Big water for big challenges: How US Fire Pump delivers high-volume water for major incidents

Chris Ferrara, Owner of US Fire Pump, shares how mobile systems, large-diameter hose and strategic foam storage combine to bridge capability gaps in major incidents

When major incidents demand massive volumes of water at speed, the limits of conventional fire equipment quickly become clear.

US Fire Pump was built around the idea that those limits could be extended.

At the centre of that work is Owner Chris Ferrara, whose manufacturing and operational experience has shaped some of the world’s largest firefighting systems.

In this interview, Ferrara explains what defines large pump capability, how it’s being applied in the field, and what’s still missing from wider industry preparedness.

How would you define US Fire Pump’s role and its unique position in emergency response today?

We operate as a specialist extension to municipal and industrial fire brigades, filling the gap when an incident demands water flow rates that standard pumpers cannot produce.

That role begins with scale: our fleet includes transport-ready boost pumps capable of delivering tens of thousands of litres per minute, submersible units that draw from almost any open source, and monitors designed to maintain heavy streams at long reach without exposing crews.

Few organisations keep that capacity on standby, so we maintain it, staff it, and move it wherever required.

Readiness would be meaningless without supplies, so we hold roughly 300,000 gallons of finished foam at multiple points across the United States.

Add to that fifteen miles of 12-inch supply hose and a roster of about fifty full-time industrial firefighters who train on the same equipment they deploy.

Because everything sits on trailers or skids, a full package can leave a yard within hours of a call and arrive with its own logistics plan.

That combination makes us more than an equipment vendor.

During events from tank-farm lightning strikes to recycling-plant battery fires, we join the incident command structure, establish high-volume water relay, and oversee application rates until knock-down is confirmed.

In short, customers purchase preparedness measured in minutes rather than days.

Could you outline large boost and submersible pumps and where each type sees field use?

Submersible pumps are the first link in our relay chain.

Each unit, dropped into a river, canal, or harbour basin, lifts around 5,000 gallons per minute straight up the discharge column.

Because motors and impellers sit below the waterline, priming issues disappear, and we can stage several in parallel to raise overall flow—four units provide roughly 20,000 gpm from a single source.

The water then enters a boost pump.

These trailer-mounted centrifugal machines add the pressure needed to carry large volumes through up to three miles of 12-inch hose.

Their job is simple: overcome friction loss so that the stream still lands with force at the monitor.

We configure boost pumps in series if the hose run is unusually long or elevation changes are severe.

Finally, delivery equipment—monitors, foam proportioners, and manifolds—takes the pressurised supply and directs it onto the hazard.

In practice this three-step arrangement allows us to draw from a lake on one side of an industrial site, push the flow under a highway, and deliver a stable foam blanket onto a burning tank roof without resorting to fixed hydrant grids that might be out of service or destroyed.

Which facilities now plan for your high-volume systems, and what drives that requirement?

The most frequent callers are petro-chemical complexes where single-tank capacities exceed two hundred feet in diameter.

Operators know a full-surface crude or naphtha fire can consume conventional resources before a control line is even established, so contingency plans mandate external high-volume support.

Insurance underwriters reinforce those requirements by setting performance targets that only large-scale mobile pumping can meet.

Electric-vehicle battery recycling and storage centres form a newer group.

Thermal-runaway events release immense heat while producing very little entry space for water or foam.

Managers offset that by arranging for remote cooling streams and oversized water supplies that keep cells below reignition temperature.

Similar thinking appears at deep-sea terminals, where a shipboard blaze might outlast fresh-water reserves and local hydrants.

We also see growing interest from municipal alliances that cover rail corridors.

A derailment involving flammable liquids often strands traditional apparatus behind evacuation zones or damaged infrastructure.

With a transport-ready relay system, a county can draft from a creek, run hose along a railway bed, and still deliver meaningful flow onto tank cars without waiting for rebuilt mains.

Walk us through events from your deployment call to the first water flowing on site.

The process starts with a rapid desktop survey.

Dispatch officers open satellite imagery, plot the incident address, and highlight every pond, river, or canal within a three-mile radius.

At the same time they review tank inventories or manifest sheets to gauge foam requirements.

Those two data sets determine how many submersibles, boost pumps, hose beds, and totes leave the warehouse.

While units are in transit, an advance team contacts the incident commander and requests a staging zone large enough for twenty vehicle combinations.

Upon arrival, crew leaders split into water-source and attack-site groups.

One prepares the draft points—often with light excavation or portable weirs—while the other lays hose, aligns monitors, and connects proportioning gear.

Because each task follows a rehearsed checklist, overlap is minimal, and flow usually begins within two to three hours.

Once water reaches the deliver-point manifold, flow rates are trimmed to match foam application targets.

Operators monitor pressure at several hose positions, watching for friction loss spikes that might signal a kink or coupling failure.

When the fire shows sustained progress—flame height drops and surface temperature falls—teams gradually adjust streams, always protecting confinement lines until final extinguishment.

Do you provide operational training or familiarisation when customers purchase your specialised equipment?

Yes. Any facility investing in our hardware receives a structured programme that starts with classroom theory—hydraulics, foam chemistry, and safety factors—and moves into hands-on drills.

Crews practise assembling submersibles, setting up boost pumps, and operating remote monitors until every member can complete the full layout against the clock.

We also support annual or quarterly refreshers, often themed around specific local hazards.

A refinery might request night-time evolutions that simulate a lightning-induced floating-roof failure, while a port authority could focus on hose management across gangways.

Because the same instructors attend live deployments, lessons stay current, and feedback loops into equipment tweaks almost immediately.

Finally, training covers maintenance.

Personnel learn how to swap wear rings, check shaft alignment, and verify proportioner calibration.

The goal is simple: ensure the gear performs on the day it is needed without waiting for outside technicians or parts deliveries that a large-scale incident could delay.

How have recent foam regulation changes altered system performance demands and tactical choices?

Moving from aqueous film-forming foam to fluorine-free blends has generated practical challenges at every step.

The new concentrates lack the quick-forming film that once suppressed vapour within seconds, so extinguishment now relies on depth and gentle application.

That means higher total solution volumes—often triple the former requirement—and careful nozzle movement to avoid breaking the blanket.

Higher volume drives bigger pumps, longer hose lines, and more proportioner capacity.

A tank fire that previously settled with 10,000 gpm might now need 30,000 gpm sustained for the same control time.

Crews must also verify that concentrate viscosity matches eductor capability; under-metering drops performance, while over-metering wastes foam reserves that may already be tight.

No site has yet published a confirmed case of extinguishing a large (>100-foot) storage tank using only fluorine-free product, so every real-world test carries added pressure.

We continue to trial application patterns on training grounds, logging data for flow, blanket thickness, and burn-back time.

Those results shape the guidance we give clients while the wider industry refines performance standards.

Have recent field experiences prompted product or design revisions requested directly by users?

Several. The most significant is a direct-inject proportioning system that uses positive-displacement pumps and flow-meters to maintain mixing accuracy from 0.3 % up to 10 % across a wide viscosity range.

Early adopters asked for a solution that sidestepped traditional venturi eductors, which swing several points when line pressure drifts.

Keeping the ratio steady with newer foam concentrates is critical, so we built a fully enclosed module that slides into an ISO container for rapid deployment.

Monitor design has changed as well.

Crews requested longer reach without manual nozzle adjustments, so we introduced electric-drive turrets paired with gyroscopic stabilisers.

Looking forward, which gaps in fire response or water supply still need better solutions?

The largest hurdle is access rather than technology.

Many municipal and industrial budgets cannot justify owning equipment that may sit in storage for years, yet the first thirty minutes of a severe incident demand exactly that capacity.

Regional caches help, but travel time still counts.

Wider pre-incident agreements and cost-sharing models could shorten the window between alarm and flow without forcing every operator to purchase full sets.

Water sourcing is another concern. Drought restrictions, ageing infrastructure, and climate-related low-river stages can all limit draft options.

Forward-looking plans should map secondary sources—storm-water ponds, reclaimed-water mains, even temporary pipelines—to guarantee supply even when traditional hydrants falter.

Coupling those plans with high-volume mobile pumps ensures that water reaches the fire line rather than remaining an unrealised figure on a schematic.

Finally, the insurance sector is beginning to demand clear evidence of response capacity, not just written mutual-aid clauses.

Facilities that show confirmed arrangements, complete with mobilisation timetables and equipment lists, are already seeing premium adjustments.

Meeting those documentation requirements will push agencies to formalise contracts with external providers and schedule joint drills well before an emergency tests the paperwork.

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

Magirus introduces Poseidon pump family for flood emergency response

New Magirus Poseidon pump range designed for diverse flood and water management needs

Magirus has launched the Poseidon pump family, a new range of submersible pumps aimed at supporting fire brigades and rescue services in flood-related emergencies.

Developed to handle the growing challenges posed by extreme weather and flood events, the Poseidon series features the TP 4/1 pump, which delivers 420 litres per minute at 1 bar with a delivery head of 10 metres.

This model includes features such as an adjustable pressure outlet for horizontal or vertical application and a flat suction function capable of operating down to 10 mm, enhancing flexibility for various field conditions.

With these specifications, the Poseidon TP 4/1 is designed to be easily transported by one or two people, thanks to its ergonomic dual-handle design.

This new range of pumps reflects Magirus’ approach to creating equipment that can be adapted to multiple emergency scenarios, particularly where flood management and rapid response are required.

Adaptable pump models for water and sludge handling

The Poseidon pump family includes three different models, each suited to specific water and sludge handling needs encountered during flood events.

Magirus reports that the dirt water pump model operates with a flow rate of 225 litres per minute at a 10.5-metre delivery head and weighs 11.3 kg, intended for ease of transport and use in contaminated water settings.

The second model, the shallow water pump, is aimed at areas where water levels are particularly low, offering a flow rate of 205 litres per minute and an 11-metre delivery head.

This pump’s design is intended for simplified handling in such conditions, weighing in at 12kg.

For applications involving dense substances, the sludge pump model operates at a flow rate of 430 litres per minute with a delivery head of 12 metres.

Designed to handle more viscous materials, this pump has been developed to support heavy-duty water and sludge removal and weighs 15 kg.

Responding to climate-related flood challenges

Magirus has stated that the introduction of the Poseidon pump family aligns with their response to the heightened flood risks associated with changing weather patterns.

Designed to address both the operational demands of flood-related rescues and the increasing frequency of heavy rainfall events, these pumps are built to aid emergency responders in managing water-related emergencies efficiently.

This pump family has been developed to withstand the demands of extreme weather conditions, enabling fire brigades and rescue services to mobilise quickly and respond effectively in diverse flood scenarios.

Magirus underscores that the Poseidon series was created with an emphasis on reliability, high capacity, and usability, aiming to support emergency teams in addressing flood emergencies more efficiently.

The Poseidon TP 4/1 and its operational features

The Poseidon TP 4/1 submersible pump is designed to facilitate efficient flood management with minimal setup.

Magirus highlights the model’s adjustable pressure outlet, allowing operators to shift between horizontal and vertical settings, which adds to its versatility in various field conditions.

Additionally, the flat suction capability of the TP 4/1 enables operations down to a water level of 10 mm, addressing a need for flexibility in low water situations.

Weighing under typical pump standards, the TP 4/1 also incorporates a dual-handle design, making it transportable by one or two operators as needed.

These operational features contribute to the pump’s adaptability, particularly for use in urban and rural flood response scenarios.

New Poseidon pump range designed for diverse flood and water management needs: Summary

Magirus has introduced the Poseidon pump family, a series of submersible pumps developed for emergency flood and water management.

The family’s TP 4/1 model provides a 420-litre flow per minute and is designed for flexible application, including features like an adjustable pressure outlet and flat suction for low water levels.

Additional models, including the dirt water pump and sludge pump, address specific water and sludge handling needs.

This product line reflects Magirus’ intent to offer equipment suited to the increasing demands of flood-related rescues, providing emergency teams with tools for diverse conditions.

Darley launches new electric pumps for European markets

Darley introduces battery-powered electric pumps for fire services

Darley has expanded its product range with the introduction of new battery-powered electric pumps tailored for the European market.

This initiative reflects the company’s ongoing commitment to innovation and customer-focused solutions in the fire safety sector.

The newly launched pumps feature electric motors, a response to the increasing demand for electrification in fire safety equipment.

As part of their customer-centric approach, Darley has collaborated with Esteri, a Finnish manufacturer known for its comprehensive line of EN pumps.

This partnership aims to leverage Esteri’s expertise to cater to the global market’s needs.

Commitment to quality and sustainability

Darley continues to emphasise its dedication to high-quality products and sustainable practices.

The company assures that these new electric pumps are designed to meet the highest standards of performance and reliability.

The company said it is committed to providing the best solutions with the lowest cost of ownership and the industry’s best warranty.

The collaboration with Esteri enhances the range of products available and underlines Darley’s strategy to adopt more environmentally friendly technologies in their offerings.

This move is aligned with global trends towards sustainability and reduced carbon emissions in fire safety operations.

Learn more about Darley’s products

For those interested in learning more about Darley’s extensive range of pump solutions, including diesel, marine, and portable options, further details are available on their website.

The site provides comprehensive information about each product, allowing potential customers and partners to explore the various features and applications of Darley’s pumps.

Through its strategic partnership with Esteri and the introduction of electric pumps, Darley said it is continuing to lead the way in innovative solutions for the fire safety market.

Vallfirest extends range of portable fire pumps

Vallfirest has extended its range of portable fire pumps with the new Black Hawk 2, equipped with the 2-stage vft centrifugal pump, that offers an excellent medium pressure range with high flow capacity.

The BH2-13 has a 13hp Honda GX390 engine and reaches a performance of up to 15.5 bar and 392 l/min. The BH2-21 is equipped with a 21hp Honda GXH630 engine and has a performance of up to 16.8 bar and 432 l/min.

The new pumps features:

  • Motor pump unit compatible with 4-stage vft centrifugal pumps, easily interchangeable thanks to a quick release clamp
  • Speed increaser made of cast aluminium and high-quality components. Maintenance-free
  • Choice of transport base: tubular frame (for greater manoeuvrability), or base for assembly on vehicles
  • Hand priming pump and pressure gauge included
  • Non-return valve for impulsion included
  • Pump compatible with foam-forming agent



Exclusive Interview: Chris Ferrara, President and CEO of US Fire Pump

Chris Ferrara, President and CEO of US Fire Pump, speaks exclusively with IFSJ about his long career in the industry, his achievements to date and what he plans to do next

In the fire industry, Chris Ferrara is a name that many will be familiar with. With a career spanning over 40 years dating back to his days as a volunteer firefighter in Baton Rouge, Louisiana, Ferrara made a name for himself in the industry as a fire truck manufacturer and is responsible for building over 6,000 fire trucks that have been deployed at major locations across the globe.

Five years ago, after finding himself in the position to sell his fire truck manufacturing business, Ferrara Fire Apparatus, to REV Group in 2017, Ferrara decided to turn his focus to US Fire Pump, a business he started in 2014. IFSJ had the immense pleasure of sitting down with Chris to hear more about his impressive career in the industry, learn about some of the lesser known aspects of US Fire Pump’s offering, and his plans to re-enter the fire truck game.

Chris – you’re career in the fire industry is very impressive, where did it all start?

I started my career straight out of high school when I joined the local union apprenticeship programme to learn how to weld and pipe fit, following my dad’s footsteps. My wife and I got married and moved out to a small community north of Baton Rouge where I joined the local volunteer fire department.

Back then the volunteer fire department was strictly donation funded. At that time, we needed a new fire truck but we didn’t have the funds. With my background of fabrication and welding, me and a couple of guys got together and started building a fire truck in a barn.

Since there, my career leapt after working at different industrial facilities around Louisiana as a pipe fitter and welder, but I always wanted to go into business for myself. I started selling miscellaneous fire equipment – hoses and nozzles and rescue tools – in the early days around 1981. During this time, I had the opportunity to tour fire truck manufacturing facilities across the country and said to myself ‘I can do anything those guys are doing’ so I and hired some personnel and we began building first class fire trucks.

We started that on a full-scale basis in 1985 and that business substantially took off. As the story goes on, that business substantially grew with customers all around the world. I had customers in Dubai, China, Turkey, Mexico, Canada – all around the world, and in just about every major city domestically in the US.

What made you decide to leave the fire truck market?

I had an opportunity to exit that business around five years ago. A publicly traded company wanted to expand their business and so I decided to sell up and focus on US Fire Pump. But I couldn’t stay home and do nothing. I consider myself to be one of the biggest innovators in the fire industry and hopefully that’s what people will remember me for.

My main goal with US Fire Pump was to manufacture the largest fire pump ever produced on a fire truck. We accomplished that in around 2014 when we won the Guinness Book of World Record for the highest capacity fire pump ever installed on a fire truck anywhere in the world. This pump produces more than 6,000 gallons per minute from draft, and from a pressurised source it could get in excess of 10,000 gallons.

US Fire Pump is more than just a pump manufacturer – what else is the company involved in?

As the evolution went on, we also started a firefighting team that are now considered the largest industrial firefighting team in the world. We have, in the last six years, put out every major industrial fire domestically in the United States from an aircraft carrier for the Navy to one of the largest fires in Texas history at a terminal in Deer Park.

Not only are we building great pumps and rental pumps, we also have really brought a lot of new technology in the firefighting effort in industrial firefighting, developing new foam products, new foam supply equipment products.

We’re constantly looking for new ways and new ideas to stretch the boundaries of technology of how to attack fire. We always say in large scale fires that distance is always your friend. If we can throw a water foam solution in from 600 feet away from a fire that puts a firefighter in a safer position and still accomplishes the goal.

One of the biggest changes in firefighting in recent times has been the move towards fluorine free foam – how have you worked to incorporate this?

Fluorine free one of our biggest focus areas. It is a worldwide issue. We’re having to find ways to attack fires with a completely different tactic that no one else has seen before. Not only do you need to have more foam solution when using fluorine free, it’s a tactic that a lot of people are not used to. It has been about retraining the industrial firefighting groups over what action to take when using fluorine free products.

To my knowledge, there hasn’t been a major tank extinguishment with flouring free products so we’re always going to be challenged when that day comes in making sure that this product works, which is why we’re constantly running tests and research. In addition to that, we’ve had to develop other appliances and equipment that coincide with the new fluorine free products.

What else is US Fire Pump working on at the moment?

Our other focus has been what we call ‘big water flow’. Extinguishing fires takes a tremendous amount of water and foam solution to put out. People commonly think ‘I’ll hook up to a fire hydrant’ or something that’s close to where the fire is. With all the fires we attend we are always looking for alternative water sources. We have designed big submersible hydraulic pumps to get water from alternative water sources such as rivers, ponds and lakes.

We also use our hydraulic submersible pumps to de-water facilities. Following a hurricane last year, a large industrial facility was completely flooded – 20 acres of facility that was completely underwater. We were pumping over 10 million gallons of water a day and by the time the job was through we had pumped almost a billion gallons of water out of this facility.

I know that you’re now making a move back into the fire truck industry – what spurned that? And what are your thoughts on the move towards electric fire trucks?

It wasn’t something that we were necessarily looking for in the business – we were very focused on US Fire Pump and the emergency response team – but the customer drove us back into the business because of the reputation I built over the last 40 years.

We’ve had customers coming to us saying ‘we want you to build a great product like you’ve done before that we know is reliable and know that you can build’. We’re into that hot and heavy now. We’ve got quite a few trucks sold already and we’re going to go after business with customers that want a reliable, heavy-duty built product.

The technology has surely changed with electronic controls and different features – but I’m old school. I like to be a failsafe person. When I pull up on the scene people’s lives are at stake. When you engage the pump and the foam system, we want to make sure that system is going to work every time.

Finally, supply chain issues have been impacting industry across the world – has this had an impact on US Fire Pump?

With our fire truck division, we see that with the reputation and the relationships that I have with a lot of different manufacturers we can get geared up quite fast. Going forward, there may be some issues with some supply chains, but we’ve overcome that by having the inventory and manufacturing the products ourselves to overcome a lot of those issues.

I understood what was going on globally with the supply chain. It goes against the manufacturing principal of ‘just in time’, but we instead invested in over 15-20$ million of inventory of items built and ready to be built immediately so that we could have items for our customers. The industry standards for today in fire trucks and pumps may be two years for delivery of these critical items that these municipalities and industrial facilities need.

This article was originally published in the October edition of IFSJ. To read your FREE digital copy, click here.

Rebel with a cause: Angus Fire talks attack hoses

Angus Fire discusses how the role of attack fire hoses in enhancing firefighter safety

Firefighter’s personal protective equipment comes in various forms: turnout gear including flash hood, helmet, gloves, boots – and yet we all know that should be the very last line of defence. For firefighters in front-line rescue scenarios, scene size-up and risk assessment is vital but so is a battle-ready attack hose.

According to the National Institute for Occupational Safety and Health, fires involving modern materials burn much faster than those of several decades ago, and while thermal protection for firefighter turnout gear and breathing apparatus have improved, thermal protection for fire hoses has remained largely unchanged.

The current performance standards are NFPA (National Fire Protection Association) 1961 for US markets, EN14540 for Europe and BS 6391 for the UK. NFPA is currently reviewing and will consolidate NFPA 1961 along with 1931, 1936, 1961, 1963 and 1964 into a combined hose and fittings standard NFPA 1960.

In May 2016, the US Bureau of Alcohol, Tobacco and Explosives presented its findings to the NFPA Technical Committee on Fire Hoses and proposed new standards for thermal performance.

The NFA Technical Committee has been working to help ensure that firefighters are using attack fire hoses that are compliant with NFPA standards to enhance their safety and effectiveness. In doing so, the Committee has been looking to deliver on firefighter expectations for attack fire hose capabilities and characteristics, to understand any research gaps and priorities, and to provide recommendations for the future, including advising on advanced materials for attack fire hose construction.

Crucially, current and future standard reviews will differentiate between ‘attack’ hose and ‘distribution’ hose. Angus Fire has now produced its new Angus Rebel hose which looks to address the ‘attack’ phase with renewed levels of fire resistance.

High performance hose

In recent years, there have been several notable incidents where firefighters have entered high rise buildings, buildings incorporating new materials and buildings where internal firefighting is demanded by circumstance and driven by the need to rescue those trapped and to tackle fires at source. The problem here is that the risk of hose lines being damaged by fire itself increases exponentially as modern construction materials present ever increasing fire challenges.

Open pathways for fire spread are inherent dangers. For example, a fire lieutenant and a firefighter sadly died in one recorded incident in 2014 at a Massachusetts brownstone. The lieutenant and firefighter who attended the fire entered the building through the front door with a hose without water and moved downstairs to the basement, searching for the source of the fire and a potential victim.

High winds acted as a catalyst for the intensity of the fire, allowing it to spread quickly. The lieutenant had given the order to charge the hose line with water, but the extreme heat had burned it through preventing water flow and the back-up hose line was also burned through. The lieutenant and fire fighter became trapped.

Despite step-change improvements in firefighting techniques such as forced ventilation, CAFS and Coolfire through-the-wall extinguishing techniques, the fire hose has enjoyed only marginal gains on the last 20 years and it is not difficult to see why. It has to combine challenging and conflicting features: to be heat resistant yet flexible; lightweight yet be robust against cuts and abrasion; and to withstand high pressure yet be flexible enough to be coiled. Not forgetting it provides assistance in line-marking for retreat.

The Angus Rebel has therefore been designed to overcome these challenges. It is capable of withstanding flames and heat in excess of 850°C for hours. It is available in high visibility yellow and red as standard. The Rebel’s flame-resistant qualities and high visibility help provide a clear route out of a building with the potential to save lives

It has been designed for firefighter safety and is compatible for use with all major international coupling systems including Storz, British Instantaneous, Symetrique and US Expansion Ring NH, as well as being manufactured to perform generally in accordance with NFPA 1961, BS6391 (Type 2) and DIN EN 1947 standards.

Firefighters know that any loss of water supply on the fire-ground is life threatening but mobilityis also key. An attack hose is designed to combine appropriate water flow levels with a hose that is a flexible, kink resistant and as light as possible.

New hose technology

Angus Rebel is constructed from a mix of high performing natural and synthetic fibres, with a synthetic rubber lining and coated in protective acrylic. The team at Angus research and development have drawn on those attributes and combined them with rubber and textile to produce an innovative solution to solve a known operational concern. The result – Angus Rebel attack hose.

Whereas the conventional covered hose is designed to ensure reliability and long life, Angus Rebel attack hose has been designed to offer a different suite of benefits. Used in non-threatening combat it performs as a regular hose, but any firefighter will understand that maintaining integrity at over 850°C is no mean feat.

With the Angus Rebel model, the hose becomes part of an expendable defence whilst simultaneously enhancing firefighter safety. Think of a helmet or bunker jacket: it is designed to be used repeatedly, but only if the integrity is guaranteed. If a helmet suffers a heavy blow or bunker gear is contaminated, both will protect you but at the cost of replacements.

This is the crux of the Angus Rebel concept. It is a tool in the fire armoury, to be used selectively in high challenge, personnel rescue situations. The hose is designed to survive temperatures that destroy conventional hose in seconds. In that situation it becomes an expendable ally, but not before it ensures continuity of water supply and your safety.

Wildfires and aviation

The recent spate of massive wildfires in the United States and Australia exposed firefighters to heat stress, fatigue, smoke and dust. As if that was not enough, the loss of vital hose lines from fire was very real. Ignition typically starts from low vegetation such as underbrush and leaf litter, from there to higher vegetation such as tree branches.

As the fire increases in intensity and size, fuel is involved at all levels. A complex mix of terrain, vegetation and wind changes can expose firefighters to a rear-guard action; this is when you want continuity of water supply. A hose as durable as the Angus Rebel is ideal for such front-line attacks on fire spread.

Similar to wildfires, aviation spill fires can lead to hoses being trailed through fuel that carries a risk of ignition in vapour suppression procedures and significant temperatures in fire. Angus Rebel is designed to allow airport crash tenders to be equipped with a first line attack hose that can withstand burning hydrocarbon in personnel rescue scenarios.

The development of the original Angus Duraline covered fire hose provides firefighters with a jacketed hose that continues to provide the benefits of minimal maintenance, low pressure loss, high abrasion resistance, high chemical resistance, low kinking and easy drying lay flat hose. The introduction of the Rebel fire hose sets a new standard in structural firefighting safety, achieved with the highest known resistance to heat and flame of any fire hose available today.

This article was originally published in the June edition of IFSJ. To read your FREE digital copy, click here.

Exclusive: Flourine Free Foam Solutions from Fomtec

John Olav Ottesen, CEO and founder of firefighting foam developer and manufacturer Fomtec, talks foam, fluorine and INTERSCHUTZ 2022

In 2001 I founded Dafo Fomtec AB with the goal of producing and supplying high quality firefighting foam agents and associated foam hardware. 21 years on our main manufacturing location remains in Helsingborg, Sweden. I have a small dedicated team of industry professionals as we maintain our strong customer focus and I am proud to say that we supply our products to over 65 countries around the world. Fomtec will again be exhibiting at Interschutz 2022 and we are looking forward to welcoming our existing customers and potential new clients to Stand C17, in Hall 13.

Why use foam?

Since humans started to use liquid hydrocarbons as an energy source we have strived to find a more effective extinguishing agent than water. Whilst other agents such as water, dry chemical powder and gaseous agents are also effective with liquid hydrocarbon fuel fires, foam adds the additional life safety factor of providing a foam ‘blanket’ that prevents vapour escaping thereby preventing re-ignition post extinguishment. The water draining from the foam also has a cooling effect on the fuel and surrounding structure, aiding the extinguishment process.  Compared to DCP and gaseous, agents foam is also relatively inexpensive.

Offering high performance foam concentrates and tested systems of hardware with foam are critical for our clients to be truly protected. Performance extends to Fomtec manufacturing and delivering our products when we promise we will and in our current fiscal year we have achieved a better than 95% on-time delivery.

Trust is closely linked to performance and Fomtec invests heavily in fire performance testing and then having our products approved through independent third parties to the appropriate international standards. We also make our approval data readily available to all who visit our website, and Fomtec remains one of the few foam manufacturers who do this.

With the transition away from PFAS based foams based on the environmental impact of the PFAS chemicals, it is vital that sustainability is part of our business. Starting with the selection of raw materials and the evaluation of all our suppliers, through to the treatment of water used in our facility, through to the evaluation of travel needs for supporting the business.

Fomtec at INTERSCHUTZ

At the last Interschutz in 2015 all the talk in the firefighting foam world was about the transition to shorter chain C6 PFAS containing foam, and now 7 short years later those discussions will now be about the transition away from these foams to fluorine free foams. This transition is not being driven by the foam manufacturers and it is certainly not because the new fluorine free foams outperform the fluorinated foams. Nor is it because the fluorine free foams are lower cost that their fluorinated alternatives. The transition away from fluorinated foams is entirely due to environmental restrictions and legislation in relation to a family of chemicals know as PFAS.

In the last 20 years we have seen the PFAS chemicals PFOS and PFOA, which were used in fluorinated foams, declared Persistent Organic Pollutants and use of foams containing these chemicals are banned or are restricted with defined periods to stop using the foams. As stated above in 2015 all foam manufacturers were talking about their new C6 foams at Interschutz, but the PFAS chemicals in these foams are now scheduled for restriction and eventually will no longer allowed to be used.

The Enviro Programme

There is no doubt that the addition of the fluorine-based chemicals in firefighting foams played an important part in their performance. As we always like to point out fluorine free foam agents have been around for many years including protein foams, as well as many Class A and synthetic detergent foams. Developing high performance Class B fluorine free foams is a challenge and since 2014 nearly all of Fomtec’s research and development money has been invested in the Enviro Programme.

This is the name that Fomtec gave to the project to develop high performance Class B fluorine free foams. Fomtec quickly realized that expansion ratio, drain time and bubble structure are even more important with fluorine free foam agents, and achieving positive results against fires means that the foam agents need to the tested and approved with the associated foam hardware to ensure that the finished foam has foam qualities that match those that were used to successfully meet the requirements of UL 162 and FM 5130.

At Interschutz 2022 we will be promoting our range of Synthetic Fluorine Free Foams (SFFF), which are marketed under the Enviro (by Fomtec) brand name. The Enviro by Fomtec range is a range of foam concentrates which are a direct result of Fomtec determining that foams needed to be designed and formulated for the different firefighting missions. Extensive research and development, including more than 1500 fire performance tests, has led to Fomtec offering a range of Enviro branded products. These products are supported by international approvals within relevant sectors: industrial (UL/FM), marine (IMO), aviation (ICAO), military (US Mil Spec), emergency response (EN/UL) and wildland (US Forest service).

In May 2021 Enviro USP and Enviro ARK achieved FM approval for use with non-aspirated sprinklers, with Enviro ARK being the first SFFF to achieve this approval for use on polar solvent fuels. Enviro USP and Enviro ARK have class leading FM approvals with non-aspirated sprinklers from 6’ (1.8m) up to 45’ (14m).

Fomtec has always held the belief that decisions should be based on information. These independent approvals mean that the information Fomtec supplies can be considered as solid data and not just an opinion. For many end-users making the transition from PFAS containing foams this data provides peace of mind that they can make this transition without compromising the safety of their personnel or increasing the risk to their facility or business.

Fomtec will also exhibit and have information available on our foam solutions for multiple applications based on our C6 PFAS containing foams and foam hardware. After the extended period between the shows the Fomtec team look forward to welcoming our existing customers and all who want more information on the Enviro range, or other Fomtec solutions.

This article was originally published in the June edition of IFSJ. To read your FREE digital copy, click here.

Pump manufacturer DESMI Africa expands into Nigerian Market

Leslie P. Andrews, Managing Director of pumps solutions provider DESMI Africa, has announced that the company is expanding into the Nigerian market and will be opening a second office.

The Nigerian branch will be located in Lagos, and the young startup team consists of Office Manager Najeeba Abdulmajeed Owolabi and the sales team Philbertus Mujuni, Collins Ugochukwu Afoaku and Elijah Sobalaje Ogunniran. 

Commenting on the expansion, Andrews said: “We have sold our solutions to Nigeria for more than 20 years – and it is now time to take further steps into the Nigerian market being even closer to our customers and partners.

He added: “The Nigerian market is a huge market to service, and with the increasing demand for our solutions both within oil spill and pumps, it makes perfect sense to have our presence, team, and knowledge, locally.

“Being here locally, with our own office, is a milestone, and our goals have been set. We have high expectations. We want to be one of the most preferred brands with our flow technology solutions within oil spill response, marine debris trash, engine room pumps for marine and utilities, and much more. An exciting future is ahead of us in Nigeria.”