Britannia Fire launches AVD extinguisher and blanket for battery fires

Britannia Fire adds AVD products for battery fires

Britannia Fire has launched a 6-litre Aqueous Vermiculite Dispersion (AVD) fire extinguisher and an AVD fire blanket for lithium-ion battery fires.

Britannia Fire said the products were developed in response to a rise in UK incidents involving lithium-ion batteries in electric vehicles, e-bikes and scooters, consumer electronics and communication systems.

The new AVD extinguisher is the latest addition to the company’s P50 range.

It uses a water-based extinguishing fluid mixed with vermiculite particles for lithium-ion battery fires.

When discharged onto a fire, the water cools the affected area and the vermiculite forms an insulating layer to smother flames and help prevent reignition.

The blanket is made from high-silica glass fibres with flame and heat-deflecting surface coatings and an oxidised base fabric.

It is designed to be placed over a burning battery-powered device to help contain flames, block heat radiation and limit fire spread.

The P50 AVD can then be discharged under the blanket edge to cool and extinguish the fire.

Product details and intended use

Britannia Fire said the new products are intended for areas with charging stations or groups of battery-powered devices.

Andy Spence, Managing Director of Britannia Fire, said: “It’s concerning that fires involving lithium-ion batteries are on the rise.

“These fires are by nature more explosive and intense than typical fires and can be particularly difficult to manage.

“Our new P50 AVD fire extinguisher and AVD fire blankets provide a powerful, complementary solution for tackling these fires.

“The blanket isolates and contains the incident, helping to prevent escalation, while the P50 AVD rapidly cools and suppresses the flames with precision and safety.”

Spence added: “Many of us rely on lithium-ion powered devices every day, both at home and at work, which is why having the right fire protection in the right places is essential.

“Our new AVD products are particularly suitable for areas with charging stations or clusters of e-battery devices, whether that’s car parks, warehouses, work spaces, bike storage areas or IT equipment rooms.”

The AVD fire blankets are available in three sizes for electronics, e-bikes or scooters, and electric cars.

Britannia Fire said the P50 AVD is fully recyclable, has a 20 year life span and comes with a 10 year guarantee.

Simple checks can be carried out by a responsible person, with record-keeping logged through the Britannia Fire App.

The future of wildfire technology

The world is making significant investments to rise to the challenge of managing and responding to deadly wildfires. Not only has the US federal government expanded budgets to prevent and defend against wildfires, but it is also evaluating the organisation of its federal wildfire agencies.

Likewise, state and local governments and utility companies are increasing their investments in wildfire prevention, mitigation and suppression.

IDGA’s Wildfire Technology Summit, taking place on April 21-22, 2026, at the Kona Kai Hotel in San Diego, CA, convenes senior decision-makers from across the wildfire ecosystem to tackle real-world challenges, accelerate modernisation efforts and shape the next phase of wildfire resilience, prevention, and suppression.

IDGA’s Wildfire Technology Summit agenda

Here’s a sneak peek at what you’ll find in the agenda:

✔️ Timely and high-priority sessions, such as the role of the brand-new U.S. Wildland Fire Service, advancing wildfire capabilities, AI and its role in wildfire intelligence, management strategies, and more!

✔️ Recently confirmed speakers, including Dirk Giles and Jessica Haas from the U.S. Forest Service, Sean Triplett and Mike Falkowski from Earth Fire Alliance and Brian D’Agostino from San Diego Gas and Electric, alongside many new additions

✔️ Networking opportunities with more than 300 senior wildfire experts, all focused on exploring solutions for the prediction, prevention, detection, suppression, and mitigation of destructive wildland fires

Download the agenda to find out more.

SPP Pumps secures Manufacturer of the Year for fourth year

SPP Pumps award win at 2026 ceremony

SPP Pumps has won Manufacturer of the Year at the 2026 Pump Industry Awards, marking its fourth consecutive win at the event.

The award recognises manufacturers in the pump sector, with the judges citing recognition from contractors and customers in areas including product delivery, technical expertise and after-sales service.

SPP Pumps said more than 60% of its sales are custom-engineered made-to-order products.

The company also said 70% of its products are exported to global markets.

SPP Pumps cites manufacturing and service work

Robert Tichband, COO, SPP Pumps UK, said: “This award is a meaningful representation of our commitment to industry excellence and manufacturing expertise. With a robust team of highly skilled and dedicated people, we pride ourselves on the quality, reliability and service provided to our customers around the world,”

The company said its products are installed across applications including flood risk reduction, fire protection, water management and chemical process pumping.

It said the award also reflects the role of its after-sales service division, which supports installed pumps through field service, planned maintenance, spares supply and regional repair centres.

Project example included in award announcement

SPP Pumps also referred to a flood risk project in comments from Yorkshire & Humber Drainage Boards.

Russ Towse, Director of Operations, Yorkshire & Humber Drainage Boards, said: “The pumps have become an asset to our communities.”

The announcement states that the latest award continues a run of four consecutive wins for the manufacturer.

Stability versus variability: Fomtec explores polymer performance trade-offs

Even Ottesen, International Sales Manager, MENA Region at Fomtec, discusses polymer stability, testing validation and implications for industrial foam system reliability

In January, Fomtec exhibited at the Dubai Intersec Show for the 12th time.

The event brings together manufacturers, consultants, contractors and end users from across the Middle East and North Africa, a region with extensive petrochemical infrastructure and transport operations that rely on foam systems.

Fomtec used the exhibition to introduce Enviro 3 x 3 NEO, an alcohol resistant synthetic fluorine free foam concentrate developed through extensive testing and designed to meet international performance standards while maintaining stability over time.

Why is Dubai Intersec important to Fomtec’s marketing?

The Dubai Intersec Show is one of several exhibitions and conferences we support in the region, and it was the first we attended regularly.

The MENA region, with its large oil reserves and downstream petrochemical business, represents one of the largest markets for firefighting foam and foam systems, and the industrial sector is supported by a mature transport sector which is also a major user for firefighting foam.

Dubai has established itself as a crossroads for trade, and the Dubai Intersec Show and Saudi Intersec Show are the largest and best attended shows in the region, allowing us to promote products to end users, consultants, contractors and potential partners efficiently.

Our regional business partners all attend the Dubai Show, so we run training programmes alongside the show and set aside time for business meetings with partners.

What can you tell us about Enviro 3 x 3 NEO?

After more than three years and nearly 500 fire tests, we have brought to market an alcohol resistant SFFF with the highest ratings under EN 1568-3 and -4 with both fresh and saltwater.

Why should customers be excited about Enviro NEO?

There are products on the market with the same 1A:1A performance according to EN 1568-3 and -4, but they are based on what we call hidden gum, or partially hydrated polymers.

Enviro NEO, like all Fomtec SFFF products, is formulated with fully hydrated polymers.

Achieving the fire performance figures without using partially hydrated polymers means Enviro NEO offers performance and long term stability.

Why avoid hidden gum technology despite strong test performance?

The use of hidden gum technology leads to excellent fire performance in the test laboratory, and for some existing systems, especially mobile apparatus, pumping and proportioning equipment may have been designed to handle foam concentrates of a defined viscosity.

We believe viscosity is an engineering issue, and when the system is designed or pumping and proportioning equipment is specified, the greater viscosities found with fully hydrated polymer technology can be engineered to be effective.

When designing an effective system, a steady and known viscosity is desirable.

Variable viscosity with the foam concentrate in bulk storage, and the impact on shear and friction loss in pipe runs over time, is the real concern.

If you cannot guarantee the correct proportioning and application density of the finished foam when it is needed, this risk was considered too great to proceed with hidden gum technology.

Are there differences between laboratory approvals and field performance?

With hidden gum technology there is an inherent instability issue with the foam concentrate.

Partially hydrated polymers are held in suspension but want to hydrate and swell to their fully hydrated state.

We do not have quantifiable data addressing the impact of temperature fluctuations or evaporation cycles in relation to partially hydrated polymers.

We ran tests on competitors’ products to measure viscosity versus water ingress, and with four products tested between 15% and 40% water ingress, viscosity increased more than 300%.

The same test on Enviro NEO saw approximately a 20% reduction in viscosity.

Why launch Enviro NEO in Dubai specifically?

With the temperatures and temperature fluctuations in many countries in the MENA region, we believe the stability issues with hidden gum technology are likely to be a greater risk for end users in this region.

By launching in Dubai, we addressed an audience familiar with polymer based foams and highlighted our position on the stability of NEO and instability of hidden gum products.

How can end users identify partially hydrated polymer formulations?

Neither the technical data sheet nor the safety data sheet is required to provide data on the inclusion of partially hydrated polymers, so end users need to ask the manufacturer or supplier directly.

We demonstrated a simple method at the launch involving taking approximately 100 ml of foam concentrate, adding approximately 15 ml of water and stirring.

If the mixture becomes more viscous within a few minutes, the concentrate is hidden gum based.

What approvals and testing has Enviro NEO completed?

We have EN 1568-1 and -2 on heptane, and apart from heptane on EN 1568-3 we also tested Jet A-1 and hexane with fresh and saltwater.

We repeated all hydrocarbon fuel fires with a gentle type II application, which is not required under EN 1568-3 if you achieve a 1A rating with forceful application.

To the acetone and IPA required for EN 1568-4, we added methanol, ethanol, butyl acetate, ethyl acetate, acetic acid and MEK.

We tested and approved to ICAO Level B on Jet A1 and completed testing required for UL 162 on heptane, acetone and IPA, and the listing went online this week.

Third party witness testing was carried out to IMO 1312 and LASTFIRE protocols on heptane and ethanol.

We are looking to add further fuels and conduct larger scale fires in the first six months of 2026.

We view NEO as an evolution of the Enviro programme.

We are achieving the highest levels of fire performance while offering stability and real world deployability when the foam is required.

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

Britannia Fire appoints health and safety manager in Norfolk expansion

Britannia Fire appoints Phil Hodge

Britannia Fire has appointed Phil Hodge as Health and Safety Manager as it expands its manufacturing facility in Norfolk, UK, and responds to rising demand for its composite fire extinguishers.

Britannia Fire announced that Hodge will oversee health, safety and compliance, and support the business as it works towards ISO 14001 accreditation and its environmental targets.

He joins the company with experience in manufacturing environments, including work on ISO systems and sustainability measures aimed at reducing waste and carbon emissions.

Hodge previously spent 12 years as an explosives and weapons technician in the Royal Air Force (RAF), where he oversaw health and safety compliance in what the company described as an extremely hazardous environment.

He later worked at MSI-Defence Systems, where Britannia Fire said he helped build a safety culture across two sites with more than 200 employees and supported continuous improvement.

Britannia Fire links role to environmental targets

In the same announcement, Britannia Fire said Hodge will also support the business in preparing for a potential ban on PFAS and in managing disposal requirements for those chemicals.

Hodge said: “I have worked for 20 years in some of the most challenging and hazardous environments, and I bring a huge amount of knowledge and experience to Britannia Fire at a time of rapid business expansion and transformation.

“As well as ensuring operational safety and compliance, I will be implementing IS0 14001 systems across the business and building on the great work the team has already done to reduce its environmental impact.

“With a PFAS ban expected to be announced early next year, I will also ensure that these ‘forever chemicals’ are disposed of correctly and responsibly.”

Managing Director Andy Spence said: “We are thrilled to welcome Phil to Britannia at an exciting time for the business when we are rapidly expanding and demand is increasing.

“His expertise and commitment to a safe and healthy workplace will be invaluable as we continue to prioritise sustainability and the well-being of our team and uphold the highest safety standards.

“He joins our business as we work towards ISO 14001 accreditation and prepare for a potential ban on PFAS.”

Temperature tolerance: How Dafo Fomtec’s Enviro NEO performs across fuel types

The development of Dafo Fomtec Enviro NEO’s and where it fits high-hazard industrial response planning

In January 2026, Dafo Fomtec launched Enviro NEO, a synthetic fluorine-free firefighting foam developed for petrochemical, oil and gas, marine and other high-hazard industries.

The product forms part of the company’s Enviro Programme, which has focused on fluorine-free foam development since 2010.

Development through full-scale testing

Enviro NEO is the result of thousands of full-scale fire tests carried out under the Enviro Programme.

The testing programme evaluated performance across a range of fuel types, water qualities and discharge systems.

According to Fomtec, the aim was to deliver consistent extinguishing capability in demanding industrial environments such as offshore platforms, tank farms and marine terminals.

The product was validated against recognised international standards including EN 1568, UL 162, ICAO, IMO and LASTFIRE.

Testing covered both hydrocarbon and polar solvent fuels under varying application conditions.

Fully hydrated polymer technology

Enviro NEO uses 100% hydrated polymers in its formulation.

This approach removes the need for partially hydrated or unhydrated polymers, which can lead to viscosity changes if water enters the concentrate during storage or handling.

In some fluorine-free formulations, partially hydrated polymers may thicken rapidly when exposed to additional water.

This can result in increased viscosity, separation or gum formation.

By contrast, Enviro NEO is designed to maintain stable viscosity and reliable proportioning throughout discharge.

The objective is to support predictable foam generation from the start of application to final extinguishment.

Performance profile

Enviro 3×3 NEO is a sixth-generation alcohol-resistant synthetic fluorine-free foam concentrate within the Enviro NEO range.

It contains no intentionally added fluorinated surfactants or polymers.

The product is designed for use at a 3% proportioning rate on both hydrocarbon and polar solvent fuel fires.

It has demonstrated performance on fuels including heptane, Jet A-1, hexane, acetone, ethanol, methanol, isopropyl alcohol, methyl ethyl ketone and ethyl and butyl acetate.

It is also suitable for severe foam-destroying liquids such as MTBE.

The suppression mechanism is based on the formation of a foam blanket that blocks oxygen from the fuel surface while the water content cools the fuel and reduces vapour release.

When applied to polar solvents, a polymeric membrane forms between the fuel and the foam blanket, enabling extinguishment and helping to prevent re-ignition.

Enviro 3×3 NEO can be applied as low or medium expansion foam in mobile firefighting operations or in fixed systems designed to recommended application rates and discharge durations.

It can also be used on Class A fires involving wood, paper and textiles at induction rates between 0.3% and 1%.

Technical characteristics and storage

Enviro 3×3 NEO is suitable for use with fresh water, brackish water and seawater, making it appropriate for coastal, offshore and marine installations.

Typical physical data includes a clear yellowish liquid appearance, specific gravity of 1.06 ± 0.02 g/ml at 20°C, pseudoplastic viscosity and pH between 6.5 and 8.5.

The freezing point is -14.6°C and the recommended storage temperature range is -14°C to 55°C.

Surface tension is ≤ 30.0 mN/m.

When stored in original unopened packaging under appropriate conditions, the product is expected to achieve a shelf life in excess of 10 years in temperate climates.

Shelf life depends on storage temperature and conditions.

Find out more about Envrio NEW here: https://www.fomtec.com/enviro-neo/

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

Perimeter Solutions secures FM approval for fluorine-free sprinkler foam

Perimeter Solutions foam approved for fixed systems

Perimeter Solutions has secured FM 5130 approval for SOLBERG EVOLUTION 3% Synthetic Fluorine-Free Foam (SFFF), a Newtonian formulation for aircraft rescue and firefighting (ARFF) and sprinkler applications.

The company said the approval makes SOLBERG EVOLUTION 3% SFFF the first fluorine-free foam on the US Department of Defense’s Qualified Products List (QPL) to also hold FM approval for fixed sprinkler systems.

The approval applies to aircraft hangars, fuel storage facilities and other fixed fire protection systems.

The foam has water-like viscosity and is compatible with standard sprinkler hardware.

It is designed for hydrocarbon fuels including gasoline and kerosene-based fuels such as Jet A and Jet A-1.

The product has demonstrated performance through aspirated and non-aspirated standard sprinkler heads to extinguish and secure Class B hydrocarbon fuel fires.

Zachary Brackin, Manager – Business Development and Southern Region Sales Manager at Perimeter Solutions, said: “Aviation fire protection is evolving, and so is the chemistry behind it.

“This advanced formulation delivers effective fire suppression that meets the strict performance and compliance standards set by FM, UL, ICAO, FAA and the US Department of Defense, helping customers transition to fluorine-free foam that is compatible with their existing fire protection infrastructure.”

Technical approvals and product details

SOLBERG EVOLUTION 3% SFFF has UL 162 and FM 5130 fixed-system approvals with SOLBERG bladder tanks, foam chambers and associated system hardware, including non-aspirated sprinkler heads.

It is designed to meet National Fire Protection Association (NFPA) requirements for hydrocarbon fuel and critical asset protection, including aircraft hangars, JUHI facilities and fuel storage operations.

The product is MIL-SPEC-approved and holds International Civil Aviation Organization (ICAO) Level B certification for ARFF performance, meeting Federal Aviation Administration (FAA) and ICAO requirements.

It has been tested in accordance with Boeing Specification Support Standard (BSS 7432) for evaluation of airplane maintenance materials.

The formulation contains no intentionally added per- or polyfluoroalkyl substances (PFAS).

It was developed without silicone or siloxane chemistries, biopolymers or thickening agents and is designed to be biodegradable with no persistent, bioaccumulative and toxic (PBT) profile.

James Perriss, Director of Product Management – Global Suppressants at Perimeter Solutions, said: “SOLBERG Evolution builds on the success of SOLBERG 3% MIL-SPEC SFFF, the first fluorine-free concentrate to be included on the Department of Defense’s Qualified Products List (QPL).

“This formulation expands the range of approved applications, including use with standard sprinkler systems, providing another example of how SOLBERG is advancing fire suppression technology while supporting customers with environmentally responsible, high-performance solutions.”

The company said the Solberg team will be at the National Fire Sprinkler Association North American Fire Sprinkler Expo from April 29 to May 1, 2026.

Fomtec confirms INTERSCHUTZ 2026 stand and Enviro NEO showcase

Fomtec at INTERSCHUTZ 2026

Fomtec has invited visitors to meet its team at INTERSCHUTZ 2026 in Hannover, Germany, where it will exhibit in Hall 13 at Stand B20.

The company said its sales team will be available for meetings and questions during the event, and that meetings can be booked in advance through its sales team page.

The company also said it will introduce its newest products at the event, including the Enviro range and Enviro NEO.

Fomtec details Enviro NEO

Enviro NEO is a synthetic fluorine-free firefighting foam (SFFF) for petrochemical, oil and gas, marine and other high-hazard industries.

The company described the product as part of its Enviro Programme and said its development was based on thousands of full-scale fire tests.

It said the formulation uses 100% hydrated polymers, which it says removes issues linked to partially hydrated polymers and unstable viscosity.

According to Fomtec, this is intended to support reliable proportioning and uniform foam performance from initial discharge through to complete extinguishment, including offshore and petrochemical oil and gas environments.

Fomtec lists test standards and applications

Fomtec said Enviro NEO is designed for use with fresh, brackish and seawater.

The company said the product is suited to coastal, marine and offshore installations.

It also said Enviro NEO has been validated through, and beyond, standards including EN 1568, UL 162, ICAO, IMO and LASTFIRE.

The Hannover event will also give visitors an opportunity to discuss the product directly with the company’s sales team.

The “Hidden Gum” problem: Fomtec examines polymer instability risks in modern SFFF foams

Fomtec explains why “hidden gum” and partially hydrated polymers threaten reliability in modern Synthetic Fluorine Free Foams

Natural polymers – large molecules made of repeating subunits (monomers) that occur in nature – have long been used to build structure and stability in formulated products.

Proteins such as silk or wool, carbohydrates such as starch and cellulose and natural rubber are familiar examples.

Many are biodegradable and in a post-PFAS landscape they are often viewed as a more environmentally responsible route to rebuilding foam blanket performance.

Their use in firefighting foam is also well established.

Natural polymers entered mainstream foam chemistry in the 1970s with the first alcohol-resistant (AR) foams.

Standard hydrocarbon foams such as FP, AFFF and FFFP, when applied to water-miscible fuels like acetone or IPA, struggle to retain a blanket: the fuel disrupts the foam structure and rapidly collapses the bubbles.

The breakthrough was the addition of natural polymers so that, on contact with polar solvents, a polymeric phase would “drop out” and form a barrier between the foam bubbles and the water-miscible fuel.

That polymer mechanism delivered more than alcohol resistance.

It also produced slower-draining foams with stronger bubble structures and improved heat resistance – performance traits that translated into more durable blankets and better burnback security.

As a result, AR-type foams became almost universally adopted from the 1990s onward as the foam agent of choice for large-scale emergency response in high-hazard industries, including scenarios involving hydrocarbon fuel fires where blanket integrity matters most.

The stability problem

From the early 1970s into the 2010s, manufacturers experimented with polymer type and dosage.

The most common natural polymers used were polysaccharides – often simply called “gums” – including Xanthan Gum and Guar Gum.

While specific chemistries differ, the operational trade-offs have remained consistent across the industry:

• Adding polymers increases concentrate viscosity.
• Keeping polymers stable in solution or suspension across the product’s service life is difficult.

Viscosity is often framed as an engineering consideration.

If you know the rheology of a product – and its viscosity response to shear – then pumps, proportioners and pipework can be specified accordingly.

Stability is a different class of challenge.

Every foam manufacturer has encountered stability failures at some point – sometimes driven by batch variation (raw materials out of specification, incorrect dosing), sometimes by storage and climatic conditions in the field.

When stability issues arise, the symptoms are operationally serious: concentrate separation, polymer settling, dehydration effects and in extreme cases near-solidification of the product.

These are operational performance problems that directly affect pumpability, induction accuracy and discharge performance.

Post-PFAS

In fluorine-free SFFF, extinguishing and burnback security now rely primarily on blanket integrity rather than fluorosurfactant film formation, echoing the fundamentals of early protein-based foams.

For many manufacturers, returning to natural polymers has therefore been inevitable.

Natural polymers can materially improve fluorine-free performance by creating slower draining foams, strengthening bubble structure and improving heat resistance.

In general, adding more natural polymer improves fire performance – particularly around sealing against hot surfaces and delivering burnback resistance in saltwater conditions, where polymers can help retain a moist, resilient blanket at the interface.

But the familiar trade-off remains: more polymer usually means more viscosity.

And in today’s installed base, viscosity now directly affects compatibility with existing proportioning and pumping equipment originally designed around different product families.

The market response

That pressure – to achieve strong fire performance without exceeding the viscosity envelope of installed systems – has driven a trend in fluorine-free concentrate design: using partially hydrated polymers to keep “in-can” viscosity attractive while still delivering polymer benefits at the point of application.

At Fomtec, this strategy is described as “hidden gum.”

On paper, this can look like the best of both worlds: good fire test performance paired with manageable viscosity in storage.

In practice, it can embed a latent instability that appears later – after installation, after time in tanks, after exposure to humidity, temperature cycling, shear, or small amounts of water ingress.

The core issue is hydration state. A polymer that remains partially hydrated in the manufactured concentrate can continue hydrating later.

That means the concentrate’s rheology remains capable of changing over time.

In high-consequence emergency response, a product that behaves differently over time becomes a reliability hazard.

The delayed hydration failure mode

Foam systems are inseparable from water.

They connect to water supplies, they live in humid environments and they are handled in ways that can introduce small but meaningful water ingress over years of service.

If a concentrate contains partially hydrated polymers, then water exposure can trigger further hydration, swelling and thickening – sometimes sharply.

Fomtec developed a test protocol to examine viscosity response to water addition, normalising viscosity and then measuring how it changes as water content increases.

When testing three of Fomtec’s own SFFF products, the normalised result behaved as many engineers would expect: viscosity decreased as water was added.

At 15% water addition, the viscosity dropped by roughly 20%.

However, when Fomtec obtained four competitive AR-SFFF products and ran the same protocol, the behaviour was starkly different.

All four competitor products exhibited a normalised increase in viscosity of more than three times with water addition in the range of 15% to 40%.

That difference matters because in the real world, a concentrate that thickens dramatically when contaminated with water can stress or degrade multiple points of a foam delivery chain:

• Reduced pumpability and increased pressure drop
• Proportioner performance drift and induction variability
• Filter/strainer loading and blockage risk
• Nozzle and discharge pattern changes
• System unreliability under emergency demand

Existing viscosity response data provides sufficient basis to identify the hazard: large, unpredictable viscosity increases translate into less predictable flow, proportioning and discharge at the moment systems are expected to work without hesitation.

A metastability problem

The most serious concern with partially hydrated polymers is the potential for unpredictable viscosity increases.

It is that viscosity might increase unpredictably and that the concentrate may be in a metastable state: appearing stable and compliant at manufacture, then transitioning as conditions change.

Metastability in foam concentrates is a reliability problem because it masks risk during early evaluation and acceptance.

A concentrate can meet viscosity specifications at release while still carrying latent thickening capacity that emerges later in storage tanks, pipework dead-legs, or proportioners.

Once that happens, the system can fail in ways that appear mechanical – blocked strainers, inaccurate proportioning, low flow – when the root cause is chemical and structural.

This is why transparent disclosure of polymer strategy is operationally important.

If polymer strategy is explicit, operators can make informed engineering choices about equipment compatibility, storage controls, inspection intervals, or acceptance tests designed to surface instability before an incident occurs.

Fomtec’s stated position is that all polymer-based Enviro SFFFs use 100% fully hydrated natural polymers because the instability linked to variable viscosity from partial hydration is considered too large a risk.

The company also acknowledges that it has not yet established a quantified statistical relationship with blocked pumps or discharge impairment associated with this phenomenon, but argues that a measured viscosity swing exceeding 300% is itself enough to justify caution in high-hazard environments.

On that basis, it calls for manufacturers to declare whether their formulations rely on partially hydrated polymers.

The rush to “1×3”

Alongside chemistry pressures, there is a commercial one: the drive toward simpler portfolios and broader “one product covers more scenarios” positioning – often summarised as a push toward “1×3” solutions.

The concept is attractive: fewer SKUs, less complexity, easier procurement.

But if blanket integrity is now doing the work that PFAS chemistry previously helped with, then a 1×3 ambition raises an awkward formulation question:

How much natural polymer is required to achieve hydrocarbon performance – especially on hot surfaces and for burnback security – and how do you put that quantity into a concentrate without destabilising it?

If higher polymer content is required, manufacturers may use partial hydration to control viscosity.

And that is where the 1×3 rush can inadvertently amplify “hidden gum” risk.

A formulation stretched across a broader operating envelope often sits on tighter balances: more demanding performance targets, more variable water qualities, wider storage conditions and a larger installed base of equipment with differing capability.

Those conditions are exactly where metastability is most likely to surface.

In that sense, a 1×3 approach built on hidden gum may be even more metastable than a 3×3 strategy, because broader coverage can force higher polymer dependency and narrower stability margins while still needing to present a low in-can viscosity for market acceptance.

Performance without the hidden compromise

Fomtec accepts that partially hydrated polymer strategies are attractive when trying to combine performance with manageable viscosity.

The company states it spent more than three years evaluating whether to adopt the approach, but claims that technological breakthroughs within its Enviro Programme enabled a different route: the launch in January 2026 of ENVIRO 3×3 NEO, based on 100% fully hydrated polymers while targeting high performance levels against standards including EN 1568:2018, UL 162, IMO and also LASTFIRE and ICAO Level B.

The implication is significant for the wider market: if top-tier performance can be achieved using fully hydrated polymer strategies, then reliance on partial hydration becomes a clearer formulation choice, particularly in high-hazard hydrocarbon risk where long-term reliability is the primary requirement.

What should change?

The reintroduction of natural polymers into fluorine-free SFFF formulations has delivered real performance benefits.

But the method of incorporation – fully hydrated versus partially hydrated – should now be treated as a safety-critical design choice, not a minor formulation detail.

Partially hydrated polymers may deliver impressive lab and test-house performance and an attractive in-can viscosity while also introducing latent instability that expresses under the most common real-world stressor of all: water.

When water exposure can trigger delayed polymer hydration and viscosity swings of several hundred percent, the concentrate’s behaviour becomes variable after installation – introducing uncertainty into pumpability, induction accuracy and discharge performance.

Foam concentrate evaluation must go beyond controlled extinguishment tests and include long-term reliability questions: how the product stores, how it tolerates water ingress and humidity, how its rheology evolves and how consistently it proportions and discharges across the full range of realistic operating conditions.

As fluorine-free foams become the global norm, transparency around polymer hydration strategy should be viewed as an operational requirement.

In firefighting foams, performance includes long-term behaviour in operational storage and real-world system activation.

It is what happens years later, in the field, when the system is activated and everything depends on the foam flowing exactly as intended.

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

Dafo Vehicle fire suppression systems gain ESL certification for UAE and Saudi standards

Dafo Vehicle certifications cover Gulf bus standards

Dafo Vehicle has achieved certification for UAE.S 5041:2021 and SASO 2946:2020 for fire suppression systems used in buses and coaches.

Dafo Vehicle announced that both certifications were issued by the Emirates Safety Laboratory (ESL).

UAE.S 5041:2021 is the United Arab Emirates standard for automatic fire suppression systems in the engine compartments of buses and coaches carrying more than 22 passengers.

The standard is intended to improve public transport safety by requiring vehicles in the region to use fire protection systems that meet defined testing requirements.

Those requirements include fire performance testing, along with vibration resistance testing.

The standard also requires temperature endurance testing to confirm system function in extreme operating conditions.

Dafo Vehicle adds Saudi standard approval

The company said its fire suppression systems are also certified to SASO 2946:2020, the Saudi Arabian standard for fire suppression systems in buses and coaches.

The Saudi Standards, Metrology and Quality Organization (SASO) issued that regulation for passenger vehicles operating in Saudi Arabia.

It sets requirements for automatic fire detection and suppression in engine compartments and for system performance during fire scenarios.

It also covers durability and reliability under vehicle operating conditions, with compliance verified through certified testing laboratories.

Dafo Vehicle said the two certifications support its work with operators and original equipment manufacturers in the United Arab Emirates and Saudi Arabia.