International Water Mist Conference 2026 will take place in Prague, call for papers published

Images: Copyright IWMA

Annual International Water Mist Conference returns this October

Max Lakkonen (IFAB), President of the International Water Mist Association (IWMA) has announced that the 25th International Water Mist Conference (#IWMC2026) will take place in Prague, Czech Republic, on 7th and 8th October 2026.

The event schedule is now available on the IWMA webpage. The first important date was 15th December, when the call for papers was issued. Another important date: 15th April 2026 – the abstract deadline!

See call for papers here.

15th April is also the date when the conference webpage will be activated and the ticket sale starts.

Companies wishing to support the event can already book tabletops for the exhibition, which will run alongside the conference.

The conference will be held at The Grand Hotel International. IWMA President Max Lakkonen will open the event.

One of the conference’s highlights will be the bestowal of the 2026 Ragnar Wighus Award with which IWMA honours young scientists who dedicate their master or Ph.D. thesis to water mist.

The deadline to submit applications for the Ragnar Wighus Award is 31st March. In 2026, this prestigious award will be presented to the author of the best master thesis related to water mist technology.

The IWMA Scientific Council, chaired by Kemal Sarp Arsava (Norwegian University of Science and Technology) will evaluate the submissions. The winner will be invited to present the winning thesis in Prague.

IWMA can look back at a successful 2025 event with nearly 170 attendees from 25 countries. Max Lakkonen commented: “We have been positively surprised by the number of attendees and sponsors, which clearly demonstrates the strong momentum of our industry.”

The organization’s aim is now – obviously – to repeat this success in Prague.

For more details regarding the call for papers, speaker slots, sponsorship booking forms, the Ragnar Wighus Award, please contact the IWMA headquarters in Hamburg. We are also happy to help you with other enquiries regarding smaller droplets to fight fires.

Other opportunities to meet in 2026:

  • Fire Sprinkler International, Paris, France, 22nd and 23rd April 2026
  • The Fire Safety Event, Birmingham, UK, 28th – 30th April 2026
  • Interschutz 2026, Hanover, Germany, from 1st to 6th June 2026

What is a K Class Fire Extinguisher Used For?

Fire extinguishers are critical tools for stopping small fires before they spread, but it’s vital to use the correct type for each kind of fire. 

Using the wrong extinguisher can even make a fire worse.

Spraying water on a kitchen grease fire will only spread the flames. 

One particularly dangerous class of fire occurs in kitchens when cooking oils or fats overheat. 

These high-temperature grease fires. 

These are classified as Class K fires in the US, equivalent to Class F in the UK. 

They ignite suddenly and burn intensely. 

They require a special kind of extinguisher formulated specifically to handle burning oil and fat safely. 

This is where the Class K fire extinguisher comes into play: it is designed to tackle blazing cooking oils and keep a kitchen fire from turning into a disaster.

What is a K Class Fire Extinguisher Used For?

what is k class fire extinguisher

A Class K fire extinguisher is used for fires involving cooking oils, fats, and grease.

These are the types of fires that erupt in kitchens due to overheated oil. 

This extinguisher is specifically designed to combat blazing oil in deep fryers, frying pans, griddles, and other commercial cooking equipment. 

According to fire safety standards, a Class K extinguisher is the only effective means to safely put out fires fueled by vegetable oils, animal fats, or grease in cooking appliances.

What Makes a Class K Fire Extinguisher Unique

What makes the Class K extinguisher unique is its extinguishing agent. 

Unlike a water or dry powder extinguisher, a Class K unit contains a special wet chemical solution.

This is often potassium acetate or similar compounds. 

These chemical solutions are extremely effective on hot grease fires. 

When you discharge a Class K extinguisher onto burning oil, the wet chemical comes out as a fine mist and reacts with the fat. 

This reaction forms a thick, soapy foam blanket over the oil.

This process is called saponification

The foam smothers the flames by sealing off the oil from oxygen and also cools the oil below its ignition temperature, preventing the fire from reigniting.

Basically, the Class K extinguisher both starves the fire of oxygen and removes the heat, which are two essential elements needed for the fire to continue burning.

Why Can’t I Use a Different Fire Extinguisher on a K Class Fire?

why cant use other type fire extinguisher

You cannot substitute other types of fire extinguishers for a Class K fire because grease fires behave very differently from ordinary combustibles or flammable liquid fires

Fires involving cooking oil or fat require Class K extinguishers because no other extinguisher type can reliably or safely extinguish them. 

Using the wrong type can be ineffective or downright dangerous. 

Here’s why Class K fires need their own extinguisher and why other extinguishers won’t work:

Water Will Make a Grease Fire Worse

Never throw water on a burning pan of oil. 

Water is denser than oil, so it sinks below the burning grease and instantly turns into steam. 

As it evaporates, it expands to about 1,600 times its volume, erupting upward and carrying burning oil droplets with it. 

This causes the fire to explode and spread. 

Instead of cooling the fire, a splash of water can fling the flames to new areas (and possibly onto anyone nearby). 

Water and oil don’t mix, and using water will spread a Class K fire.

Standard Foam or Powder Extinguishers Aren’t Effective

Class B foam or dry powder extinguishers, which work for petrol or chemical fires, are not formulated for the extreme high-temperature conditions of cooking oil fires. 

Deep fryer oil can reach temperatures far above the ignition point of other flammable liquids.

A regular dry chemical extinguisher might knock down the flames briefly, but it does not cool the oil sufficiently. 

The oil can remain hot enough to reignite on its own a moment later.

This is essentially a ticking time bomb of fire. 

Also, dry chemical agents (like monoammonium phosphate powders) can form a crust on top of the oil that looks like it’s out, while underneath the oil is still burning or hot. 

When that crust is disturbed or if heat builds up again, the fire can flash back. 

Because they lack the cooling and smothering foam effect, normal Class B/C extinguishers often fail to prevent re-ignition of grease fires.

Co₂ (Carbon Dioxide) Extinguishers Aren’t Suitable

A CO₂ extinguisher fights fire by flooding the area with carbon dioxide to displace oxygen and cool the flames. 

However, with a Class K fire, CO₂ will only cool the surface of the oil while the deeper oil remains extremely hot. 

Once the CO₂ gas dissipates, the oxygen returns and the still-hot oil can reignite itself. 

Moreover, the high-pressure discharge from a CO₂ extinguisher can splatter the burning oil around, potentially spreading the fire to new areas. 

Thus, CO₂ might temporarily appear to put out a grease fire, but the fire is very likely to come roaring back.

How to Use a K Class Fire Extinguisher

how to use k class fire extinguisher

If a cooking oil fire breaks out and it’s safe for you to attempt extinguishing it, you should follow proper steps to use the Class K fire extinguisher. 

Using this extinguisher is similar to using any portable extinguisher, but there are a few additional considerations for grease fires. 

Always remember the acronym PASS:

  • Pull
  • Aim
  • Squeeze
  • Sweep

This acronym outlines the basic steps for knowing how to use a fire extinguisher:

  • Pull the safety pin out of the extinguisher’s handle. This pin prevents accidental discharge; pulling it will unlock the handle.
  • Aim the nozzle or hose at the base of the fire, not at the flames. In a grease fire, that means aim where the oil is burning (the surface of the oil). You want to hit the burning oil directly with the extinguishing agent.
  • Squeeze the handle slowly and evenly. This will start the flow of the wet chemical agent. Class K extinguishers are typically designed to discharge in a controlled, gentle spray to avoid splashing the oil.
  • Sweep the nozzle from side to side across the base of the fire while continuing to aim at the oil. Cover the entire area that’s on fire with the mist, and keep spraying until the flames are completely out.

Keeping Safe

While performing these steps, maintain a safe distance. 

It’s recommended to start about 8 to 10 feet (roughly 3 metres) back from the fire and move forward carefully as the flames subside. 

Holding the extinguisher upright, direct the spray low and evenly over the burning oil. 

The wet chemical will create a foamy layer as it contacts the hot grease. 

Make sure to coat the whole surface of the burning oil with this foam. 

This ensures that the fire is fully smothered and cooled. 

Class K extinguishers are engineered to discharge at a lower pressure than other types precisely to avoid splattering the burning oil. 

However, a steady hand control is important to keep the spray directed where it’s needed.

As you fight the fire with the extinguisher, avoid getting too close to splattering grease and never attempt to carry a burning pan outside.

Let the extinguisher do the work of dousing the flames. 

Keep discharging the agent until you’re absolutely sure the fire is out. 

After Extinguishing the Fire

After the flames appear to be extinguished, watch the area closely for a minute or two in case of re-ignition. 

The wet chemical foam should prevent the oil from reigniting, but it’s wise to be vigilant. 

Once everything is under control, ventilate the area if possible. 

Remember to call the fire brigade or emergency services if the fire was significant or if there’s any doubt it might flare up again. 

Also, any used extinguisher will need to be recharged or replaced promptly.

Suppression Systems

If the kitchen has an automatic hood fire suppression system, activate that first or ensure it has activated before using the portable extinguisher. 

The hood system will release its own suppressing agent and often shut off the heat source to the cooking equipment. 

This reduces the intensity of the fire and prevents new fuel from feeding it, making it safer and more effective when you follow up with the handheld Class K extinguisher.

Where are K Class Fire Extinguishers Usually Found?

where k class fire extinguisher found

Class K fire extinguishers are typically found anywhere there is a significant risk of cooking oil or grease fires. 

This means they are most often located in commercial and institutional kitchens. 

These are some of the common places you’ll see Class K extinguishers installed and ready for use:

Restaurant and Café Kitchens

Restaurants, diners, cafeterias, and coffee shops with kitchens all contain cooking appliances that use oil or grease. 

Class K extinguishers are normally required in these kitchens, often positioned near deep fryers or grill areas.

Hotel and Catering Kitchens

Hotel restaurants, banquet hall kitchens, and catering companies prepare food on a large scale and usually have multiple high-temperature cooking stations. 

These sites will have Class K units handy in the cooking areas to address any fryer or skillet fires.

Food Trucks and Mobile Kitchens

Food trucks, street food stalls, and mobile catering vans often operate with compact deep fryers or woks in a tight space. 

A Class K extinguisher is crucial in these environments due to the elevated risk of grease fires in a confined area.

Institutional and Cafeteria Kitchens

Large kitchens in schools, universities, healthcare buildings, nursing homes, prisons, and other institutions commonly cook for many people using industrial-sized equipment. 

These facilities will have Class K extinguishers in the galley or kitchen area to meet fire codes and protect occupants.

Bakeries and Other Food Prep Facilities

Bakeries, pastry shops, or any food production facility that involves frying or high temperature oils will also keep a Class K extinguisher nearby. 

Any facility with commercial cooking equipment is likely to have one.

Key Takeaways

Class K fire extinguishers play a crucial role in kitchen safety. 

They are uniquely formulated to tackle the high-temperature oil and grease fires that frequently occur in cooking environments.

These are fires that other extinguishers simply cannot deal with safely. 

Statistics show that a large share of fires in restaurants and cafes start in the kitchen, where hot cooking equipment can ignite oils and fats. 

Having a Class K extinguisher on the premises (and knowing how to use it) is therefore an essential safeguard for anyone who operates commercial cooking equipment.

A Class K fire extinguisher is a kitchen’s best defense against one of its most perilous fire hazards, and ensures that a fire doesn’t turn into a tragedy.

Desu Systems outlines 2026 priorities after 20th anniversary milestone

Desu Systems plans price changes and more site visits

Desu Systems BV has published a 2025 reflections and 2026 outlook update, written by Founder and CEO Ronald Verkroost and Managing Director Emile Hippe.

The company said 2025 marked 20 years since Desu was founded.

Verkroost and Hippe said the anniversary prompted a review of progress and priorities heading into 2026.

Desu Systems reorganises into four divisions

According to Desu Systems, it introduced structural changes during 2025 intended to improve how it supports clients.

The company said it is now organised into four divisions covering Flame & Gas Detection, OGI & Methane Emission Monitoring, Kitchen Fire & Hygiene Solutions and Special Products.

Desu Systems said each division is led by teams focused on specific industries and operating environments.

It added that the goal is to provide more relevant expertise and a smoother experience from first contact through long-term support.

Staffing and in-person support plans

Desu Systems said it plans to increase travel capacity in 2026 so its teams can spend more time on site with clients.

The company said this is intended to support in-person engagement when needed, across different locations.

It also said it welcomed new colleagues during 2025, naming Yifat, Arend, Vivienne, Liza, Sven and Jeffrey.

Desu Systems added that 2025 was the first year with Emile Hippe in the Managing Director role.

Product development and events attended

Desu Systems said it launched the SharpEye 20/20Q flame detector during 2025, positioning it as designed for rapid detection in complex industrial settings.

The company said it also completed early-stage development of the K-Star automatic degreasing system, which it described as focused on kitchen hygiene and fire safety.

Desu Systems said the K-Star system is expected to launch in mid-2026.

It added that it improved stock levels, expanded certifications and streamlined support processes during the year.

The company said it attended LNGcon, StocExpo, Host Milano and the Fire Safety Event as part of its 2025 engagement programme.

2026 participation and pricing changes

Desu Systems said it plans to participate in Intersec, the Fire Safety Event and Interschutz in 2026.

It described these events as opportunities for face-to-face meetings to discuss challenges, opportunities and partnerships.

The company said it will implement price adjustments on select product lines early in 2026, citing increased supplier costs including raw materials, compliance and shipping.

Desu Systems said account managers will support customers with updated pricing, lead times and forward planning for 2026 projects.

UAFA 2025: TracPlus explains how data is reshaping US wildfire aviation

TracPlus executive Todd O’Hara discusses the major challenges highlighted at UAFA 2025 and outlines how agencies are using data, technology and modernised systems to improve aerial wildfire response

The United Aerial Firefighters Association (UAFA) held its 2025 Annual Conference in Boise, Idaho, bringing together aerial firefighting operators, agency leaders and technology providers to examine the state of aerial wildfire operations in the United States.

The programme focused on operational readiness, technology modernisation, workforce issues and the rapid evolution of mission intelligence solutions shaping the sector’s future.

Following the event, International Fire and Safety Journal spoke with Todd O’Hara, Chief Product and Revenue Officer at TracPlus, about the themes that dominated this year’s discussions and the role of integrated, real-time data during complex wildfire response.

What are the key themes or challenges that shaped discussions at this year’s UAFA Conference, particularly around aerial firefighting operations?

One major theme is the reality that a lot of aviation and aerial firefighting systems are decades old.

In many cases, the people who built them are no longer around, and the institutional knowledge has gone with them.

That contributes to inefficiencies, data gaps and weaker mission outcomes.

A second theme is the need for real-time operational intelligence.

Agencies need cleaner, more actionable data so they can coordinate better, reduce waste and respond more effectively in high-stakes environments.

Safety and accident prevention is another big focus.

Accidents almost never happen “out of the blue”, there is usually a pattern or chain of events leading up to them.

With the right tools, you can surface non-compliant behaviour before something goes wrong, and that safety lens is part of a lot of discussions.

How is TracPlus evolving its platform to support decision-making and crew safety during complex wildfire response efforts?

We have evolved from our roots as a hardware tracking provider to a SaaS-first company focused on delivering operational intelligence at scale.

A key step in that evolution is FireFlyte, our enterprise platform for aerial firefighting agencies and operators.

It turns raw operational data into actionable insights across four areas: Aerial Firefighting, Safety and Risk Management, Operations and Finance.

A concrete example is CAL FIRE’s new Aviation Tracking and Information System (CATIS), powered by FireFlyte.

CATIS replaces their legacy internal system and the support risks that go along with it.

It gives them faster access to critical information, more efficient aircraft deployment and mission insights and analytics with greater speed and accuracy.

Underpinning it with FireFlyte also provides a platform for more connected processes internally across pre-, during and post-mission activities, where training connects to operations and learning from every mission.

Overall, the goal is real-time, integrated operational intelligence that improves decision-making and safety during complex incidents.

Are there any updates or developments in your US strategy?

Our work with CAL FIRE is proof for us that we are making a meaningful difference where it matters.

They are a flagship customer in the US and a major endorsement of our approach.

CAL FIRE’s CATIS programme shows our ability to replace ageing, home-grown systems with modern, scalable cloud software tailored to aerial firefighting.

We can support fire management operations of all sizes around the world, but FireFlyte, the underlying platform that drives CATIS, positions us to work effectively with large, complex US agencies in a few specific ways.

It helps move them off legacy systems and manual processes.

It supports standardisation on a cloud-based platform.

It enables mission-critical operations to scale across multiple bases and fleets.

Thinking about the conversations we had at UAFA, there’s a general agreement that this is the direction everyone wants to go. Everyone wants to find ways to achieve better outcomes, and we can see a path forward where a foundation based on FireFlyte can modernise other US programmes over time.

From your perspective, where are agencies and operators seeing the most value from real-time tracking and mission intelligence data?

There are a few clear areas where value shows up quickly.

One is operational coordination and efficiency, because cleaner, more actionable data improves coordination, reduces waste and makes resource deployment more effective.

Another is visibility into operations and outcomes.

A lot of the market has historically been “dots on a map”, but the bigger shift is towards understanding mission outcomes, resource utilisation and operational patterns.

Safety is also a major value area.

Using data to identify non-compliant behaviour and risk indicators before they lead to incidents is where data becomes genuinely lifesaving.

Finally, there is proactive decision-making.

With the depth of historical and real-time data we have, agencies can start to anticipate resource needs and optimise deployments based on how a mission is evolving, not just what has already happened.

In short, the most value is where data directly supports coordination, safety and faster, better decisions in the field.

What emerging operational or technological trends should wildfire agencies be preparing for over the next few seasons?

One trend is the shift from basic tracking to full operational intelligence.

The move is from “where is the aircraft?” to “how effective are we being?”, with an emphasis on mission effectiveness, patterns and utilisation, not just positions.

A second trend is proactive mission planning.

Using historical and real-time data, plus machine learning and AI, agencies can move from reactive to proactive operations by anticipating resource requirements, optimising deployment strategies and identifying challenges before they affect the mission.

Integrated safety and compliance tools are also becoming more important, including real-time safety monitoring, automated compliance reporting and stronger documentation for operational accountability and regulatory requirements.

There is also the continued modernisation of legacy systems.

Many agencies will need to replace decades-old, manually driven systems with modern, cloud-based platforms

The overarching theme is that the agencies who will lead over the next few seasons are the ones that treat technology and data as the foundation of operational excellence, not just as a supporting tool.

HEN Technologies raises $22M to develop an operating system for fire defence

Financing targets faster extinguishment and lower water use

HEN Technologies has closed an oversubscribed $20 million Series A round plus $2 million in venture debt to accelerate deployment of its Fluid-IQ predictive AI platform built on advanced fluid dynamics hardware.

The company said the financing was announced on Thursday 18 December 2025 and takes its total capital raised to over $30 million.

O’Neil Strategic Capital led the round, with participation from NSFO, Tanas Capital and z21 Ventures.

Silicon Valley Bank provided the venture debt.

Fluid-IQ and HEN Technologies data approach

HEN Technologies said the capital will fund expansion of its IoT-enabled hardware infrastructure as it works to capture what it described as the industry’s first comprehensive operational fire dataset.

Alex Garden, Managing Partner of O’Neil Strategic Capital, said: “We’re proud to lead this round and back HEN’s vision to create an entirely new category: the intelligent operating system for fire defense.”

“Their hardware-first approach has already proven transformative in the field with more than 1,000 organizations globally.

“By building the data infrastructure that enables predictive AI, HEN is positioned to become the essential platform for how the world fights fires.

“This is how category-defining companies are built.”

Wildfire context and technical claims

HEN Technologies linked the announcement to increasing wildfire costs and fire behaviour, including a claim that the Palisades fire in Los Angeles caused over $50 billion in damages.

Dr. Sunny Sethi, CEO of HEN Technologies, said: “Wildfires are more frequent, and modern structures burn eight times faster than legacy structures.

“Incremental changes cannot keep up.

“That’s why we are building transformational technology using Physics-Informed Neural Networks (PINNs) and AI-powered decision support.

“We are moving beyond optimizing tools to optimizing strategy.

“This is essential infrastructure for climate resilience and national security.”

The company said its IoT-enabled systems deliver three-times faster extinguishment and reduce water usage by 67% while capturing data on flow, pressure and pattern performance.

Partner network and scaling priorities

Akshay Thakor, COO of HEN Technologies, said: “We are capitalizing on our momentum by scaling three critical areas: partner enablement, customer experience and technical operations.

“We are investing heavily in our distributor platform to empower our partners and increase our field presence to ensure agencies can experience our products in action.

“To sustain this growth, we are scaling our sales, operations and technical teams to maintain the highest level of execution as we deploy worldwide.”

HEN Technologies said its footprint includes over 100 distributors operating in 20 countries.

The company said it is scaling a team of more than 100 product demonstration specialists to support hands-on evaluation of its technology.

Raj Singh, Managing Partner at z21 Ventures, said: “Their proprietary fluid dynamics and AI platform don’t just improve efficiency; they deliver a paradigm shift in firefighting capabilities.

“This investment reflects our strong conviction in their technology, their exceptional team and the profound impact they will have on public safety globally.”

Sonic Fire Tech rolls out fire suppression system for residential wildfire defence

Fire suppression for homes without water

Sonic Fire Tech has announced the commercial rollout of its Sonic Home Defense system, a residential wildfire defence solution that uses infrasound technology and is designed to prevent ignition without water, chemicals or delay.

The company said the system is intended to detect and neutralise embers before they spark.

Sonic Fire Tech said the system uses low-frequency, inaudible sound waves.

The company said it has been named a CES 2026 Innovation Awards Honoree by the Consumer Technology Association for the system in the Smart Home product category.

Fire suppression approach focused on embers

Sonic Fire Tech said embers are the cause of over 90% of wildfire-related home ignitions.

The company said its Sonic Home Defense system provides protection “inside and out” without water, flooding or foam.

Sonic Fire Tech said the system aligns with Insurance Institute for Business and Home Safety (IBHS) and California State Zone Zero Perimeter Defense guidelines for wildfire-prepared homes.

Installations underway in California communities

Sonic Fire Tech said its first installations are underway in Los Angeles, Santa Barbara and Lake Tahoe.

The company said it has received hundreds of homeowner requests for demonstrations.

Personal experience and commercialisation plans

Remington Hotchkis, Chief Commercialization Officer, said: “Wildfire danger isn’t abstract for me, it’s personal.

“When my former home in Altadena burned in the Los Angeles fires earlier this year, I saw firsthand that it wasn’t the wall of flame that destroyed homes, it was the embers.

“In that moment I realized that this part of the global wildfire crisis is solvable.”

Sonic Fire Tech said Hotchkis developed a commercialisation plan through an MIT entrepreneurship competition and later joined forces with Geoff Bruder and Sonic Fire Tech to bring the technology to homeowners in California.

Design, power resilience and app controls

Sonic Fire Tech said the system can be installed with concealed ducting through gutters or attics.

The company said the system is designed to operate off grid during power outages via backup batteries.

Sonic Fire Tech said homeowners can receive alerts and use remote control through the Sonic Alert App.

Industry and government comments on wildfire risk

Geoff Bruder, CEO and co-founder, said: “Across California, homeowners who live in fire zones face skyrocketing insurance costs, canceled policies, and stricter building codes.

“We’ve spent years in research, engineering, and field testing and now, we’re putting our part of the solution into action, making life safer for families, neighborhoods, and the first responders who protect them.”

Hayk Hovhannisyan, Senior Manager of Wildfire Risk Operations at PG&E, said: “Over the last couple of years, PG&E has built a portfolio of wildfire risk mitigation strategies, and we work closely with communities to solve these challenges.

“Technologies such as Sonic Fire Tech can help bridge the gap between detection and response.

“These technologies play a vital role in bringing cost-effective wildfire risk reduction solutions to homeowners.”

Ricardo Lara, California State Insurance Commissioner, said: “As insurance companies are retreating from the state, we’re at a critical point where the department has finally embraced technology.

“We can’t have innovators siloed, because we want to hear and know about your technology.

“We need to be at the forefront of this innovation.”

California demo events start in November

Sonic Fire Tech said community demo events begin in November across California.

The company said homeowners, homeowners’ associations and builders can sign up to reserve a live demonstration via its website.

What this means for wildfire protection planning

Fire and rescue leaders, emergency management teams and wildfire prevention coordinators may monitor how waterless, fixed residential systems are being positioned to reduce ember ignition risk at the property level.

Fire-protection contractors, system installers and building services engineers may assess how concealed ducting routes through gutters or attics affect survey work, installation sequencing and maintenance access.

Facility and community stakeholders, including homeowners’ associations and builders operating in California fire zones, may track how backup battery operation during power outages and app-based alerts are being packaged for residential use.

Insurance and risk professionals may note the public comments included in the announcement, alongside references to IBHS guidance and California State Zone Zero Perimeter Defense guidelines, when considering mitigation measures described for wildfire-prepared homes.

IWMA 2026 call for papers opens ahead of Prague conference

Call for papers deadline dates released for IWMC2026

IWMA (International Water Mist Association) has published a call for papers for the 25th International Water Mist Conference (#IWMC2026), set to take place in Prague, Czech Republic, on 7 and 8 October 2026.

The organisation said the announcement was issued from Hamburg on 15 December 2025.

IWMA confirmed that IWMA President Max Lakkonen (IFAB) will open the event.

Call for papers deadline set

IWMA said the call for papers has been published for IWMC2026.

The abstract deadline is 15 April 2026.

Exhibition tabletops and ticket sales timeline

Bettina McDowell, IWMA CEO, said: “Sponsors can now start booking their tabletops for the exhibition which will run alongside the conference.

“All necessary forms can be found on the IWMA webpage.

“The sale of tickets will start on 15th April 2026.

“Delegates can profit from special prices until 15th August when the early bird period will end.”

Ragnar Wighus Award submission window

IWMA said submissions to apply for the Ragnar Wighus Award must be received by 31 March.

The organisation said the 2026 award will go to the author of the best master thesis dealing with water mist.

IWMA said its scientific council will evaluate submissions.

The council is chaired by Kemal Arsava of the Norwegian University of Science and Technology, according to IWMA.

IWMA added that the winner will be invited to introduce the thesis at the event.

Planning takeaways for conference participants

The dates set out a sequence of deadlines for prospective speakers, award applicants and delegates.

IWMA’s timetable places the abstract deadline and ticket sales start on the same date, 15 April 2026.

The early bird period is due to end on 15 August 2026, the organisation said.

Tabletop bookings for the exhibition are now open, according to the IWMA statement.

Wildland Firefighter Safety bill on fire retardant passes US House

Washington bill on Wildland Firefighter Safety backs aerial fire retardant use

The Office of Congressman Doug LaMalfa said the Forest Protection and Wildland Firefighter Safety Act passed the US House as part of a wider permitting reform package, the PERMIT Act, in Washington, D.C.

The office said the bill was introduced by Congressman Doug LaMalfa (R-Richvale).

It said the bill is intended to keep aerial fire retardant available for wildfire response without Clean Water Act permitting delays.

Wildland Firefighter Safety and fire retardant use

The office said a 2023 federal court ruling imposed additional requirements linked to the use of aerial fire retardant by the U.S. Forest Service and other firefighting entities.

It said those restrictions risk slowing response times during wildfire incidents.

The office said the bill would clarify that a National Pollutant Discharge Elimination System (NPDES) permit is not required for the Forest Service to apply fire retardants from planes or helicopters to combat wildfires, if the retardants are on the current applicable Qualified Products List maintained by the Forest Service.

It said the provisions build on existing permitting exemptions for firefighting activities already in law.

Lawsuit background and permit timelines

The office said Forest Service Employees for Environmental Ethics sued the U.S. Forest Service in 2022 over the absence of an NPDES permit for aerially discharged fire retardant.

It said a federal court ruled in 2023 that the Forest Service must obtain an NPDES permit from the Environmental Protection Agency (EPA) for aerial application of fire retardants.

It said the court did not grant the request for an injunction to block the Forest Service’s use of these products.

The office said Forest Service testimony to the House Natural Resources Committee in 2023 stated the agency believes an NPDES permit is not needed based on EPA guidance issued in 2003.

It said the Forest Service’s 2011 Nationwide Aerial Application of Fire Retardant on National Forest System Land Record of Decision prohibits discharge into bodies of water and buffer areas around those waters.

It said the Forest Service stated that, over the past 10 years, less than 1% of retardant drops impacted American waterways.

It said the Forest Service stated the EPA could take up to three years to issue an NPDES permit, followed by state permitting across 47 states.

Comments from LaMalfa and the Forest Service

Rep. Doug LaMalfa said: “With wildfire season now practically year-round and more destructive than ever, preventing or limiting the use of any fire retardant because someone insists on a permit first is completely backwards.

“Aerial fire retardant has been used safely for decades and is already highly regulated.

“These lawsuits don’t protect the environment; they tie firefighters’ hands while fires race through forests and towards homes. I’m glad to see the PERMIT Act passed the House with my bill included. It ensures our crews can act quickly, without being tripped up by fringe litigation or years of paperwork.”

Tom Schultz, U.S. Forest Service Chief, said: “Aerially delivered long-term fire retardant is an essential tool the Forest Service and the interagency wildfire response community use in support of ground-based firefighting resources.

“We thank Chairman LaMalfa for leading legislation to ensure retardant remains a tool in the wildland firefighting toolbox to protect homes and communities from the devastating impacts of catastrophic wildland fire.”

What this could change for incident planning

Fire Chiefs and senior officers with responsibility for wildfire operations may track this measure because it focuses on continued access to aerial fire retardant as part of interagency response planning.

Government departments and emergency and disaster response managers may review how the bill’s approach aligns with existing Clean Water Act exemptions for firefighting runoff described in the source material.

Training officers and instructors involved in wildland tactics may also monitor the outcome because the Forest Service position in the material describes long-term retardant as supporting ground-based resources by altering how wildfire burns and slowing fire spread after water evaporates.

Fire engineering consultants and risk assessors working with public agencies may pay attention to the permitting timeline claims in the material, including the stated three-year federal process and additional state permits, when considering operational continuity and contingency planning.

How to Prevent E-Bike Fires

E-bikes (electric bikes) have become a popular, eco-friendly way to travel.

But with their popularity comes an unexpected hazard, most notably lithium-ion battery fires.

E-bike fires are often the result of faulty or damaged lithium-ion batteries, incorrect chargers, or exposure to heat, all of which can trigger a dangerous chain reaction leading to a fire caused thermal runaway.

Understanding why these fires happen and how to prevent them is the key to staying safe.

What is an E-Bike?

Woman on Electric Bike
Image credit: Unsplash

An e-bike is a bicycle equipped with an electric motor powered by a rechargeable lithium-ion battery.

The motor assists the rider’s pedaling, making it easier to climb hills or travel longer distances.

E-bikes come in several types, from lightweight commuter models to powerful cargo bikes.

All types of e-bikes depend on one crucial component – the battery.

Lithium-ion batteries store large amounts of energy in a compact form, making them ideal for e-bikes.

However, this same energy density means that if the battery is damaged, poorly made, or improperly charged, it can overheat and even combust.

That’s where the serious risk of fire comes in.

Can E-Bikes Catch Fire?

Yes, e-bikes can catch fire, and almost always the culprit is the lithium-ion battery.

When the battery’s internal components are damaged or defective, they can short-circuit.

This causes the battery to heat up uncontrollably, a process known as thermal runaway.

Once this starts, it can ignite nearby cells, creating a fast-spreading and extremely hot fire.

Common triggers include:

  • Using an incorrect or low-quality charger.
  • Charging for long periods or overnight.
  • Physical damage to the battery.
  • Exposure to extreme heat or moisture.
  • Poor-quality or counterfeit battery packs.

While most e-bikes are safe when properly used, even one faulty component can lead to disaster.

How Often Do E-Bike Fires Happen?

Burning E-Bike

E-bike fires are still relatively rare compared to other household fires, but they’re increasing as e-bike ownership grows.

In cities like New York, London, and Sydney, fire departments have reported hundreds of e-bike and e-scooter battery fires in recent years, of which many were caused by unregulated or aftermarket batteries.

Interestingly, most incidents occur in homes or garages whilst the batteries are charging.

Because lithium-ion fires burn at extremely high temperatures and can reignite even after being extinguished, they pose a serious risk to both people and property.

Are E-Bike Fires Dangerous?

Yes, e-bike fires can be potential y very dangerous.

E-bike fires burn hotter and faster than typical household fires, releasing toxic fumes and dense smoke.

Since the reaction is chemical rather than just thermal, traditional extinguishing methods such as water are often ineffective, and can even make the situation worse.

For example, lithium-ion fires can:

  • Reach temperatures above 1,000°F (540°C).
  • Spread rapidly to furniture and other flammable materials.
  • Reignite after appearing to be out.
  • Produce toxic gases like hydrogen fluoride.

That’s why prevention and early detection are critical when it comes to e-bike fire safety.

Can I Prevent an E-Bike Catching Fire?

Yes, but prevention firstly starts with awareness.

Most e-bike fires can be avoided by following safe charging, storage, and maintenance practices.

Choosing certified products, using the correct charging equipment, and handling batteries with care can dramatically reduce your risk.

Let’s break down the essential steps.

How to Prevent E-Bike Fires

Charging E-Bike
Image credit: Bicycling

Buy from Reputable Sellers

Always purchase your e-bike and replacement batteries from trusted brands or authorized dealers.

Look for batteries certified by UL (Underwriters Laboratories) or similar safety standards.

Cheap, unverified batteries often lack internal safeguards like temperature control and overcharge protection.

Use Correct Charging Equipment

Only use the charger that came with your e-bike or one recommended by the manufacturer.

Mixing chargers, cables, or adapters (even if they seemingly fit) can result in incorrect voltage or current, damaging the battery and increasing fire risk.

Never charge your e-bike unattended or overnight.

If something goes wrong while you’re asleep, you may not notice until it’s too late.

Keep Away from Direct Heat Sources

Store and charge your e-bike in a cool, dry, well-ventilated area.

Avoid placing it near heaters, radiators, stoves, or direct sunlight.

Lithium-ion batteries perform best at room temperature.

Extreme heat accelerates chemical reactions inside the cells, raising the risk of thermal runaway.

Keep Away from Flammable Materials

Avoid charging or storing your e-bike near curtains, paper, furniture, or fuel containers.

If a fire starts, these materials can cause it to spread rapidly.

Ideally, charge the bike on a non-flammable surface, such as concrete or tile, rather than wood or carpet.

Avoid Aftermarket Batteries

Aftermarket or modified batteries are a leading cause of e-bike fires.

These may not meet the same safety standards as the originally supplied battery and could have poor internal construction or incompatible components.

Always use original or certified replacements.

What Should I Do If My E-Bike Catches Fire?

If you suspect your e-bike or battery is overheating, such as emitting smoke, hissing, or swelling, you must move to a safe distance immediately and call emergency services.

Do not try to handle or move the bike.

If it’s safe to do so, evacuate the area and close doors behind you to contain the fire.

Do not pour water directly on a lithium-ion fire.

Instead, use a Class D or lithium-ion-rated fire extinguisher if one is available.

Afterward, do not attempt to reuse or repair the damaged battery.

Have it disposed of properly using an authorized recycling program.

Key Takeaways

E-bike fires are serious but largely preventable.

The key is understanding that lithium-ion batteries require careful handling:

  • Always buy certified e-bikes and chargers.
  • Charge in a safe, well-ventilated area.
  • Keep batteries away from heat and flammable objects.
  • Never use damaged or non-original batteries.
  • Stay alert for warning signs like swelling or overheating.

By taking these precautions, you can enjoy all the benefits of electric cycling without putting your safety at risk.

Conclusion

E-bike fires occur mostly due to faulty lithium-ion batteries, poor charging habits, or damaged components.

Prevention comes down to buying quality products, following manufacturer guidelines, and staying vigilant during charging and storage.

Safe habits save lives, so your e-bike should be a tool for freedom – not a fire hazard.

FIREMIKS expands FM-approved range for Intersec 2026 appearance

Firemiks to present approved systems in Dubai

Firemiks will present its expanded FM-approved product line at Intersec 2026 in Dubai, where visitors will be able to review water-driven volumetric pump proportioners across seven flow sizes.

According to FIREMIKS AB, the range includes products approved under FM 5130 (May 2021) and recognised as Variable Viscosity Pump Proportioners.

The portfolio includes 18 FM-approved models, with flow sizes ranging from 450 to 8000.

Visitors will be able to learn more about the systems and their applications at the Swedish Pavilion in Hall 8, stand C30, and at the Solas Safety & Fire stand in Hall 4, B38.

Product range covers viscosity and installation requirements

Firemiks stated that the systems are designed to provide accurate proportioning across a wide viscosity range.

The proportioners can handle foam concentrates from 1 cP to 7288 cP, including non-Newtonian fluorine-free SFFF concentrates.

The range is available with different water motor configurations, including hard-anodised aluminium units with PTFE coating and nickel-aluminium bronze models for marine and offshore environments.

Stainless steel pump head options are also available.

Configurations support varied flow demands

Firemiks said water motor connections range from 2-inch DN50 to 8-inch DN200 depending on the model.

For installations requiring larger flows, systems can be installed in parallel configurations to achieve capacities up to 12,000 or 16,000 litres per minute.

The Intersec presentation will give visitors a chance to review the scope of the range and the applications described by the company.