the range 3-10 times more effective than Halon and CO2.

Stixx Pro features low-temperature activation – why this is important for preventing fire outbreaks?

The low-temperature activation of the MAUS Stixx Pro is super important element of our system.

Our aim is to extinguish the fire as quickly as possible to avoid as much potential damage as possible.

This super low activation temperature and ability to put out the fire before it spreads and grows larger is especially imperative within environments such as server rooms and fuse boxes.

There is an incredibly high cost of damage if a fire is allowed to spread, not only within servers carrying important irreplaceable data, but the more a fire is allowed to grow, the higher the risk to life.

There are many benefits that come alongside the fire being put out as quickly as possible, the biggest being damage control.

Minimising parts needing to be replaced and reducing time taken to clean up results in areas being able to be back-up and operational incredibly quickly.

What sort of feedback have you received from customers or industry professionals?

We have recently been awarded a Highly Commended Product of the Year award at the IHEEM Healthcare estates 2024 show.

We were presented with this award as a result of our implementation throughout the NHS and our dedication to trying to further improve and develop fire extinguishing capabilities within all industries.

We have been receiving very positive feedback from large national infrastructure installations across the UK and Ireland, a couple of examples being Amazon, Pfizer and Irish Rail network.

What role do you see the Stixx Pro playing in improving public and workplace safety?

Stixx Pro will play the role of a ‘first responder’, our system improves public and workplace safety by being able to automatically react and extinguish fires before they spread.

The growing concern of fires starting when no one is around and being allowed to grow uncontrollably until only firefighters are able to extinguish.

Our system allows a maintenance free opportunity to control fires right at the start of ignition and eliminate the need for specialist firefighting techniques, therefore freeing up fire services availability for focus elsewhere.

We truly believe that the implementation of our system into domestic, commercial and industrial is imperative into the future of fire free environments.

Looking forward, how does MAUS plan to meet the evolving needs of fire safety in technological and electric spaces?

Our mission is to place fire protection where there could be no fire protection before due to space constraints or high cost.

With products so small and so versatile we will revolutionise the way we extinguish fires and save lives, buildings, machines, minimising expensive and costly production disruptions.

We are constantly developing and upgrading our products alongside our systems Swedish inventors to make sure they as up to date as we can be.

We offer CPD’s to keep everyone up to date with our developments and to share and exchange knowledge with industry professionals.

This article was originally published in the February 2025 issue of International Fire & Safety Journal – to read your FREE digital copy, click here.

Achieving balance in foam performance with Perimeter Solutions

Mark Siem, Business Development Manager at Perimeter Solutions, explores the equipment updates and foam testing required for an effective fluorine-free foam transition

The fire safety industry is increasingly focused on sustainability, closely examining the environmental impact of firefighting methods and the tools that they use to protect lives and property.

This shift in mindset has driven forward-thinking fire departments, airports and other organizations that rely on firefighting foam to transition from traditional fluorinated foams, such as aqueous film-forming foam (AFFF) alcohol-resistant AFFFs and FluoroProtein foams, to fluorine-free alternatives, which offer a more sustainable solution.

However, before making the switch to synthetic fluorine-free foam (SFFF), organizations must consider several important factors and gain a clear understanding of the technical and logistical factors associated with the conversion in order to effectively navigate the transition.

Performance considerations

The transition to SFFF technology requires a multi-disciplinary discussion and decision between safety, engineering, environmental and purchase departments.

Once the decision is made to move to SFFF, one of the first things to consider is the type of fire hazards present at your location.

Do you deal with spill fires or fuel-in-depth fires? You must also identify which fuels you have on hand—hydrocarbon or polar solvent.

This will determine the type of fluorine-free foam that you need.

Both manual firefighting operations and fixed or semi-fixed foam systems must achieve proper application densities to be effective.

For manual firefighting operations, in most circumstances fluorine-free foam should be appropriate; however, additional considerations may need to be made to account for changes in viscosity or changes within application rates due to UL listing and/or FM Approval.

In hydrocarbon fire protection, fixed or semi-fixed foam systems may not need additional adjustments or changes, whereas with water miscible fires, in some cases adjustments to increase application rates may be required as per historically UL and FM provide guidance on the approved application rates.

Adjustments to proportioning equipment may also need to be taken into consideration to account for changes in viscosity and flow rates.

This would also present a good opportunity to reevaluate end-of-line discharge devices to ensure they align with current hazard needs and any updated changes in application rates associated with the selected product.

SFFF solutions used on water-miscible and polar solvent fuels have always been set to manufacturer recommendations.

With the transition to SFFF for Perimeter Solutions, the listings have remained the same for ethanol and methanol; however, potential increases in other water-miscible fuels may need to be reviewed.

In addition to flow rates and densities, foam quality plays a critical role in performance.

Foam quality parameters, including expansion ratio and drainage rate are crucial for effective fire protection.

Perimeter Solutions with its fluorine-free range has demonstrated and proven through approved and listed fire testing, we can successfully extinguish Class B fuel fires with non-aspirated discharge devices; however, wherever there is the option for aspirated regardless of fluorinated, or fluorine-free, that is always the preferred option.

Proportioning and discharge devices

For fixed or semi-fixed foam suppression systems and end-of-line discharge devices, a full review should be taken to ensure the application rates are still within the requirements and risk hazards of the facility.

In several cases, minimal or no changes may be required, or in some cases with the changes of hazards on site, proportioning devices and foam concentrate storage tanks may also need to be adjusted to accommodate the increased flow.

One of the key factors to consider is the viscosity of the firefighting foam, especially the distance between the foam concentrate and the ratio controller as longer distances can lead to friction loss.

This friction loss reduces the amount of foam entering the water stream resulting in a lower proportioning percentage.

Perimeter Solutions has continued to develop and move in to low-viscosity firefighting foams, reducing the need to increase pipe diameter to mitigate friction loss and for easy proportioning accurately.

If the system is a wet-pipe system, it may need to be converted to a deluge system to accommodate for pre-mixed foam solution stability.

It is also important to verify that the sprinkler have been listed or approved for use with the specific SFFF foam and fuel type by a third-party agency or relevant authority.

The benefit of using an UL or FM-approved system is that all components are designed to work together, ensuring optimal performance when all parts are properly integrated.

Key components include:

  • The tank
  • Foam concentrate
  • Ratio controller/proportioner
  • Discharge device

If an organization chooses to retain its existing fire safety equipment, it’s important to remember that the piping, discharge devices, etc., will need to be thoroughly cleaned or replaced before the transition.

Cleaning the equipment can be costly and even after cleaning, it may still contain residue.

In some cases, replacing the solution pipes is a more cost-effective solution.

Collaborating with industry peers facing similar challenges can provide valuable support during the transition.

It is also essential to stay updated on innovations in firefighting foam concentrates and equipment by attending workshops, presentations and other industry events.

Perimeter Solutions offers a Know Your Foam training session that is available at no cost to fire departments and other fire management agencies across the US and Canada.

The three-hour session includes in-class training and outside hands-on application of Class A and Class B foam.

Attendees at these sessions learn the difference between these foams, fluorine-free Class B foams, as well as emulsifiers and water.

Instructors demonstrate application techniques, including Roll On, Horizontal Spray, Bounce Off, Application then Reposition, Stitching and Tend the Blanket.

The session also covers the different types of foam systems, how to use a foam injection system and in-house maintenance of foam application products.

In the hand-on portion, participants will use a manual inductor, nozzles, foam tubes and foam injection systems.

Additional considerations

When transitioning to SFFF, there are additional considerations involving equipment that may need to be addressed for smooth and effective implementation of the new technology:

Testing and commissioning equipment

After cleaning and disposing of fluorinated foam, the next step is to test and commission equipment with the new SFFF solution.

Internal testing is commonly conducted by flowing foam concentrate through the system, pulling a sample and comparing it against a calibration curve.

If the sample falls within the proper range of the curve, the system is confirmed to be working correctly.

This ensures that your equipment is properly integrated with the new foam and any issues are identified early.

Foam quality checks

Once the equipment is in place, it is vital to assess the foam quality coming out of discharge devices.

Key performance indicators such as expansion ratio and drainage rate should be evaluated to ensure they align with the manufacturer’s recommendations.

Checking foam quality helps confirm that the equipment is delivering the correct performance to suppress fires effectively.

Budgeting for the transition

The costs associated with transitioning to SFFF outlined above can add up quickly.

Perimeter Solutions has been able to retrofit existing systems, in some cases with minimal changes; however, consideration needs to be made to foam proportioners, storage tanks and discharge devices to accommodate SFFF.

These additional expenses should be considered when planning the transition and budgeting for the necessary equipment and foam supplies.

Regarding storage of SFFF concentrate, there isn’t a noticeable difference compared to fluorinated firefighting foams.

When stored in original containers, or in tanks designed for foam storage with manufacturer-recommended equipment and within the specified temperature range, a shelf-life of at least 10 years is expected and is projected to be approximately 15-20 years.

(Shelf life studies are ongoing to ensure quality and further storage longevity).

Advanced SFFF options available now

Perimeter Solutions offers a comprehensive line of fluorine-free foam concentrates.

Our SOLBERG VERSAGARD 1×3 Multipurpose Fluorine-Free Foam Concentrate meets the most demanding emergency response applications and is UL 162 listed and GreenScreen Certified Silver® as well as multiple international certifications, including LASTFIRE.

It has been tested and designed for industrial emergency response and is ideal for facilities that store crude oil on site.

SOLBERG RE-HEALING 3×3 SP-100 was the industry’s first UL-listed fluorine-free 3×3 foam concentrate with the full complement of hardware and sprinkler listings, including non-aspirated, standard sprinkler heads.

FM-approved, it is used in sprinkler applications to extinguish and secure both Class B hydrocarbon and polar solvent fuels.

Our PHOS-CHEK® 1% Fluorine-Free Class A/B Foam Concentrate was the industry’s first certified fluorine-free Class A/B foam concentrate on the market.

A versatile solution, it can be used to help extinguish structural, residential, wildland, petroleum and other fires.

While the shift to SFFF technology offers significant benefits, such as reducing the impact on ecosystems and human health, it requires careful consideration of performance, equipment and budget.

By thoroughly testing equipment, ensuring foam quality and planning for necessary upgrades, organizations can successfully make the switch.

As the industry continues the transition to SFFF, staying informed and working closely with trusted companies like Perimeter Solutions can help streamline the process.

This article was originally published in the February 2025 issue of International Fire & Safety Journal – to read your FREE digital copy, click here.

FireDos secures FM approval for variable viscosity foam proportioners

FM approves FireDos foam proportioners for increased viscosity capabilities

FireDos has received FM approval for its variable viscosity foam proportioners, confirming their capability to admix high-viscosity foam concentrates at a consistent proportioning rate.

The company reports that the newly optimised proportioning systems can handle foam agents with higher viscosities than previous models.

FM approval classifies the technology as a “Variable Viscosity Foam Proportioner,” meaning it can accurately mix foam concentrate and water across a range of viscosities within tested limits.

According to FireDos, this classification ensures the proportioners can be used with both Newtonian and pseudoplastic foam agents while maintaining proportioning accuracy across tested flow rates and back pressures.

Higher certified viscosity values compared to previous models

Recent FM test results indicate that the new FireDos proportioners exceed the viscosity capabilities of both prior models and FM-certified competitor products within the same category.

According to FireDos, the certified viscosity of its proportioners is, on average, 12% higher than comparable systems, as of December 2024.

This improvement is intended to provide greater flexibility in handling various foam concentrates while maintaining reliable performance.

Maintaining low pressure loss across operating ranges

FireDos states that one of the challenges of high-viscosity foam concentrates is the increased pressure loss experienced by many proportioning systems.

However, the FM test results indicate that FireDos proportioners maintain a low pressure loss even at maximum extinguishing water flow rates.

This characteristic is intended to improve system efficiency and ensure that high-viscosity foam agents can be proportioned effectively without excessive pressure drop.

FM-certified flow meter as an optional accessory

The FireDos electromagnetic flow meter, designed to measure foam agent volume flow, has also received FM approval.

FireDos reports that when installed on the return line, the flow meter provides accurate measurements of extinguishing agent flow and allows the proportioning rate to be determined.

According to FM, the calibrated tachometer, offered as an optional component, can estimate extinguishing water volume flow within a range of 20% to 100% of the maximum flow rate.

FireDos foam proportioners achieve FM approval for high-viscosity foam concentrates: Summary

FireDos has secured FM approval for its variable viscosity foam proportioners, confirming their ability to admix high-viscosity foam concentrates.

The approval confirms that these proportioners can mix both Newtonian and pseudoplastic foam agents at a constant proportioning rate across tested flow rates and back pressures.

FM test results indicate that the FireDos proportioners achieve viscosity values that are 12% higher than previous models and competitor products in the same category.

The proportioners are designed to maintain low pressure loss even at maximum extinguishing water flow.

Additionally, FireDos’ electromagnetic flow meter, which measures foam agent volume flow, has received FM certification.

The optional calibrated tachometer can estimate extinguishing water volume flow within a range of 20% to 100% of the maximum flow rate.

UK firefighting foam regulations: PFOA and PFOS ban set for 2025

Government confirms 2025 ban on PFOA and PFOS in firefighting foams

OHEAP has welcomed the UK government’s decision to implement a complete ban on Perfluorooctanoic Acid (PFOA) in firefighting foams, which will take effect from 4 July 2025.

According to OHEAP, Perfluorooctane Sulfonate (PFOS) was banned in foam extinguishers more than ten years ago, and the use of PFOA has been largely phased out.

The upcoming ban aligns with international efforts to remove persistent organic pollutants that pose environmental and health risks.

OHEAP has raised concerns about industry misconceptions regarding the ban, noting that some organisations have begun removing existing fluorine-based extinguishers unnecessarily.

The company advises that while PFOA will be prohibited, there are currently no legal restrictions on C6 fluorotelomer-based extinguishers.

Industry impact and transition to fluorine-free alternatives

The ban is expected to shape future fire safety practices, requiring businesses to adopt fluorine-free alternatives.

The Fire Industry Association (FIA) has recommended that organisations start considering a transition to these alternatives to reduce environmental impact.

Under the new regulations, any product containing PFOS, PFOA, or PFHxS above the prescribed limits will be prohibited.

However, there is no immediate requirement to remove existing fluorinated extinguishers that do not contain these banned substances.

Nicholas Heap, Managing Director of OHEAP Fire and Security, said: “We want to make sure every person responsible for fire safety understands what is banned and when.

“There are so many mistruths out there, that people are making decisions about fire safety that they may not need to.

“The truth is that the ban in July 2025 will not affect many units at all as the chemical that is being banned hasn’t been used for more than 10 years.

“But the ban is still an important step into creating a greener, safer, more sustainable environment.”

Future regulations on PFAS in fire extinguishers

The UK government is reviewing further legislation to restrict the use of Perfluoroalkyl and Polyfluoroalkyl Substances (PFAS) in firefighting foams.

A full ban on PFAS-containing extinguishers is not expected before 2026, with a phase-out period extending towards 2030.

OHEAP has advised that while the PFOA ban is imminent, organisations should remain aware of potential future restrictions.

The FIA continues to provide updates on the regulatory landscape and recommendations for businesses preparing for a transition.

Heap added: “At OHEAP, we fully support this initiative and are committed to helping our clients navigate this transition smoothly.

“As an industry, we must prioritise environmental responsibility without compromising safety standards, and whilst a ban on PFAS is still a way off yet, our team is actively implementing fluorine-free firefighting solutions across our services.”

Consultation underway on broader PFAS restrictions

A UK government consultation is ongoing to assess the impact of banning PFAS in firefighting applications.

Any resulting legal restrictions are not expected before 2026.

OHEAP advised fire safety professionals to stay informed and monitor official guidance from regulatory bodies.

More information on the use of PFAS in firefighting can be found on the FIA website.

UK firefighting foam regulations: PFOA and PFOS ban set for 2025 – Summary

OHEAP has welcomed the UK government’s decision to ban Perfluorooctanoic Acid (PFOA) in firefighting foams from 4 July 2025.

PFOS was already prohibited in foam extinguishers more than a decade ago.

The new restrictions align with global efforts to eliminate harmful pollutants.

OHEAP has warned against industry misinterpretations, stating that there is no immediate need to remove fluorine-based fire extinguishers unless they contain the banned substances.

The Fire Industry Association (FIA) has encouraged organisations to start transitioning to fluorine-free alternatives.

A broader PFAS ban is under review, with legislation expected by 2026 and a potential phase-out period lasting until 2030.

The UK government is conducting a consultation on the future of PFAS use in firefighting.

OHEAP and industry bodies continue to monitor regulatory developments, providing guidance to businesses on compliance and best practices.

Fire safety considerations for data centres: Euralarm releases new guidance

Euralarm publishes fire protection guidance for data centres

Euralarm has released a new guidance document on fire protection for data centres, detailing factors to consider and available solutions.

The document outlines how fire protection requirements vary by client and region and offers insights to help stakeholders choose the most appropriate measures.

It provides information on different fire suppression technologies, including sprinklers, water mist, gaseous systems, oxygen reduction systems, and condensed aerosols.

The guidance is aimed at data centre designers, operators, and fire protection professionals seeking clarity on how different solutions impact fire safety.

Key considerations for fire safety in data centres

The document explains that fire protection strategies must be tailored to individual data centres due to variations in infrastructure, risk factors, and operational priorities.

It highlights that while regulatory standards provide a baseline, they may not fully address the specific needs of data centres, where high-value equipment and critical data storage require enhanced protection measures.

Euralarm’s guidance discusses how fire suppression technologies differ in their suitability depending on the stage of a fire incident.

Understanding fire suppression technologies

The guidance provides an overview of several fire suppression options and their effectiveness in different scenarios.

Sprinkler and water mist systems are discussed for their ability to control fires quickly, while gaseous systems and oxygen reduction solutions are considered for their impact on sensitive electronic equipment.

Condensed aerosol systems are also reviewed as an alternative approach.

The document aims to help professionals assess these technologies beyond regulatory compliance, considering factors such as business continuity and asset protection.

Guidance for industry professionals

The publication is designed for professionals who already understand the importance of fire protection and are evaluating the implications of different solutions.

Rather than prescribing a single approach, the guidance helps stakeholders assess which fire protection methods align with their specific data centre requirements.

It also addresses potential challenges when selecting a particular approach over another.

Copies of the guidance document can be accessed through Euralarm’s website: https://www.euralarm.org/resource/guideline-on-selection-of-fire-protection-systems-for-data-centers-pdf.html.

Fire safety considerations for data centres: Summary

Euralarm has released a guidance document outlining fire protection strategies for data centres.

The document details key considerations for fire safety and how different suppression technologies apply to various fire stages.

It explains that fire protection needs vary by client and region, and professionals must assess solutions beyond basic compliance.

It reviews technologies such as sprinklers, water mist, gaseous systems, oxygen reduction, and condensed aerosols.

The guidance is intended for data centre designers, operators, and fire protection professionals.

It does not specify a single solution but helps stakeholders determine the most suitable approach for their circumstances.

The document is available for download on Euralarm’s website.

The phase-out of PFAS in firefighting: Britannia Fire explores what it means for fire safety standards

Andy Spence, Joint Managing Director of Britannia Fire, discusses the industry’s shift to sustainable fire safety, including composite extinguishers and PFAS-free alternatives

Innovations in fire extinguisher design and technology mean we now have greener alternatives that considerably reduce carbon emissions and improve sustainability.

Easier to maintain, they also provide long term cost-savings for the customer.

So why has the fire protection industry been slow to embrace this change?

Fire extinguishers play a vital role in fire protection.

They are essential for suppressing fire in its early stages and can help to prevent catastrophic damage and harm.

But there is so much more we can do as an industry to make their manufacture, supply and maintenance more environmentally friendly.

The sector has been slow to change course but is waking up to the fact that change is inevitable and that viable solutions are now readily available.

The future is composite

Traditional, steel fire extinguishers last around 10 years, but are prone to corrosion and must be serviced annually to ensure they remain fit for purpose.

We first started manufacturing steel fire extinguishers at our Britannia Fire factory in Norfolk back in 1970 and built a highly successful and respected brand around these early models and successive versions.

But by embracing the introduction of new materials and technology, our founder Roger Carr, saw an opportunity to create a new model out of composite material that would be corrosion resistant and lightweight, with no annual service required.

Launched in 2010, the P50 was the first composite fire extinguisher of its kind and has since been sold around the globe, with demand continuing to outstrip supply.

Last year, we took the significant step to discontinue the production of our original metal ranges altogether to focus solely on increasing supply of our P50 range.

It’s a superior product which provides a win-win for the customer and the environment.

Thanks to their anti-corrosion properties, composite fire extinguishers like the P50 can last 20 years: typically twice as long as metal varieties.

They don’t need to be serviced by a technician every year.

Instead, they just need simple, regular checks from a designated competent person, which can be done with the help of our dedicated App.

After 10 years, factory refurbishment will extend the life of a P50 for another 10 years.

As well as saving time and money on annual services and replacements, these extinguishers are much better for the environment, with a reduction in wastage and in carbon emissions around servicing.

Despite these innovations and the success of the P50, it’s still the case that the vast majority of fire extinguishers currently in use across the UK and Europe are traditional metal designs.

Most will have been manufactured in China and shipped thousands of miles before reaching the customer.

They are sold cheaply but on annual servicing contracts, which bring in an attractive revenue many suppliers are reluctant to give up.

An end to PFAS chemicals

AFFF fire extinguishers containing PFAS are the most common type of foam extinguishers.

These harmful ‘forever chemicals’ don’t break down in the environment, can disrupt biological processes and are toxic to some species.

Measures are being taken across the globe to reduce, restrict and phase out the use of PFAS, such as the UN’s Stockholm Convention, which is a global treaty to protect human health and the environment from persistent organic pollutants.

Europe is taking the most progressive approach to regulation with a ban on firefighting foams containing PFAS due to come into force by 2030 and the UK is expected to follow this lead.

Britannia Fire is proud to be leading the way in championing environmentally friendly fire safety products.

In 2023, we launched our PFAS-free foam P50 model, which works effectively without the use of harmful fluoro chemicals.

Many companies and organisations are ahead of the game and choosing PFAS free models to help reduce their environmental impact.

UK government regulation is anticipated later this year, which will prohibit the manufacture and sale of fire extinguishers containing PFAS.

This is absolutely the right course of action, ensuring that as an industry we are all playing our part in supplying and promoting more sustainable products.

Multi-use extinguishers

Recent technologies and innovation have also helped to simplify the various types of fire extinguishers required and their applications.

This reduces the number of fire extinguishers required in certain locations, with a positive impact on both the environment and the customer’s bottom line.

Historically, customers would be required to install a combination of water-based, dry powder, or CO2 fire extinguishers depending on whether a fire in that location is likely to involve wood and textiles, electrical equipment or cooking oils.

Frequently, two or more models were installed side by side, with instructions for the user on which to operate.

Thankfully, a number of multipurpose options are now available, making installation and use much more straightforward.

Our P50 Water Mist extinguisher is safe to use on carbonaceous (Class A) fires, as well as electrical fires, so it’s perfect for offices, hotels, shops, churches and rental properties, for example.

It contains de-ionised water, which means it leaves almost no residue after use.

Our P50 PFAS-Free Foam model goes even further, extinguishing Class A (carbonaceous) fires, Class B (flammable liquids) fires, Class F (fats and oils) and has also passed the EN3 test for use on live electrical equipment up to 1000V.

This is suitable for garages, farms, chemical storage and large event venues, for example.

Heathrow Airport recently replaced its multiple sets of two extinguishers with P50 Foam multi-purpose units as part of its sustainability strategy.

These have saved the airport more than £1m and will need minimal servicing for a decade.

Providing one multi-purpose option is also much more user-friendly, particularly in a busy airport with worldwide travellers speaking many different languages!

Despite these innovations, too many companies and organisations are still wasting time and money on unnecessary annual servicing and multiple units.

Some guidelines, even those issued by the British Standards Institute, have been slow to keep pace with innovations and still recommend outdated servicing practices.

However, we can assure our customers that Britannia Fire P50 extinguishers conform to Pressure Equipment Regulations and European standards, they are BS EN3-7 certified and have a BSI Kitemark to show they are safe and legal to use in the UK.

Responsible disposal

At Britannia Fire, we’ve always taken our environmental responsibilities seriously and are committed to doing all we can to minimise our carbon footprint, including investing in solar panels for our production plants as part of our mission to achieve carbon net zero manufacturing.

We’re also committed to helping our customers with their own sustainability targets.

Our P50 composite range is easily recyclable.

Part of our offer also includes a recycling and scrappage service, helping customers dispose of their obsolete metal and PFAS-containing extinguishers in a responsible way.

We take the old units off their hands and recycle what we can, disposing of the remainder responsibly.

Encouraging change

Clearly, it’s time for the industry to fully embrace innovations that can make the fire extinguisher market more sustainable. PFAS regulations will help expediate this.

In addition, we need to raise awareness amongst those responsible for fire safety, providing them with the right training, tools and guidance to source the most suitable equipment for their fire safety needs whilst minimising impact on the environment.

This article was originally published in the February 2025 issue of International Fire & Safety Journal – to read your FREE digital copy, click here.

These equipment failures are putting cargo ships at risk, says Survitec

Survitec reveals the most common equipment and servicing failures found on commercial cargo ships—and why addressing them is more urgent than ever

Fires are a common occurrence in commercial shipping, and they occur almost weekly in the container shipping segment.

The latest figures from insurer Allianz highlight the extent of the problem, as while the number of ships lost across the industry is now at a record low, there has still been 55 total losses caused by fires in the past five years. Over 200 fire incidents were reported in 2023 alone.

Industry analysts have pointed to the use of new alternative fuels, the carriage of lithium-ion battery cargoes, and a reported increase in mis-declared dangerous cargoes, especially hazardous containerised cargoes, as being contributing factors.

Metkel Yohannes, Director of Service and Rental Solutions at Survitec, believes that inadequate fire safety inspections are a less obvious but just as important underlying cause.

“The economic downturn and the emphasis on cost reduction post-Covid have had a negative impact on fire safety,” says Yohannes. “We know from experience that some ship owners and operators are maintaining and inspecting safety equipment themselves as a way of making their budgets stretch further. Crew training is also being negatively impacted. We’re finding basic errors and oversights that do not become apparent until either the ship fails an inspection and is detained – or there is a fire.”

Small oversights, big problems: Lessons from inspections

As an Original Equipment Manufacturer (OEM) and fire safety expert, Survitec is often called upon to investigate problems or faults with fire safety equipment. Their specialist fire safety technicians routinely find deficiencies in the routine maintenance and testing of safety-critical equipment that then impact system performance, even leading to equipment failure in some cases.

For instance, Survitec was called out to a vessel after an engine room fire. The crew had managed to extinguish the fire but suspected there was a fault with their high expansion foam firefighting system. The cause of the fault was a blockage in the system. The crew had installed a new foam pump and forgotten to remove one of the protective caps.

Survitec often finds issues that indicate insufficient training or a lack of expertise. For example, the foam proportioner on a high expansion foam system should be removed and inspected regularly, yet Survitec will often find membranes are damaged or broken, which impacts the delivery of foam to the system.

Another common mistake is to mix different types or brands of firefighting foam. When this happens, the foam becomes contaminated. In one inspection of the foam tank for a helideck system, Survitec found the foam had changed from a liquid state to an almost sponge-like, gelatinous state.

The system was therefore inoperable and required major work – and considerable expense – to remove the contaminated foam, deep-clean the system, and recharge it. Fortunately, in this instance, the fault was discovered and rectified before the ship had cause to use the system, because the system would certainly have failed had there been a fire.

The backbone of safety: Routine equipment inspections

Rigorous fire safety inspections of fixed firefighting systems play a vital role in ensuring the safety of a vessel and its crew. Survitec reports that many, if not most, of the inspections they perform reveal issues that require immediate corrective measures.

Furthermore, issues related to poor maintenance or superficial inspections will generally be found across multiple systems, not just one system. For example, valves that have corroded and do not open or close properly can be a common issue across all systems.

This erosion of standards correlates directly with a troubling rise in fire safety-related deficiencies recorded on board ships in recent years. The resulting increase in ship detentions following port state control inspections underscores the real-world consequences of these lapses in safety practices.

Yohannes says: “We clearly see evidence of a slip in standards when it comes to basic safety practices. Approval stamps are being applied to fire systems and appliances that would or should not pass inspection.

“There should be more oversight, more governance, and better quality control procedures. Shipowners and managers need accredited service partners they can trust.”

Technical Sales Manager at Survitec, Jan-Oskar Lid, confirms that while paperwork might indicate that a service inspection has been carried out, the levels of wear and tear on the equipment can sometimes suggest otherwise. “Some issues are self-evident – for example, the rust on a valve or a fire extinguisher is clear to see, but other issues are less obvious and can have catastrophic consequences.”

Lid quotes an example. In early 2024 a bulk carrier left port, having just completed a fire safety inspection and received full certification from a local service provider. Shortly after leaving port, a fire started in the engine room.

The crew released the CO2 system, which had just been inspected and approved, yet more than half the cylinders failed to activate. The fire was eventually extinguished but there was significant damage to the vessel, with costs of US$2-3 million for off-hire and repairs.

Lid also points out that this is not just an issue for older vessels. Inspections are just as essential for new vessels, to verify that new equipment is fully operational. For example, a CO2 system will be disabled, for safety, while a ship remains in the shipyard.

It is not uncommon for Survitec service technicians to discover that a new ship has been sailing without a functioning CO2 firefighting system, because the pilot hoses for the main control valves and release cabinets have not yet been reconnected, and safety pins are still in place.

Procuring the right parts

The procurement of spare and replacement parts can also be a challenge for ship owners and operators. Without the relevant training or expertise, it can be difficult for purchasing personnel to recognise low-quality or counterfeit parts, or even the “right” part.

High pressure hoses for CO2 fire extinguishing systems are a key example. Hoses approved for use on a high-pressure CO2 system can be distinguished by the pin pricks that run along the length of the hose, and by the Type Approval Test certificate details which will be stamped into the crimping neck, as mandated by the class societies. Poor-quality or counterfeit parts will not have these features, but the purchaser needs to know what to look for.

Revised guidelines for the maintenance and inspection of CO2 systems were published in 2021 (MSC 1318 Rev.1), to help protect seafarers against the dangers of leaking gas. Yet, safety inspections often uncover serious issues.

Hydraulic hoses are often mistaken for high-pressure hoses and improperly used in CO2 systems, risking failure under pressure. Deviations from datasheet specifications, ill-fitting hoses forced with copper washers, over-crimping, blocked or peeling hoses, and the use of multiple connections—all contrary to best practices—highlight lapses in inspection and maintenance routines.

Evaluating service provider credentials

Survey reports from Survitec’s global network of service engineers indicate declining crew competencies and skills in this respect, possibly due in part to the seafarer shortage but also the challenge of keeping on top of the various rules and regulations.

As Yohannes explains: “Service requirements are complex and varied. The International Maritime Organisation’s (IMO) MSC 1432. MSC 1432 is effectively a baseline for servicing. The vessel class and flag may specify additional or stricter requirements, and the Original Equipment Manufacturer (OEM) may have their own requirements too.

“Requirements will also vary depending on the service interval. Specialist fire safety service providers therefore invest heavily in training to provide for this.”

However, it is not always easy to identify the reputable providers. There can be a wide disparity in service quality between service providers. As Lid explains: “Cost can be the determining factor when selecting a service provider, especially when different providers boast the same approvals. Some providers may compete by undercutting their competitors, but they can often only do this by cutting corners.

“They may not invest in training to the same degree, so their technicians may lack knowledge of the different rules and regulations or the requirements for all the different brands.

“They may not even have all the equipment required to complete the inspection beyond a cursory visual check. In extreme cases, certificates may even be issued without an engineer setting foot onboard the vessel.”

Finding a provider you can trust

In its 2024 white paper Why are the fires not going out? Survitec highlights the importance of proactive measures and robust maintenance practices to ensure fire safety systems operate effectively in critical situations, also offering practical advice on what shipping companies should look for in their fire safety providers, and how to assess competency.

As Yohannes maintains, specialist fire safety service providers can play a crucial role in supporting proper and effective maintenance and testing on board ship, however trust is key. “Currently, there are no quality benchmarks, and no training standards in place to help determine competencies,” says Yohannes.

“As an industry, we should review current practices and decide: do we need more oversight, more governance, better quality control procedures around servicing and approvals?

“Ship owners and operators need accredited service partners they can trust. Anything less is not just a false economy, it’s potentially dangerous.”

Why Are the Fires Not Going Out?

Survitec’s recent white paper, Why Are the Fires Not Going Out? explores these key considerations in greater detail, offering practical advice on evaluating providers’ expertise, compliance with safety standards, and ability to deliver effective, long-term solutions. Download your free copy at survitecgroup.com

This article was originally published in the February 2025 issue of International Fire & Safety Journal – to read your FREE digital copy, click here.