Most Americans don’t know who creates safety standards – NFPA warns of rising risks

NFPA campaign highlights public role in protecting safety standards

The National Fire Protection Association (NFPA) has launched a nationwide campaign warning that the development of US safety standards is increasingly at risk.

According to NFPA, the campaign – titled A Code for Every Moment – aims to improve public understanding of how fire and life safety codes are developed and to protect the independent system behind them.

NFPA said the public awareness campaign is one of the largest it has ever undertaken in its 125-year history.

The association reported that recent research revealed widespread misunderstanding among Americans, with most incorrectly believing that government agencies, rather than private organisations, create safety standards.

NFPA stated that this misunderstanding is contributing to efforts by special interest groups to weaken the independent standards development process.

Public misunderstanding of safety standards process identified

NFPA explained that safety codes affect many aspects of everyday life, including electrical systems, building exits, and fire protection.

The association warned that the current system of code development is vulnerable to misuse and misrepresentation, largely due to public misunderstanding.

The research cited by NFPA showed that many Americans are unaware of how standards are created, and that this lack of knowledge has allowed misinformation and private interests to gain influence.

NFPA also reported that some for-profit companies are using these codes without compensating their developers, undermining the sustainability of the system.

Despite this, NFPA stated that when people are informed of the independent, consensus-based process used to create safety standards, they tend to support protecting that process.

NFPA calls for legislative support through Pro Codes Act

NFPA has urged support for the Pro Codes Act, a piece of federal legislation intended to preserve the copyright protections that standards developers rely on.

The organisation said the legislation would also ensure that any standards referenced in public law are available for free viewing on public websites.

NFPA explained that maintaining copyright is essential to the ability of independent bodies to create and update standards used in construction, infrastructure and fire safety.

Jim Pauley, President and CEO of NFPA, said: “The codes and standards development system has been one of the most successful public-private partnerships in history – safeguarding countless lives, creating economic growth and saving billions of taxpayer dollars.

“We can all do more to protect the safety standards that protect us.

“Whether you’re a policymaker, professional, or simply someone who cares about public safety, your voice matters.”

President and CEO highlights campaign aims and importance

Pauley explained the motivation behind the new campaign.

He said: “Safety doesn’t happen by chance.

“We’ve spent more than a century developing codes and standards that safeguard lives, enable innovation, and save billions in taxpayer dollars.

“But we must do more to help people understand how this essential system works, and why it must be protected.”

NFPA added that A Code for Every Moment is designed to connect everyday safety with the code infrastructure that supports it.

The campaign includes educational outreach aimed at both the public and policymakers.

NFPA encouraged people to visit DontChanceSafety.org to find out more about how to engage with the campaign and support the protection of independent safety standards.

Copyright, compensation and accessibility central to NFPA’s message

According to NFPA, the risk to safety codes does not come only from public misunderstanding, but also from the commercial use of codes without financial support for their creators.

The association reported that companies using safety standards without compensation weaken the system’s ability to function and update its guidance.

It said this issue is further compounded by misinformation campaigns seeking to reframe code development as a governmental rather than private and collaborative effort.

The organisation reiterated that copyright protections are necessary to keep safety standards viable.

It stated that making standards freely viewable while retaining copyright protections is one way to balance public access with the need to support independent code development.

NFPA campaign highlights public role in protecting safety standards: Summary

The National Fire Protection Association has launched a new campaign titled A Code for Every Moment.

The campaign seeks to educate the public and policymakers about how safety standards are developed in the United States.

NFPA reported that most Americans believe safety standards are created by government agencies.

In fact, they are developed by independent organisations like NFPA through a consensus process.

NFPA warned that this misunderstanding has led to misuse, underfunding, and legal challenges to the standards system.

The organisation urged support for the Pro Codes Act, which would protect copyright for standards developers.

The legislation would also require referenced standards to be viewable for free on public websites.

NFPA President and CEO Jim Pauley said that the system must be better understood and defended.

NFPA stated that for-profit companies are using standards without compensation, which threatens the viability of the current model.

The campaign includes public outreach and encourages people to visit DontChanceSafety.org to get involved.

Hithium completes open-door fire test of 5MWh energy storage system

Hithium reports battery safety test results in China

Hithium has announced the results of a large-scale open-door fire test for its ∞Block 5MWh energy storage system, conducted under extreme conditions in China.

The company released the data at the 18th SNEC event on 11 June 2025, where it also received fire test certification from UL Solutions.

According to Hithium, the trial involved a deliberate thermal runaway event to assess safety features across four connected containers under high heat and open airflow.

The test ran for 15 hours and, according to Hithium, confirmed no fire spread beyond the initiating container.

The company said the outcome was based on its multi-layer safety design, which includes temperature-resistant materials, insulation, and structural containment.

Test procedure exposed battery systems to high heat

The fire test scenario was triggered by overheating eight battery cells in one container, known as Container A, leading to ignition and combustion.

According to Hithium, ignition was initiated by opening pressure relief valves and releasing flammable gas, which was then ignited under fully open-door conditions to allow maximum airflow.

The fire exposed adjacent containers B, C, and D to direct heat without triggering thermal runaway.

Hithium reported peak temperatures of 1,372°C at the four-hour mark, but stated that temperatures in the adjacent containers stayed well below critical thresholds.

The company said that no structural collapse occurred, and that battery modules in the surrounding containers remained unaffected.

UL Solutions presents fire safety certification

UL Solutions awarded Hithium a certification acknowledging the system’s performance against UL 9540A and NFPA 855 safety criteria.

Qifeng Xiao, General Manager of the Energy and Automation Division, Asia Pacific at UL Solutions, said:

“Hithium’s pioneering open-door extreme fire test was the first to be conducted under full oxygen exposure—far beyond the industry standard closed-door with explosion vent fire test model.

“Hithium’s pioneering open-door extreme fire test was the first to be conducted under full oxygen exposure—far beyond the industry standard closed-door with explosion vent fire test model.

“The positive outcome not only validated the system’s self-contained fire protection, but also established a valuable reference for the development of global energy storage safety standards through the world’s first open-door fire test.”

The company stated that the certification followed evaluation of system behaviour across multiple fire conditions.

Safety system includes multi-layer fire protection design

Hithium said its test results reflected a system-wide safety architecture designed to limit propagation and maintain structural stability.

At the cell level, the manufacturer highlighted the use of thermal-resistant electrode materials and flame retardant components.

At the module level, low conductivity insulation and top covers were used to contain potential fires.

For the container structure, the company cited heat-resistant construction and high-strength frames to preserve integrity under extended exposure.

According to Hithium, this combination allowed the initiating container to burn without affecting adjacent storage units.

Open-door testing offers data for future standards

Hithium presented the open-door testing approach as an alternative to the more common closed-door fire models used in the industry.

The company said its approach provided a more challenging scenario by allowing full oxygen flow throughout the test.

It argued that this setting generated higher thermal exposure and more closely replicated potential real-world hazards.

A video of the test was shown during the company’s presentation at SNEC, where technical staff outlined the method and reviewed results.

Hithium stated that the event aimed to contribute to improved global energy storage safety benchmarks.

Hithium completes open-door fire test of 5MWh energy storage system: Summary

Hithium conducted an open-door fire test of its ∞Block 5MWh energy storage system.

The test took place in China and was announced at the 18th SNEC on 11 June 2025.

The fire was triggered by inducing thermal runaway in battery cells inside one container.

The test ran for 15 hours under full oxygen exposure with fire suppression disabled.

Temperatures peaked at 1,372°C during the fourth hour.

No fire propagation occurred to adjacent containers B, C, or D.

Cell temperatures in the adjacent containers remained below critical levels.

No structural failure or internal battery damage was recorded in non-igniting containers.

The test conditions included 100% State of Charge and 15 cm spacing between units.

UL Solutions awarded Hithium fire test certification for compliance with UL 9540A and NFPA 855.

Hithium stated that its multi-level fire safety architecture enabled the system to withstand the extreme test scenario.

Institution of Fire Engineers to host hybrid AGM and Rasbash Lecture in July 2025

Hybrid format enables broader participation

The Institution of Fire Engineers (IFE) has confirmed that its Annual General Meeting (AGM) will be held in a hybrid format for the first time.

According to the IFE, this change is intended to increase accessibility and ensure members across different locations can participate.

The 2025 AGM is scheduled for 16 July, with members able to join either in person at the Crowne Plaza Hotel in Stratford-Upon-Avon or online via the AGM website.

Steve Hamm, Chief Executive of the IFE, said the new format reflects the institution’s aim to support modern working practices.

He said: “The AGM is a key moment in the IFE calendar. It’s a chance for members to hear important updates about our future and our achievements to date, and to vote on resolutions.”

He added: “This year’s hybrid format means members can take part wherever they are in the world — whether joining us in Stratford-upon-Avon, home to IFE Head Office, or logging into the meeting online. We’re pleased to be making this event as inclusive and accessible as possible.”

Rasbash Lecture to follow the AGM

Following the AGM, the IFE confirmed the return of the Rasbash Lecture.

The lecture will be webcast live after the meeting and delivered by Martin Shipp, BSc (Physics), CPhys, MInstP, CEng, FIFireE.

The IFE stated that Shipp is a fire safety specialist with a background in fire investigation and building regulations.

His talk, titled ‘Participating in history – fire investigation and research’, will be made available as a recorded session through members’ MyIFE accounts.

Members attending in person are invited to a drinks reception with the speaker after the lecture.

The organisation noted that the lecture aims to provide practical and historical perspectives on fire safety for professional audiences.

Attendance options for members

The IFE stated that members will receive an email on 16 June from UK Engage, its AGM partner.

The message will contain a unique security code and full joining instructions for the meeting.

Members planning to attend the AGM or Rasbash Lecture in person must register through the IFE website.

The deadline for registration is 14 July.

The IFE added that those joining online will access the event via the dedicated AGM portal.

Recordings of both the AGM and lecture will be uploaded to member accounts following the event.

Registration details and deadlines

The IFE urged all members wishing to participate to check their emails for the UK Engage message.

It stated that secure login information is required to access both the live online event and the recordings.

Members planning to travel to Stratford-Upon-Avon must confirm attendance via the IFE website.

The registration process will close on 14 July.

The institution also advised members to update their contact information if necessary to avoid delays in receiving access credentials.

Event reflects IFE’s digital direction

The IFE explained that the hybrid AGM format is part of its wider focus on digital engagement and inclusivity.

It stated that offering both online and in-person options reflects its membership’s international distribution.

The organisation also highlighted that recordings will help ensure those who cannot attend live can still access the material.

According to the IFE, the model aims to increase participation and ensure members remain informed regardless of location or schedule.

It added that it will continue to review feedback on the event format to inform future decisions.

Fire engineers to host hybrid AGM and Rasbash Lecture in July 2025: Summary

The Institution of Fire Engineers will hold its 2025 AGM in a hybrid format.

The event will take place on 16 July.

Members can attend in person in Stratford-Upon-Avon or online.

Steve Hamm, IFE Chief Executive, confirmed the new format.

The Rasbash Lecture will follow the AGM and be webcast live.

Martin Shipp will deliver the lecture on fire investigation and research.

A drinks reception will follow the lecture for in-person attendees.

Recordings of both sessions will be available via MyIFE accounts.

Members will receive joining instructions from UK Engage on 16 June.

Registration for in-person attendance closes on 14 July.

The IFE stated the format supports broader participation.

Fire testing capability expands with South African furnace

Large-scale load-bearing tests arrive in South Africa

Ignis Fire Testing has launched what it says is Africa’s only large-scale horizontal furnace for load-bearing fire testing.

According to Ignis, the new equipment enables the testing of full-size structural elements under both heat and pressure conditions.

The South African-based company stated that the furnace can replicate real-world scenarios by applying both fire exposure and structural loading.

Dirk Streicher, owner and chief engineer at Ignis Fire Testing, said: “This is a first for South Africa, and a big win for fire safety in our built environment.”

Ignis added that this development makes it possible to assess how critical building elements perform during a fire while bearing loads, supporting compliance with fire safety codes and informing structural design.

Understanding load-bearing fire testing

The company explained that load-bearing fire testing evaluates the structural stability of walls, beams and floors exposed to fire while carrying weight.

Unlike non-load-bearing fire resistance tests, these procedures simulate realistic fire conditions in which a building’s core supports are still under stress.

According to Stellenbosch University’s Fire Engineering Research Unit, this kind of assessment is particularly relevant for taller buildings, where failure of a supporting component could cause floor collapse and endanger evacuation and firefighting.

Richard Walls, professor of structural and fire engineering at Stellenbosch University, said: “During a fire, a loaded structural element distorts, meaning that building components can literally fall apart due to the combination of heat and force.

“Thus, testing walls and other systems under load helps us understand what would happen in a more realistic situation.

“Thus, loaded furnace tests give a more accurate assessment of a building’s components.”

The university noted that this method produces more reliable data to support safe design.

Technical specifications of the new furnace

Ignis reported that the new horizontal furnace includes an integrated system for simulating both static and pneumatic loads.

The company stated that the furnace has a 4 m-wide stainless steel exterior with ceramic wool insulation and an internal adjustable length of 3 to 5 m.

It explained that the furnace can accommodate full-scale beams and slabs for horizontal testing.

Pneumatic loading, according to Ignis Fire Testing, uses compressed air to simulate variable pressure conditions.

This approach allows for flexible and controlled application of stress to test components.

The firm added that the furnace and associated systems were designed and manufactured entirely in-house.

Services offered by Ignis Fire Testing

In addition to load-bearing tests, Ignis Fire Testing conducts a wide range of fire resistance and reaction-to-fire assessments.

The company stated that its services are aimed at both product developers and construction stakeholders seeking certification or compliance data.

Ignis described itself as the largest privately owned fire testing laboratory in Africa.

Its capabilities include vertical and horizontal testing orientations, along with custom test design and engineering support.

The firm noted that its operations are led by a multidisciplinary technical team based in South Africa.

Regional and international relevance

Ignis explained that the launch of this furnace contributes to broader fire safety improvements across the continent.

It added that its presence as a locally operated lab helps reduce dependence on overseas facilities for fire compliance testing.

According to the company, this new testing capability supports African building codes and can also assist in demonstrating compliance with international standards.

It said this could help improve construction quality and increase trust in tested products across African markets.

The company concluded that investing in this kind of infrastructure is a step towards greater regional capacity in fire safety engineering.

Fire testing capability expands with South African furnace: Summary

Ignis Fire Testing has introduced a horizontal load-bearing furnace for structural fire tests.

The company is based in South Africa and says this is the only facility of its kind in Africa.

The furnace allows full-scale walls, slabs and beams to be tested while under load and exposed to fire.

Dirk Streicher is the owner and chief engineer at Ignis Fire Testing.

Richard Walls is a professor at Stellenbosch University and provided commentary on the testing need.

The furnace uses static and pneumatic systems to simulate load conditions.

It features a 4 m width and an adjustable 3 to 5 m internal length.

Ignis conducts other fire resistance and reaction-to-fire assessments.

The facility is privately owned and based in South Africa.

The company stated the furnace was designed and built in-house by its team.

Russ Timpson joins Global HSE Group to support façade fire safety

Timpson to support tall building fire safety in the UK

Russ Timpson, a Chartered Fire Engineer and founder of the Tall Building Fire Safety Network, has joined the UK-based consultancy Global HSE Group.

According to Global HSE Group, Timpson will contribute to façade safety and staff development, bringing specialist knowledge to support the company’s compliance and reporting processes.

Timpson’s previous roles include service as a Royal Navy submariner and local authority firefighter. He has also led responses to complex incidents such as the Terminal 1 fire at Heathrow Airport.

The company said his recent work organising the Tall Building Fire Safety Network provides practical insight into the changing safety landscape for high-rise buildings in the UK.

The appointment comes as Global HSE Group’s fire safety division continues to manage hundreds of FRAEW assessments and building safety cases, with ongoing BSR-related work.

Chartered engineer to strengthen façade fire strategy

Global HSE Group stated that Timpson will be working closely with its façades team.

His remit includes advising on evolving tall building regulations and reviewing internal processes to support accurate building assessments.

The company added that he will also help drive professional development within the team.

According to the company, Timpson’s industry experience and understanding of regulatory systems make him well-positioned to guide complex project reviews.

Timpson has previously contributed to major infrastructure projects including Heathrow Terminal 5 and the Gatwick Airport Skyway.

The organisation said his appointment reflects its aim to improve fire safety knowledge across all project stages.

Director highlights shared goals and professional respect

Ross O’Loughlin, Director of Global HSE Group, said: “I am delighted to welcome Russ to our growing and very capable team of experienced and qualified fire engineers. I have known Russ personally, for some time, and always enjoy the challenges he sets the industry, through his work on Tall Buildings Fire Safety Network.

“Our discussions around getting fire safety in tall buildings right and his candid and supportive nature, made the appointment exciting for the whole team.

“His experience and ability to adapt to change and innovation made him the perfect fit for galvanising our consultancy and challenging us to continue to develop and succeed.”

Industry collaboration led to the appointment

Timpson’s appointment follows previous collaborations with Global HSE Group.

He has worked with the team through his leadership role in the Tall Building Fire Safety Network.

Timpson said: “I’ve known the Global HSE Group team for a while now, through the industry and the Tall Building Fire Safety Network and have always been deeply impressed by the quality of their work, their profound fire knowledge, and the professionalism of their staff.

“I’m excited to now be part of that team, lending my experience to their projects and contributing to the ongoing development of best practices in fire safety.”

Fire safety consultancy continues internal growth

The company stated that the appointment coincides with a period of expansion for its consultancy services.

Global HSE Group said it conducted hundreds of FRAEW assessments and 75 building safety cases last year.

Its recent work also includes support for Building Safety Regulator applications and related compliance projects.

The group added that expanding its internal capabilities is essential to manage sector demands and changing legislation.

According to the company, Timpson’s role will help reinforce its technical review processes and improve output quality across services.

Russ Timpson joins Global HSE Group to support façade fire safety: Summary

Russ Timpson has joined Global HSE Group as a Chartered Fire Engineer.

He will work with the façades team and support internal professional development.

Timpson previously led the Tall Building Fire Safety Network.

His past work includes incident response at Heathrow Terminal 1.

He has contributed to infrastructure projects at Heathrow and Gatwick airports.

The appointment was announced by Global HSE Group on 13 June 2025.

Ross O’Loughlin, Director of Global HSE Group, welcomed the appointment.

Timpson said he looks forward to contributing to the firm’s work.

The company stated the appointment supports internal growth and ongoing BSR projects.

Global HSE Group is based in the UK.

SFPE 2025 Annual Conference & Expo: Registration opens for Vancouver event

SFPE announces registration for 2025 event in Canada

The Society of Fire Protection Engineers (SFPE) has announced that registration is now open for its 2025 Annual Conference & Expo.

According to SFPE, the event will take place from 21 to 23 October at The Westin Bayshore in Vancouver, British Columbia, Canada.

The conference will coincide with the Society’s 75th anniversary.

The organisation stated that the conference will bring together engineers and professionals from across the fire protection and fire safety sectors.

It added that attendees will be able to access more than 14 hours of accredited professional development content.

Presentations, keynote and panels confirmed for conference

SFPE reported that this year’s conference will feature over 50 technical presentations.

Topics will include building design, battery fires, wildland urban interface risks, structural fire engineering, emerging infrastructure technologies and case studies.

Additional sessions will address human behaviour, fire modelling, AI and digitalisation in fire safety engineering.

The conference keynote will be delivered by Fire Chief and General Manager of the City of Vancouver, Karen Fry.

According to SFPE, a panel on Single Egress Design will be featured, along with poster sessions and dedicated content on SFPE Foundation research.

SFPE to honour award recipients at anniversary event

As reported by SFPE, the 2025 event will also include the presentation of its annual awards.

These awards will recognise recipients for their work in engineering, research, education and service to the fire safety profession.

The organisation confirmed that both SFPE and SFPE Foundation award winners will be honoured during the event.

This will form part of the Society’s wider 75th anniversary celebrations.

It added that this milestone marks “seven and a half decades of advancing the science and practice of fire protection engineering worldwide”.

Strategic goals and global standards to be addressed

Amanda Kimball, PE, FSFPE, 2025 SFPE President and Committee Chair, said: “The SFPE Annual Conference & Expo continues to serve as the premier event for advancing the science and practice of fire protection engineering.”

She continued:
“This year, as we celebrate 75 years of SFPE’s leadership in the field, we will explore the next generation of performance-based design, fire modeling, risk analysis, and emerging technologies.”
“In addition to delivering high-caliber technical content, we’ll provide critical updates on SFPE’s strategic plan, which is focused on strengthening global engineering standards, elevating professional competency, and expanding the Society’s international impact.”

Chris Jelenewicz, PE, FSFPE, Chief Executive Officer of SFPE, added: “On top of the opportunities to build their professional network, fire protection engineers consistently remark to me how much they learn when attending SFPE events.”

He continued:
“We’ve lined up some of the sharpest minds in fire protection engineering at our conference and pre-conference seminars, plus the top companies in our industry to showcase their newest products and services.”
“I encourage each and every fire protection engineering professional to join us.”

Expo Hall and technical seminars to support learning

SFPE confirmed that a three-day Expo Hall will run throughout the conference.

More than 50 companies will exhibit new technologies and fire safety solutions.

Attendees will have the opportunity to meet suppliers and explore current innovations in the sector.

The organisation also noted that pre-conference seminars will be offered following the main programme.

These optional seminars are open to both registered conference attendees and non-attendees seeking technical training.

Discounted early registration is available until 9 September 2025.

SFPE 2025 Annual Conference & Expo: Summary

The Society of Fire Protection Engineers (SFPE) has opened registration for its 2025 Annual Conference & Expo.

The event will take place from 21 to 23 October at The Westin Bayshore in Vancouver, Canada.

The 2025 conference will mark SFPE’s 75th anniversary.

Over 50 presentations are scheduled across multiple fire safety engineering topics.

Attendees can earn up to 14.25 hours of professional development credits.

Karen Fry, Fire Chief of the City of Vancouver, will deliver the keynote.

A panel on Single Egress Design and research sessions from the SFPE Foundation are confirmed.

SFPE and SFPE Foundation awards will be presented during the event.

The conference will also host an Expo Hall with over 50 exhibitors.

Pre-conference seminars will follow the main event and are open to all.

Early registration discounts apply until 9 September 2025.

More information is available at sfpe.org/annual25.

Measuring modern risks: Telgian’s approach to risk-led fire protection strategy

Ralph Bless, Executive Vice President of Innovation & Excellence at Telgian Engineering & Consulting, shares insights into how engineering can shift fire safety from compliance to risk-led thinking

Industry leaders pushing for more meaningful testing protocols and a sharper focus on managing actual risk – chief among them is Ralph Bless, Executive Vice President of Innovation & Excellence at Telgian Engineering & Consulting.

Bless has been in the fire protection industry for over 43 years, beginning in sprinkler system design before moving into code consulting and engineering.

He is a licensed engineer in six states, holds multiple certifications and sits on six NFPA technical committees – currently chairing three, including NFPA 13’s Installation (SSI).

Now managing Telgian’s fire test program, he oversees all large- and medium-scale testing.

Drawing on decades of experience, including 26 years at Telgian, Bless shares how the industry can shift from a compliance-based mindset to one grounded in real-world performance and risk awareness.

In this interview, we discuss why fire testing methods need to change, how advocacy influences standards and what role engineering has in helping clients make better-informed safety decisions.

What types of clients or sectors does your team typically support in fire protection engineering?

It’s a wide range – commercial, retail, supply chain, warehousing, healthcare and some utility infrastructure, mainly power plants and similar facilities.

We also support governmental clients.

For testing, the primary focus has been on manufacturing, storage and retail.

While testing is an important part of our work, it’s actually a relatively small part in terms of revenue and overall effort.

Testing for our clients tends to be targeted on those cases that can affect one very large project or multiple sites..

Most of our testing is done at UL’s lab in Northbrook, Illinois, near Chicago, but we also test globally.

I have tests scheduled in China next month, we’re planning for Europe next year and we’re working on setting up our first test in Japan.

How would you describe the current state of fire testing within the industry?

I’d say there’s increased interest and use of fire testing across clients worldwide.

There’s growing recognition that many codes and standards are based on testing done 10 to 50 years ago and a lot has changed since then.

We wouldn’t use a 10-year-old phone today, let alone rely only on standards built on tests from 50 years ago.

While much of that data is still valid and works well for typical scenarios, technology, commodities and methods of storage and use has moved on.

We now have automated storage and retrieval systems, new healthcare setups and changes in how goods are delivered – often within hours.

That means packing more into smaller spaces and past testing doesn’t always reflect that.

One major challenge is access to nationally recognised labs that have the space, time and expertise to do the testing.

We currently test about half the year – somewhere between 20 and 25 weeks annually.

This year, we’ll probably hit 24, maybe even 26 weeks, depending on whether we can find lab space.

That’s a real issue – we’re not the only ones trying to run tests.

Where do you think current testing methods fall short in addressing real-world risk?

One of the positives with lab testing is that you can test exactly what you want – how you plan to use a space.

That’s great, but it takes time.

It can take three to nine months just to develop the test plan, agree on the scope and secure lab space.

A big challenge is limited access to labs.

Not many new labs are being built and the ones we have are getting older.

Most aren’t as tall as needed.

We’re designing buildings that are 30 meters or more – 45 meters is the tallest I’ve worked on – but most labs are capped at 15 to 20 meters.

So you have to find ways to simulate those conditions.

Lab space is one issue and having people with experience – both in the lab and on your team – is another.

You need people who understand the testing process and can guide you through it.

One of the biggest mistakes I’ve seen is clients rushing into tests without a clear plan.

Some come to us after the fact because they didn’t know what they were trying to learn or how to use the results.

You need to ask: What are the benefits, what are the risks and how will I use this data, even if the outcome isn’t what I expected?

What does a risk-informed approach to fire protection mean in practice?

When I think about a risk-based approach to fire protection, I reflect on how most systems – sprinklers, alarms – are designed using prescriptive methods.

You open a code, a standard, or a data sheet and follow what it says.

But that’s not truly assessing risk.

A risk-based approach asks: where is the fire most likely to start and where should the sprinklers go to ensure early activation and control – not because that’s what the code says, but because it’s the most effective placement.

It’s about using the tools we have and understanding how the facility operates, so we can apply risk management methods in a meaningful way.

You need to prioritise protection based on the highest risks.

Some areas have minimal fire risk or limited operational impact.

A small corner store fire is serious, but it likely won’t affect the wider community.

But a fire in a hospital or utility could disrupt services for thousands.

That’s why the risk context matters.

We use Computational Fluid Dynamics (CFD) modelling to evaluate sprinkler placement and large-scale testing to validate those models.

The models have improved over the past 10–15 years, but they’re still not enough on their own.

You can’t yet rely on a model to predict how a fire will behave and be suppressed.

You still need real-world proof.

Lastly, risk-based protection requires continuous improvement.

Countless customers we’ve worked with on fire testing have returned with new innovations.

These companies want faster throughput, more compact storage and larger buildings.

All of that changes the original assumptions, which brings them back to testing again – to verify protection and reduce business interruption.

You can meet code with a prescriptive system, but that doesn’t always mean you’ve reduced risk the way you need to.

In what ways does advocacy play a part in improving fire safety standards?

Advocacy is huge.

Most of our clients are in industries that have nothing to do with fire protection – healthcare, retail distribution, manufacturing.

Their core business isn’t fire safety, but every business has a risk appetite.

Some are willing to take more risk, others are more cautious.

To advocate effectively – for the client and for the community – you first have to understand where the client is coming from and explain the benefits in clear terms.

For example, I can say: if there’s an incident, reopening this building might take six months.

But if you do it right, it might only take three or four days.

That kind of impact matters to both the business and the community.

 We can reduce the size of the fire, the risk to emergency responders and the impact to the business.

 In allowing the business to return to functioning quicker, the community can still be served by the business.

Advocacy happens in two parts.

First, with the client – building a relationship, helping them understand their risks and showing how fire protection helps meet their business goals.

Then, once we’ve done the testing and have results, we advocate to the broader community – explaining why our approach, even if different from the code, is appropriate and more effective.

One example comes from sprinkler design.

Codes are written around either controlling or suppressing a fire – not extinguishing it.

Control means the fire holds steady until the fire department arrives.

Suppression reduces it, but doesn’t fully put the fire out.

Extinguishment goes beyond that and although it’s not a design requirement, interest in it is growing.

Advocacy matters – not just for the client, but also to show the community that doing something beyond the code can make a real difference.

How can building owners or facility managers better use fire testing data in their risk decisions?

First, they need to start using it.

There’s growing interest, but many don’t realise this is even an option.

Every building code, fire code and standard I’ve worked with around the world allows for fire testing.

They need to understand where the value is and how to engage with the process.

It starts with recognising their specific risks.

Then they need to ask: how is what I’m doing different from the current standard and how can I improve protection? This ties back to the earlier risk question – just because a system is code compliant doesn’t mean it meets your risk appetite.

A code-compliant system might mean you lose everything inside the building, but the structure stays intact.

That might be acceptable in some temporary-use cases, but for most facilities we work with, that level of risk – even if technically compliant – isn’t really acceptable.

This was originally published in the June 2025 Edition of International Fire & Safety Journal. To read your FREE copy, click here

Updated Level 2 certificate in passive fire protection announced by ASFP

ASFP introduces modular certification in the UK fire sector

The Association for Specialist Fire Protection (ASFP) has announced updates to its Institute of Fire Engineers (IFE) Level 2 Certificate in Passive Fire Protection.

According to ASFP, the updated qualification is now assessed entirely through an online multiple-choice exam format.

Candidates must pass four unit exams to obtain the full Level 2 Certificate.

Modular exams introduced for passive fire learners

ASFP stated that each of the four exams focuses on a distinct subject area within passive fire protection.

The four units cover: structural frame of the building; fire-resisting walls, floors, ceilings and glazing; fire stopping including cavity barriers and the building envelope; and fire doors and shutters.

The organisation added that candidates may also take individual unit exams to achieve a Level 2 Award Qualification in one specific area, rather than the full certificate.

This format is designed to meet demand for more targeted training options.

Flexibility and accessibility prioritised in new exam format

The updated qualification has been designed to allow learners to participate remotely, regardless of location.

ASFP explained that this shift to an entirely online multiple-choice assessment aims to improve access and convenience for those working in the fire protection industry.

It noted that the new structure enables professionals to gain recognition in individual specialisms or pursue full certification as suits their needs.

The organisation said this flexibility may benefit both individuals and employers aiming to align skills with operational requirements.

Professional development aligned with industry needs

ASFP said the modular structure was created in response to requests from industry professionals for more relevant and accessible learning routes.

It stated that these changes are intended to support professional development and help ensure that those working in passive fire protection have access to current technical knowledge.

The qualification aligns with evolving best practices across the sector, according to ASFP.

The organisation encouraged those interested to visit its website for further information on registration and assessment details.

ASFP launches new passive fire protection qualification structure: Summary

The Association for Specialist Fire Protection (ASFP) has updated its IFE Level 2 Certificate in Passive Fire Protection.

The changes apply to professionals based in the United Kingdom.

The qualification is now assessed entirely through online multiple-choice exams.

To gain full certification, candidates must pass four unit-based exams.

The four units are: structural frame, fire-resisting components, fire stopping and building envelope, and fire doors and shutters.

ASFP also offers Level 2 Award Qualifications for individual units.

This modular approach allows participants to select units relevant to their current or future roles.

The qualification structure was developed in response to feedback from industry professionals.

ASFP said it aims to increase accessibility and relevance through the new format.

Details on registration and exam availability are available on the ASFP website.

France establishes joint fire resistance research lab for aircraft safety

Safran collaborates with French institutions on fire resistance research

Safran Group has announced the launch of a joint research laboratory in France focused on fire resistance in aerospace engineering.

According to Safran, the new facility – called Flames (Fire Laboratory for Assembly, Metal and Composite Engineering & Safety) – is a partnership between Safran Nacelles, the Insa Rouen Normandie, the University of Rouen Normandie and the CNRS.

The four-year initiative aims to support future developments in aircraft nacelle design by improving knowledge in fire resistance and related safety technologies.

Laboratory supports development of future nacelle systems

Safran stated that the research carried out at Flames will feed into the early stages of nacelle system development.

It explained that the programme is designed to anticipate changes in regulatory and technical requirements, with the findings intended to enhance fire protection measures in aircraft design.

Safran Nacelles, which leads the nacelle design and integration activities within the Safran Group, will use results from the Flames laboratory to inform its upcoming engineering work.

Research hosted in specialist university laboratories

The Flames laboratory is based within two facilities – the Materials Physics Group (GPM) and the Interprofessional Research Complex in Aerothermochemistry (Coria) – which operate under joint supervision by CNRS, the University of Rouen Normandie and Insa Rouen Normandie.

The laboratory is equipped to carry out full test campaigns using representative samples and will support the development of simulation models and optimised physical testing processes.

Fabienne Lacorre, Technical Director at Safran Nacelles, said: “This partnership with the Insa Rouen Normandie will enable us to work on complex problems, combining Safran Nacelles’ technical and industrial expertise with the academic excellence of the teams at the GPM and Coria laboratories.

“Flames strengthens our ability to innovate and meet tomorrow’s technical challenges.”

Collaboration includes engineers and researchers

The Flames team includes engineers from Safran Nacelles, researchers from CNRS, and teacher-researchers from the Insa Rouen Normandie and the University of Rouen Normandie.

Safran confirmed that Insa Rouen Normandie will also recruit one engineer and one teacher-researcher to enhance the team’s capabilities.

Mourad Boukhalfa, Director of the Insa Rouen Normandie, said:

“We are delighted that the work carried out in simulation and experimentation on combustion in turbojet engines has been extended to new areas, in particular the behaviour of innovative materials subjected to extreme thermal conditions in the aeronautical industry.

“This collaboration involves two research laboratories of excellence, Coria and the GPM, both co-founders of the Labex EMC3 and the Institut Carnot ESP, alongside Safran Nacelles, a leading industrial player.”

France establishes joint fire resistance research lab for aircraft safety: Summary

Safran Group has launched a fire resistance research laboratory in France.

The project is a partnership with the Insa Rouen Normandie, the University of Rouen Normandie and the CNRS.

The laboratory is named Flames, standing for Fire Laboratory for Assembly, Metal and Composite Engineering & Safety.

It will run for four years.

The aim is to improve fire resistance understanding for aircraft nacelle development.

The research will support early-stage aerospace engineering and regulation compliance.

Flames is based at GPM and Coria, two laboratories under CNRS and local university supervision.

Testing capabilities will enable physical and simulated fire resistance assessments.

Safran Nacelles engineers will work alongside university researchers.

Two new staff will be hired by Insa Rouen Normandie to expand the team.

Findings will feed directly into future Safran Nacelles designs.

The programme contributes to aerospace fire safety research in France.

Fire Protection Engineers establish Canadian national body

New Canadian organisation to support engineering community

The Society of Fire Protection Engineers (SFPE) has announced the launch of a new national body dedicated to supporting fire protection engineers in Canada.

According to SFPE, the new entity – SFPE Canada/Association des ingénieurs en protection incendie Canada – will focus on advancing professional development, collaboration, and technical standards tailored to the Canadian fire safety context.

SFPE explained that SFPE Canada will operate in a manner similar to SFPE Europe, serving as a national forum for fire protection engineering in Canada and facilitating engagement with SFPE’s wider international programmes.

Professional development and collaboration are core priorities

The organisation said that SFPE Canada will focus on a range of activities including regional events, tailored training, and research collaboration.

Chris Jelenewicz, Chief Executive Officer of SFPE, said: “We are thrilled to announce the launch of SFPE Canada as part of our ongoing commitment to strengthen and expand the global fire protection engineering community.

“SFPE Canada will serve as a vital platform for professionals throughout Canada to engage with SFPE’s resources, events, and initiatives, while also addressing regional needs and priorities.”

The society added that SFPE Canada will provide structured opportunities for local chapters and practitioners to contribute to national efforts in education and best practice.

SFPE Canada to support national representation

SFPE stated that the new body will also represent the interests of fire protection engineers at a national level.

Shaun Kelly, SFPE Director at Large, said: “The creation of SFPE Canada marks a major milestone for fire protection engineering across the country.

“It will offer new opportunities for SFPE Canadian Chapters and fire protection engineers in Canada to connect, collaborate, and contribute to advancing fire protection engineering best practices and educating the fire safety community nationally.

“We are excited to build a vibrant community for fire protection engineers to engage, and build an organisation that will serve as a united voice for fire protection engineers at a national level.”

According to the organisation, SFPE Canada will work alongside government agencies, industry bodies and academia to advocate for the discipline.

Launch comes amid growing demand for technical leadership

The SFPE said that the timing of SFPE Canada aligns with current needs within Canada’s built environment and fire engineering sector.

Kieran Ager, Chair of the SFPE Canada Steering Committee, said: “This is an incredibly exciting time for Canada with one unified voice representing Fire Protection Engineers across Canada.

“We can only hope to aspire to the leadership and success exhibited by other established groups (such as SFPE Europe) in advancing fire safety.

“Establishing SFPE Canada could not be timelier with meeting the challenges and opportunities faced within the Canadian built environment.”

The SFPE noted that the creation of SFPE Canada follows the 2019 formation of SFPE Europe, which the organisation credited with building a strong regional platform for its members across Europe.

Fire Protection Engineers establish Canadian national body: Summary

The Society of Fire Protection Engineers has launched SFPE Canada.

The new body is formally titled SFPE Canada/Association des ingénieurs en protection incendie Canada.

The SFPE reported that the organisation will promote training, technical development, and regional collaboration.

SFPE Canada will operate similarly to SFPE Europe, which was formed in 2019.

Chris Jelenewicz is the Chief Executive Officer of SFPE.

Shaun Kelly is the SFPE Director at Large.

Kieran Ager is the Chair of the SFPE Canada Steering Committee.

The SFPE said SFPE Canada will work with local chapters and stakeholders across government, industry, and academia.

Activities will include regional events, professional training, and research collaboration.

SFPE Canada aims to strengthen national representation of Canadian fire protection engineers.

More details on programmes and leadership will be announced in the coming months.

All information in this article is sourced from the Society of Fire Protection Engineers.

For more information, visit www.sfpe.org.