Fogmaker HDME fire suppression system earns FM approval for mining applications

FM approval awarded to Fogmaker HDME fire suppression system

As reported by Fogmaker, the company’s High-Pressure HDME Fire-Suppression System has received FM 5970 Approval, a significant certification for use in the mining industry.

The system, already widely used in over 60 countries, has been tested and certified by several prominent certification bodies.

This FM approval adds to Fogmaker’s list of existing certifications, including the UL mark, SPCR 197 and 199, and AS 5062:2016.

This approval reinforces the system’s reputation as one of the most extensively tested and certified fire suppression products in the world.

Fogmaker emphasises importance of certification for the mining sector

Mario Flores, Fogmaker’s Key Account Manager, responsible for the Mining Segment, expressed excitement about the certification.

Flores said: “This is very exciting. We’re not just certified, we’re approved at the highest level and verified by the most respected certification bodies in the world.”

The approval is expected to enhance Fogmaker’s ability to meet the demands of mining operations where fire suppression is critical for safety.

CEO highlights rigorous testing process and customer benefits

Fogmaker’s CEO, Lars Alrutz, highlighted the testing and certification process: “We are thrilled with the new certification.

Our product has stood up to rigorous testing and the FM Approval will allow us to better serve our valued customers in the Mining segment.”

This certification marks a key development for Fogmaker in advancing its vision of providing safer environments globally.

The company aims to continue improving safety standards within the mining sector and beyond.

Eco-friendly fire suppressant gains recognition

The certification testing was conducted using Fogmaker’s new Eco 1 suppressant, a 100% PFAS-Free liquid that has earned GreenScreen Certified™ status at the silver level.

The combination of fire protection and sustainability is central to Fogmaker’s approach, further proving that safety and environmental responsibility can go hand in hand.

The company believes that its Eco 1 suppressant offers an effective, environmentally friendly solution for industries where fire suppression is essential.

This new certification confirms that the product meets both high safety and sustainability standards.

Fogmaker HDME fire suppression system earns FM approval for mining applications: Summary

Fogmaker has announced that its High-Pressure HDME Fire-Suppression System has received FM 5970 Approval for use in the mining industry.

The system, already holding multiple certifications, has undergone extensive testing, confirming its effectiveness.

Mario Flores, Key Account Manager, and Lars Alrutz, CEO, expressed their enthusiasm for the certification, emphasising its importance for the company’s mining sector operations.

The testing involved Fogmaker’s new PFAS-free Eco 1 suppressant, which is also GreenScreen Certified™ at the silver level, aligning with the company’s commitment to sustainability.

Euralarm updates PFAS restriction fact sheet for firefighting gases

Focus on firefighting gases in PFAS restriction proposal

Euralarm has released an updated fact sheet detailing the European Chemical Agency’s (ECHA) proposal for restricting PFAS, with a particular focus on firefighting gases.

The proposal, submitted by five European countries in February 2023, aims to regulate per- and polyfluoroalkyl substances (PFAS) in the EU.

PFAS are synthetic chemicals used in various sectors, but this document highlights their application in firefighting gases.

Firefighting foams, which are subject to a separate restriction process, are not covered in this update.

The fact sheet, currently available in English, will soon be translated into French, German, and Spanish.

Firefighting gases and their inclusion in PFAS restrictions

The ECHA proposal includes several firefighting gases in its scope, such as HFC-227ea, HFC-125, FK-5-1-12, and HB-55.

These gases are used in extinguishing systems covered by EN 15004 and ISO 14520 standards.

Although firefighting gases represent a small portion (3%) of the overall application of fluorinated gases, their usage is essential in fire safety.

These systems remain non-emissive until activated, with an estimated 3% emission rate annually from fire protection reserves.

The proposal also acknowledges that some firefighting applications lack viable alternatives to these gases.

Proposed derogation and transition periods for firefighting gases

The proposal suggests an 18-month transition period after its entry into force, followed by a 12-year derogation for firefighting applications.

This is due to the absence of effective alternatives for certain uses, and the need to balance fire safety with environmental concerns.

ECHA’s analysis stresses the importance of these gases in preventing risks to human life and protecting valuable assets.

The proposal further indicates that a longer derogation might be necessary due to the limitations of existing alternatives and past unsuccessful research efforts.

Public consultation and legislative process

The public consultation on the PFAS restriction proposal, which ended on 25th September 2023, attracted over 5,600 submissions from various stakeholders, including companies, trade associations, NGOs, and national authorities.

The ECHA committees are now reviewing these submissions and will develop their scientific opinions.

The legislative process is expected to continue through 2025, with a potential entry into force by the end of that year.

Following this, the proposed derogations for firefighting applications would be implemented, allowing the continued use of fluorinated gases until at least 2039.

Euralarm updates PFAS restriction fact sheet for firefighting gases: Summary

Euralarm has published an updated fact sheet on the European Chemical Agency’s proposal to restrict PFAS in the EU, with an emphasis on firefighting gases.

The document covers gases such as HFC-227ea and FK-5-1-12, which are critical to fire safety systems.

While firefighting gases account for only a small percentage of PFAS applications, the proposal includes a 12-year derogation due to the lack of viable alternatives.

The public consultation concluded in September 2023, and the legislative process is expected to extend until 2025, with a transition period following entry into force.

IWMA elects new Scientific Council Chairman in Antwerp as Lakkonen assumes Presidency

IWMA holds annual member meeting in Belgium

The International Water Mist Association (IWMA) held its 2024 annual member meeting in Antwerp, Belgium, on 17th September.

During this meeting, members elected a new chairman for the IWMA Scientific Council.

Two candidates were in the running for the position: Kemal Sarp Arsava of RISE Norway and Bogdan Raciega from the Baltic Fire Laboratory.

Following the election, Bogdan Raciega emerged as the new chairman.

Raciega is also an IWMA representative at the European Commission’s Fire Safety Expert Group.

He succeeds Max Lakkonen, who stepped down from the role after being elected as the new IWMA President.

Election follows leadership change

The election of a new chairman for the IWMA Scientific Council marked a significant shift in leadership within the organisation.

Max Lakkonen, who previously held the role of chairman, stepped down following his election as IWMA President.

Lakkonen’s predecessor, Are W. Brandt, had served as president for two terms but stepped down due to term limits outlined in the association’s articles.

The IWMA’s annual member meeting typically involves elections for board positions, and this year was no exception.

However, the need to elect a new Scientific Council chairman made this meeting distinct, as the last such election took place in 2018.

Board of directors confirmed

In addition to the election of a new chairman, the IWMA Board of Directors remains in place following the meeting.

The board includes several prominent figures from the fire safety industry. Dirk Sprakel from Fogtec serves as the IWMA Vice-President. The other board members are Luciano Nigro from Jensen Hughes, Henrik Bygbjerg from Danfoss Fire Safety, Ann Micheli from Ultra Fog, Dirk Laibach from Johnson Controls International, Robert Harley Mostad from RISE, Markku Vuorisalo of Marioff, and Jonathan Carpenter from FM Approvals.

With the election of Max Lakkonen as IWMA President, the board had anticipated the need to elect a new Scientific Council chairman and began the search for candidates in advance.

Continuity within the IWMA

As Raciega steps into his new role, the IWMA will continue to work towards its goals of promoting water mist technology and enhancing fire safety standards globally.

The board remains largely consistent with previous years, ensuring continuity in leadership and strategy for the association.

With the appointment of Raciega, the IWMA Scientific Council will continue its work on key research and standards development in fire safety.

The IWMA, known for its dedication to water mist technology, organises this annual member meeting to keep its members engaged and to ensure that the association remains active in its pursuit of innovation and safety in fire protection systems.

IWMA elects new scientific council chairman: Summary

At the 2024 annual member meeting of the International Water Mist Association (IWMA), held in Antwerp, Belgium, on 17th September, a new Scientific Council chairman was elected.

Two candidates competed for the role: Kemal Sarp Arsava from RISE Norway and Bogdan Raciega from the Baltic Fire Laboratory.

Raciega, who also represents the IWMA at the European Commission’s Fire Safety Expert Group, was elected chairman, succeeding Max Lakkonen.

Lakkonen had stepped down after being elected IWMA President.

The meeting also reaffirmed the members of the IWMA Board of Directors, ensuring stability in the association’s leadership structure.

CheckFire prepares for EU-wide PFAS ban with new fluorine-free fire extinguisher range

CheckFire responds to upcoming EU restrictions on PFAS chemicals

CheckFire Ltd is taking action to align its operations with upcoming EU restrictions on per- and polyfluoroalkyl substances (PFASs).

These chemicals, often referred to as ‘forever chemicals,’ will be regulated under new rules set by the European Chemicals Agency, which will come into effect in December 2030.

In anticipation of this, CheckFire will begin phasing out select fire extinguishers in its Commander and CommanderEDGE ranges that contain PFHxA, a type of PFAS.

This proactive move comes as CheckFire aims to stay ahead of environmental regulations by discontinuing these products as early as October 2024.

The company believes this decision will help its customers smoothly transition in compliance with the UK’s future PFAS ban.

New Green Crosshair range introduced to replace PFAS products

In place of the discontinued products, CheckFire is developing a new line of fluorine-free extinguishers.

This new range, known as Green Crosshair, will be part of the company’s wider Green Range initiative.

As reported by CheckFire, this line will meet the demand for PFAS-free fire safety products while maintaining the same high standards of quality and performance for which CheckFire is known.

The company has been preparing for this transition, understanding the importance of removing chemicals that pose risks to the environment and living organisms.

The new Green Crosshair products will offer environmentally responsible alternatives without compromising effectiveness.

CheckFire’s approach to sustainability and compliance

CheckFire’s decision to act now demonstrates its commitment to sustainability.

Cameron Robins, managing director of CheckFire, emphasised the significance of this shift for the fire safety sector.

He said: “The upcoming EU PFAS restrictions represent a significant shift for the fire safety sector, emphasising the need for sustainable solutions.

“By discontinuing PFAS-containing products now and introducing fluorine-free alternatives, we are not only ensuring compliance but also leading the industry towards a safer and more environmentally responsible future.”

This transition highlights the importance of businesses preparing for future regulatory changes, allowing both the industry and consumers to benefit from advancements in sustainability.

PFAS ban marks industry-wide change in fire safety standards

The upcoming EU-wide ban on PFAS will affect many industries, with fire safety being particularly impacted due to the presence of these chemicals in certain extinguishers.

PFAS substances, such as PFHxA, have been widely used in various industries for their fire-resistant properties.

However, due to their persistence in the environment, they have come under increased scrutiny.

CheckFire’s decision to develop PFAS-free alternatives reflects a broader industry shift towards sustainability.

As regulations tighten, other companies in the sector are expected to follow suit, driving innovation in safer and greener fire safety solutions.

CheckFire prepares for EU-wide PFAS ban with new fluorine-free fire extinguisher range: Summary

CheckFire Ltd is discontinuing fire extinguishers containing PFAS chemicals ahead of an EU-wide ban set for 2030.

The company is phasing out products in its Commander and CommanderEDGE ranges by October 2024 to ensure compliance with the future UK PFAS regulations.

CheckFire has introduced a new Green Crosshair range under its Green Range initiative, offering fluorine-free alternatives that maintain its standards of performance and quality.

Managing director Cameron Robins said that this shift supports the fire safety sector’s move towards sustainability.

The ban marks a major change in industry standards, encouraging other companies to adopt greener fire safety technologies.

Developing SFFF foams: Beyond the limits of standard testing

Jan-Erik Jönsson, Chief Chemist at Dafo Fomtec, discusses the complexities of developing SFFF foams and the importance of real-world testing

The development of new, high-performance SFFF foam concentrates has challenged many long-standing assumptions in the industry.

In the past, fuels were categorised into different groups, and application densities were determined accordingly.

Simply passing a fire test and securing approval was often considered sufficient for most applications, regardless of how closely the test conditions mirrored real-world scenarios.

During the transition to SFFF products, the need for foam testing is growing.

For better results, testing should be performed with the traditional test standards as well as in the actual conditions where the SFFF products will be used.

At Fomtec, we developed testing methods to help us predict and assess what kind of foam to use and what application density is necessary.

This progress has been made possible thanks to our extensive fire testing program that we started several years ago.

During these tests, we have encountered issues that were not considered in the past but are now important to address for SFFF products.

In this article, we discuss some of the key challenges we have identified that require special consideration.

The challenges of fuel compatibility for SFFF foams

Thanks to simpler formulations and fluoro-surfactants, the versatility of foam types like AFFF and AFFF-AR made them less sensitive to different fuels and application equipment.

However, with the transition to SFFF foams, it’s a different scenario.

Developing formulations that can pass fire tests with common polar solvents, like acetone and IPA, has been a struggle.

Without fluoro-polymers, the gel formation in SFFF alone is insufficient to achieve high performance.

A particularly difficult issue arose when testing foam stability on other polar solvents that inhibit gel formation, such as MEK, 1-butanol, 2-butanol, and short-chain acetates.

Initially, we assumed these would be easier to manage than IPA and acetone, especially since MEK had been straightforward in AFFF-AR fire testing.

Surprisingly, the foam disintegrated rapidly when applied to MEK at room temperature, and even faster on warm MEK.

Adding more foam temporarily extended its stability, but not for long.

Analysing the data on polar solvents revealed that a significant number of chemicals resist the necessary gel formation.

The challenge was determining how many of these acted as “foam killers” versus those that were benign.

Given the vast number of solvents—many of which are toxic and impractical for extensive fire testing—we needed a predictive method for foam stability.

This led to a comprehensive test program, where over sixty different solvents, selected based on their chemical nature and water solubility, were evaluated in the lab for foam stability.

Some of these solvents were also tested in full-scale fire scenarios to ensure consistency between lab results and real-world performance.

Moreover, for hydrocarbon fuels, the test fuel is frequently heptane.

This fuel has quite a high flash point and low vapour pressure.

In real-life applications, volatile fuels with higher vapour pressures and much lower flash points, like gasoline (with a flash point below -40°C), are common.

Conversely, longer-chained hydrocarbons like diesel or Jet A1, while having higher flash points (well over 30°C), burn extremely hot in fully developed fires.

As we move forward with SFFF products, it is necessary to understand how they respond to different situations.

This is the reason why we do tests to give our clients recommendations based on test results and not opinions.

Foam stability and degradation in polar solvents

The challenges we faced with partially water-soluble polar solvents led to the initiation of a project aimed at developing a straightforward yet representative test method.

This method could be distributed to clients for testing at their own facilities, allowing their findings to be evaluated and compared against our extensive database.

Over the years, this dataset has expanded significantly, encompassing numerous lab tests across a wide variety of solvents, with the corresponding fire test data points continuously being added.

By analysing all the collected data, we have developed a predictive model that can detect foam destroying properties of a huge number of solvents.

This model, approved with statistical methods, turned out highly reliable.

It leverages existing literature on the chemical and physical properties of both the solvent and the foam solution to predict potential foam instability.

With this model, we can anticipate foam stability issues without additional lab tests.

We can then use these predictions to recommend appropriate application equipment and densities.

Full-scale testing

Full-scale fire testing following standard methods provides valuable cost-effective data.

These tests are typically performed on small ~4.5 m² (50 ft²) fires; these are not a good representation of most real-life fire scenarios.

The size of the fire influences its performance.

Small-scale fire tests, such as those described in EN 1568-3, do not always correlate with full-scale fire performance, as smaller fires are easier to control, even with lower test densities.

Recognising this, we felt compelled to conduct large-scale fire tests, up to 300 m², using various fuels, equipment, and application densities to gather more accurate data.

These tests included fuels like gasoline, diesel, Jet A1, ethanol, and ethyl acetate, with foam applied through fixed monitors, handheld nozzles, and different sprinkler heads.

Height-based testing

Another critical issue often overlooked in standard tests is the height at which foaming devices are installed, particularly in tall buildings.

For example, a hangar for big airliners is often higher than 40 meters with foam sprinklers attached to the ceiling.

Standard tests performed at around 4 meters do not truly reflect a scenario like this one.

To respond to this challenge, we conduct fire tests at heights of up to 15 meters (45 ft) and plan to go higher up to 35 meters with appropriate fuels and sprinkler heads.

Sprinkler heads present another challenge.

Some test standards allow a single sprinkler head with a specific K-factor to pass, thereby approving all sprinklers with the same K-factor.

However, this approach does not account for the nuances of different sprinkler designs.

Our tests have shown that even minor design changes, such as to the deflector, can significantly impact fire performance.

Height is also a factor in high-expansion foam applications, where foam generators are typically installed high in a building.

Standard tests often require the foam to build up to about one meter in height, using a fan-driven generator that produces foam with an expansion ratio far exceeding what is typically achieved with passive generators.

Many foams can pass these tests, but when tested with standard generators, they fail to build beyond one meter before collapsing.

Fortunately, some standards address this issue by requiring the foam to build height and extinguish fires within a compartment.

We have conducted tests demonstrating that HiEx foams can build over 40 meters without collapsing, giving us the confidence to recommend them for even the tallest hangars.

Hidden gum

There is a strong focus on developing SFFF formulations with high fire ratings as replacements for AFFF.

One method to achieve higher ratings is by incorporating polysaccharides or similar gums into the foam formulation.

These substances improve the foam’s quality by extending its drainage time, keeping the foam blanket moist and effective during fire tests.

However, a less obvious approach involves loading the foam concentrate with a significant amount of gum, which indeed boosts fire ratings.

The downside is that a high gum content increases viscosity, which is generally undesirable.

Fortunately, by carefully selecting and balancing the ingredients in the formulation, it’s possible to maintain a viscosity well below 3,000 mPas.

This works because the limited water content prevents the polysaccharide polymer from fully hydrating and expanding to its full viscosity potential.

Instead, the polysaccharide remains in a semi-dispersed, metastable state.

Ideally, this state remains stable for extended periods, but it can rapidly destabilise under certain conditions.

For instance, at higher temperatures, the solubility of the liquid changes, causing the polysaccharide to stretch out in an environment with insufficient water, leading to phase separation or stratification in the foam concentrate.

Once this two-phase liquid forms, it’s typically irreversible.

Even if the concentrate appears stable at higher temperatures, another issue may arise.

When small amounts of water are added, instead of decreasing, the viscosity can dramatically increase.

This happens because the additional water allows the polysaccharide polymer to further expand, raising the viscosity.

It may require over 20% water addition before any viscosity reduction occurs.

This phenomenon, which we refer to as “Hidden Gum,” can lead to significant problems.

If the concentrate encounters water in storage tanks or piping systems, it can form a gel plug, obstructing the system’s proper operation.

Rhe dangers of making assumptions

We’ve realized that when switching to SFFFs (Synthetic Fluorine-Free Foams), we need data that reflects real-world situations, not just what was once common knowledge.

SFFFs aren’t as versatile as AFFF and AFFF-AR, so it’s risky to make recommendations based on opinions rather than facts.

For example, in the past, getting approval for one fuel in a group often meant that other fuels in that group were also approved.

This worked for AFFF and AFFF-AR, but it doesn’t apply to SFFFs.

Take acetone, for instance—a type of ketone.

While it’s possible to get approval for acetone, this doesn’t mean that a similar chemical like methyl ethyl ketone (MEK) will automatically be approved under the same conditions.

Our tests show that putting out a MEK fire needs much more foam, depending on how it’s applied.

Another example involves sprinkler systems.

It used to be assumed that if one sprinkler with a certain K-factor was approved, others with the same K-factor would work just as well.

But for SFFFs to be effective in sprinkler systems, the sprinkler head needs to produce the right kind of foam to pass the test.

We’ve confirmed this through many tests over the past eight years.

We’ll keep running tests beyond the usual standards to gather more accurate data, so we can give our clients advice based on facts, not just opinions.

About the Author

Jan-Erik Jönsson has been the Chief Chemist at Dafo Fomtec since 2009.

He holds a Ph.D.

in Polymer Technology from the University of Lund, where his research focused on emulsion polymerisation.

This expertise served him well during his tenure at Hoechst Perstorp AB (now Celanese Emulsions), where he led the R&D department, specialising in the development of water-based binders for paints, paper coatings, and environmentally friendly adhesives, such as solvent-free paints.

Jan-Erik’s journey into foam technology began in the summer of 2009 after meeting John-Olav Ottesen, the founder of Dafo Fomtec AB.

Captivated by the potential of foam, he was appointed Chief Chemist later that year.

Since then, he has led the development of Fomtec’s products, with a strong emphasis on fluorine-free solutions from the very beginning.

This article was originally published in the September 2024 issue of International Fire & Safety Journal. To read your FREE digital copy, click here.

Level 2 fire sprinkler installation certificate launched for domestic and residential sectors

First cohort passes new fire sprinkler qualification

A new qualification for residential sprinkler installation, developed in response to the Hackitt Report, has been successfully completed by its first group of learners.

The Level 2 Certificate in Fire Sprinkler Installation (Domestic and Residential) was launched by the Residential Sprinkler Association and SFJ Awards.

It aligns with recent legislative changes to ensure installers have the skills required for safer, more professional installations.

Chair of the Residential Sprinkler Association Dean Price said the qualification marks a key step for the industry: “Now that a first cohort of learners have this qualification under their belts, the sector has a platform to build from in terms of upskilling the workforce to better protect our communities, families and homes.”

Designed to meet new regulatory standards

The qualification was developed in response to the Hackitt Report, which called for improved industry training to enhance safety in building practices.

Dean Price explained that regulatory changes had been slow to keep pace with the growing demand for residential sprinkler installations.

“The residential sprinkler market has experienced significant growth in the past decade or so, with regulation failing to keep pace until relatively recently,” he said.

The Level 2 certificate was designed by experts to raise installation standards in the domestic sector.

This qualification aims to address the gap by providing essential training to ensure compliance with the latest regulations.

Collaboration between Residential Sprinkler Association and SFJ Awards

The Residential Sprinkler Association partnered with SFJ Awards, an Ofqual-regulated awarding body, to develop and deliver the certification.

The association, which represents 60 members across the UK, advocates for the sector by providing training, technical guidance, and support.

David Higham, Managing Director of SFJ Awards, emphasised the importance of this training: “It’s fundamentally important that those installing residential sprinklers have undergone specialist training that is backed up by a recognised qualification.”

Raising standards and improving safety

Higham added that the introduction of this qualification is a step forward for the fire safety sector, with the aim of improving standards across domestic and residential installations.

“Changes in the regulatory environment are an opportunity to professionalise and raise standards,” he said.

The qualification was subject to a thorough accreditation process, ensuring it meets the required government guidelines.

Higham stated: “We are proud to have played our part in developing this qualification, which represents a significant step forward in terms of minimising fire risk in domestic and residential settings.”

Level 2 fire sprinkler installation certificate launched for domestic and residential sectors: Summary

The Residential Sprinkler Association and SFJ Awards have launched the Level 2 Certificate in Fire Sprinkler Installation (Domestic and Residential) following recommendations from the Hackitt Report.

The qualification aims to improve safety standards by providing professional training in residential sprinkler installations.

The first group of learners has successfully completed the course.

Dean Price, Chair of the Residential Sprinkler Association, highlighted the qualification’s role in upskilling the workforce.

David Higham, Managing Director of SFJ Awards, noted that the qualification underwent a rigorous accreditation process and aligns with current government regulations.

CheckFire launches new PFAS-free fire extinguisher range in line with EU regulations

CheckFire introduces PFAS-free fire extinguisher range to meet upcoming EU regulations

CheckFire has launched its Green Crosshair PFAS-free fire extinguisher range.

This new line is compliant with the upcoming European Chemicals Agency’s restriction on per- and polyfluoroalkyl substances (PFAS) in firefighting foams.

These substances, often referred to as “forever chemicals,” are known for their persistence in the environment and their potential risks to both ecosystems and human health.

The new regulation, expected by December 2030, is aimed at reducing the use of PFAS, including the newly regulated PFHxA.

CheckFire’s product updates ensure that customers remain compliant with these evolving safety standards while maintaining environmental responsibility.

Introduction of the Green Crosshair symbol for PFAS-free products

Earlier this year, CheckFire introduced its Green Crosshair symbol to represent its PFAS-free fire extinguishers under The Green Range.

This symbol will soon be included across all PFAS-free products.

The transition reflects CheckFire’s proactive steps to adapt its offerings ahead of regulatory deadlines.

In addition to launching new products, CheckFire is phasing out legacy items containing PFAS.

Customers are being provided with new fluorine-free alternatives, specifically in the Commander and CommanderEDGE ranges.

These changes are designed to make the shift seamless for customers, who can also utilise an interactive product map for detailed guidance.

Fluorine-free alternatives in the Commander and CommanderEDGE ranges

The new fluorine-free alternatives rolled out in CheckFire’s popular ranges will maintain the same high standards of quality and performance.

CheckFire’s updated portfolio ensures that safety and innovation remain at the forefront, while also offering environmentally friendly options.

The transition has been structured to align with anticipated UK regulations on PFAS, allowing customers to meet future legal requirements without experiencing disruptions in service or equipment performance.

The company’s new interactive map also helps customers to identify which legacy products are being phased out and which fluorine-free replacements are now available.

Commitment to regulatory compliance and environmental responsibility

Cameron Robins, managing director of CheckFire, stated: “Our priority is to provide the highest standard of fire safety equipment while staying ahead of regulatory changes.

“By phasing out PFAS-containing products and introducing fluorine-free alternatives, we’re not only ensuring compliance with upcoming regulations but also reinforcing our commitment to environmental protection.

“Our customers can continue to trust CheckFire for innovative, reliable solutions that meet both today’s needs and tomorrow’s challenges.”

Further details about the rollout of CheckFire’s fluorine-free products will be released in the coming months.

New PFAS-free fire extinguisher range launched by CheckFire: Summary

CheckFire has introduced a new range of PFAS-free fire extinguishers, known as the Green Crosshair line, to comply with upcoming EU restrictions on harmful chemicals in firefighting equipment.

The range is part of a broader effort to phase out PFAS-containing products by 2030, in line with the European Chemicals Agency’s proposed ban on these environmentally persistent substances.

To support this transition, CheckFire is offering fluorine-free alternatives across its Commander and CommanderEDGE ranges, helping customers navigate the change with the aid of an interactive product map.

The company has also introduced the Green Crosshair symbol, which will be used to identify all PFAS-free products in its portfolio.

Highlighting women in fire protection

As part of its National Skills Week celebration in August, TAFE NSW highlighted the gap in female participation in the sector.

According to TAFE, only 4% of fire protection equipment technicians are women, despite the huge skills gap in a sector that needs to accommodate an increase of 173,000 homes in Greater Sydney alone in the years to 2029.

Graduate Hayley Gough bucks the trend – she joined the sprinkler fitting industry after high school and now works on sites across Sydney.

“I decided I wanted a career that was hands-on and not just sitting at a desk. Sprinkler fitting and fire protection ticked that box for me,” Ms Gough says. “As the construction industry grows and more houses and commercial complexes are built, the importance of my trade will continue to grow.”

To learn more about Hayley’s journey, click here.

Australian Seasonal Bushfire Outlook Spring 2024

AFAC has released the Seasonal Bushfire Outlook for Spring 2024.  

The Seasonal Bushfire Outlook for Spring 2024 shows increased risk of fire for large areas in NT and Queensland, as well as far west and southwestern Victoria, and the southeast corner of SA.

Mean temperatures for the year to date have been above average to very much above average for most areas, with areas of western WA and northern SA experiencing highest on record maximum temperatures for the period. August saw widespread above average temperatures and was the warmest August on record.

For spring, there continues to be an increased likelihood of unusually high maximum temperatures across most of Australia. There is an increased chance of above average rainfall for much of NSW, Queensland, eastern Tasmania and far southeast SA, while large parts of WA have an increased chance of below average rainfall.

For this outlook period, increased risk of fire for southern and central Queensland is driven by dry grasslands caused by winter frosts and dry winds. In northern Australia, unseasonal rainfall in Queensland and NT has led to increased fuel loads. In both cases, fire authorities warn of increased fire danger as temperatures increase.

Further south, large parts of southeast SA and WA and parts of Tasmania received rainfall in the lowest 10% on record for the first half of the year. However, August saw above average to well above average rainfall in both southwest WA and western Tasmania, easing dry conditions in the region. Fire authorities are advising communities of the potential for an early start to the fire season in parts of SA and Victoria, and extending to Tasmania if warm and dry conditions continue to dry out fuels towards summer.

While other parts of Australia show normal risk of fire during this outlook period, communities are encouraged to be vigilant and stay alert through winter months. Destructive and deadly fires can still occur during normal bushfire seasons across Australia.

AFAC CEO Rob Webb urged communities to prepare and adhere to advice of local fire authorities this spring.

‘Fire and emergency services are prepared for the fire season ahead and are here today to encourage communities to do the same,’ Mr Webb said. 

‘Now is the time to make a plan. Understand your local risk, know where you will get your information, and talk to your family about what you will do.’

This Seasonal Outlook was developed by the Bureau of Meteorology, Queensland Fire Department, the NSW Rural Fire Service, ACT Emergency Services Agency, ACT Parks and Conservation Service, Country Fire Authority, Department of Energy, Environment and Climate Action Victoria, Tasmania Fire Service, SA Country Fire Service, Department of Fire and Emergency Services and Department of Biodiversity, Conservation and Attractions WA, Bushfires NT and AFAC.

NFCC welcomes new provision for sprinklers in all new care homes

The UK National Fire Chiefs Council has welcomed the recent announcement that sprinklers will be mandatory in all new care homes. The Government made the announcement in a Ministerial Statement published last week, with the provision being made through an update to Approved Document B, which gives guidance on building regulations relating to fire safety matters in England.

NFCC has been calling for strengthening of sprinklers requirements in care homes for many years, most recently in the updated Automatic Water Suppression Systems (AWSS) policy statement published in May.

Responding to the announcement, NFCC Lead for Sprinklers and AWSS, Jonathan Dyson, said:

“NFCC welcomes the announcement that all new care homes in England will be required to have sprinklers installed.

“The use of sprinklers in care homes reduces the likelihood of a fire spreading beyond the room of origin. This buys crucial time for evacuation and firefighting and can reduce the need for unnecessary movement of residents who may also be more vulnerable to fire due to age, mobility issues or cognitive impairments. There have been several high-profile fires in care homes across England in the last 10 years. In many of these cases there were no sprinkler systems in place and it was not possible for firefighters to fully mitigate the effects of serious fires that resulted in lives being lost, serious injury, and major property damage.

“The recent announcement recognises and addresses the serious concerns we have had about fire safety in care homes. It is a measure that the NFCC and fire and rescue services have long called for to help protect vulnerable residents and staff.”