UK firefighter mental health study seeks 10,000 participants

National survey aims to assess firefighter mental health needs

The Fire Brigades Union (FBU) has launched a research project to examine the mental health of firefighters across the UK.

The study, commissioned by the FBU and independently conducted by the University of Central Lancashire (UCLan), will survey firefighters about how their work impacts their mental health, what support is available, and what improvements are needed.

There is no standardised mental health guidance specific to firefighters in the UK, despite the demands of the profession.

The research aims to provide data-driven recommendations to improve support across the fire service.

Survey seeks 10,000 firefighter responses

The study aims to gather at least 10,000 responses from serving firefighters through an online survey.

Steve Wright, FBU general secretary, encouraged participation: “We’re calling on all serving firefighters in the UK to take part in this ground-breaking research into firefighter mental health.

“Firefighting is an intensive and highly skilled profession, and every day we hear from firefighters who are facing increasing and preventable pressures at work.”

He added: “Firefighters are being let down by patchy and inconsistent support, without standard policies.

“We need firefighters across the UK to take this survey and help build a clearer picture of how fire and rescue services can better support the frontline.

“Together we are determined to improve mental health in our service.”

University of Central Lancashire leads independent research

The study is led by Dr Carolina Campodonico, Senior Lecturer in Clinical Psychology at UCLan, who highlighted the challenges faced by firefighters: “Firefighters across the UK face immense physical and emotional demands, yet mental health support remains inconsistent and underutilised.”

Dr Campodonico noted that similar research in countries such as the US, Canada, and Australia has led to stronger national policies for first responders.

“This is a vital opportunity for all serving firefighters to have their voices heard while remaining anonymous,” she said.

“Our research is independent, shaped by the needs of the fire service community, and aims to provide clear, evidence-based recommendations to improve mental health support.

“Every firefighter who takes part will be helping to create meaningful change—now is the time to speak up.”

Mental health concerns in the UK fire service

A 2019 study by mental health charity Mind found that 60% of surveyed fire service workers reported personal experiences of mental health problems.

Despite these findings, there has been little action from leadership to systematically address the issue across the fire and rescue service.

The FBU’s latest study seeks to identify causes of poor mental health and develop strategies to enhance support for firefighters and fire control staff.

UK firefighter mental health study seeks 10,000 participants: Summary

The Fire Brigades Union has commissioned the University of Central Lancashire to conduct a national survey on firefighter mental health.

The research aims to assess the impact of firefighting on mental health, review current workplace support, and recommend improvements.

With a goal of collecting at least 10,000 responses, the survey is open to all serving firefighters.

Steve Wright, FBU general secretary, said the study is needed due to inconsistent mental health support across fire services.

Dr Carolina Campodonico of UCLan highlighted that research in other countries has led to improved policies for first responders, and UK firefighters should receive the same level of commitment.

A 2019 study by Mind found that 60% of fire service workers reported mental health problems, but little action has been taken to address the issue at a national level.

The survey aims to provide evidence-based recommendations to improve firefighter mental health support in the UK.

10 Most Common Combustible Materials

Combustible materials are an essential part of daily life, present in homes, workplaces, and industrial settings. 

From everyday items like paper and cloth to industrial fuels like diesel and kerosene, combustible materials are both useful and hazardous.

Understanding the nature of these materials is crucial for maintaining safety and preventing accidents. 

Knowing how and why they ignite, the risks they pose, and the precautions needed to handle them can help reduce the chances of dangerous situations. 

In this article, we’ll delve into the most common combustible materials and discuss their characteristics, risks, and practical safety measures. 

By the end, you’ll have a clear understanding of how to use and store these materials responsibly, ensuring a safer environment for everyone.

What are Combustible Materials?

what are combustible materials

Combustible materials are substances that can catch fire and burn when exposed to sufficient heat, oxygen, or an ignition source. 

Combustible materials are often used in everyday life, from cooking and heating to construction and manufacturing. 

However, their potential to burn poses safety risks if not handled correctly. 

Proper storage, ventilation, and adherence to safety guidelines are essential to prevent accidents and ensure that combustible materials are used responsibly in homes and workplaces.

How Dangerous are Combustible Materials?

Combustible materials can pose significant risks if not handled or stored properly. 

These substances can catch fire when exposed to heat, sparks, or open flames, leading to potentially devastating consequences. 

Fires fueled by combustibles can spread rapidly, causing property damage, injuries, or loss of life. 

Additionally, improper storage or disposal of these materials increases the likelihood of accidental ignition. 

Awareness of their dangers, along with proper safety measures is crucial to minimising risks and ensuring safety in homes and workplaces.

10 Most Common Combustible Materials

Here are the most common combustible materials, their uses, and associated risks:

Paper

combustible materials paper

Paper is a highly combustible material, primarily due to its thin structure and cellulose content. 

The cellulose fibers in paper make it easy to ignite, and once set on fire, it burns rapidly. 

Paper is one of the most common fire starters found in homes and offices. 

It’s often accumulated as waste in the form of newspapers, magazines, cardboard, and office documents, making it a significant fire risk when exposed to heat sources. 

Paper can easily catch fire if it comes into contact with flames from candles, faulty wiring, or overheated electronics. 

In offices or homes, paper products are typically stacked or stored in areas that could become fire hazards if not carefully managed. 

Straw

Straw, often used in farming as bedding for animals or as feed, is another highly combustible material. 

This dry, fibrous material ignites quickly when exposed to a heat source, which makes it a significant fire hazard. 

Straw is especially dangerous in barns or storage areas, as the dense bundles can create the perfect environment for rapid fire spread. 

A fire starting in a haystack or straw-filled barn can quickly escalate and spread through entire buildings, leading to catastrophic damage. 

In fact, straw is a common cause of barn fires, and these fires often occur when straw is improperly stored or when there is a buildup of heat within large quantities of straw. 

Wood

Wood is one of the most widely used combustible materials, both for construction and as a source of fuel for heating and cooking. 

It burns at high temperatures, and dry wood is especially prone to ignition. 

Wood is commonly used for furniture, flooring, and building materials, but it is also a major fuel source in fireplaces, wood stoves, and campfires. 

Storing wood in dry, well-ventilated areas is critical to prevent unintentional fires. 

For homes that use wood-burning stoves, it is essential to maintain a safe distance between firewood and any other flammable materials, as well as ensuring that the chimney is regularly cleaned to prevent buildup of highly combustible creosote.

Cloth

Cloth, particularly natural fibers like cotton and wool, is another common combustible material found in homes and businesses. 

While cloth generally burns slower than paper, it still poses a fire hazard once it catches fire. 

Cloth is a key component in items like clothing, curtains, bed linens, and upholstery. 

In a fire, clothing can act as fuel, spreading flames across a room rapidly. 

To mitigate the risks associated with cloth, it is essential to keep fabric items away from open flames such as candles, space heaters, or cooking appliances. 

Coal / Charcoal

Coal and charcoal are fuels commonly used in barbecues, fireplaces, and industrial applications due to their ability to burn steadily and produce significant heat. 

However, both coal and charcoal are highly combustible materials. 

They require proper handling and storage to avoid spontaneous combustion, which can occur when stored improperly. 

When coal or charcoal is exposed to heat, it can begin to smolder and eventually catch fire. 

To prevent this, coal or charcoal should always be stored in cool, dry areas away from flammable liquids or materials.

Cooking Oil

combustible materials cooking oil

Cooking oil is commonly used in cooking and is a combustible liquid. 

While it may not ignite as easily as some flammable liquids like petrol, oil can still catch fire if it reaches its flash point or is exposed to high heat. 

When cooking oil is overheated, it can ignite and burn rapidly, making it difficult to extinguish with water. 

It is important to monitor oil temperatures and avoid overfilling cooking appliances. 

If cooking oil begins to smoke heavily, it should be removed from heat immediately.

Grease

Grease, a byproduct of cooking oil, is another highly combustible material, often found in kitchens and machinery. 

Grease fires are especially hazardous because water can exacerbate the flames and spread the fire. 

In kitchens, grease can accumulate in stove hoods, exhaust fans, and cooking appliances, creating fire risks if not cleaned regularly. 

In industrial settings, grease is often used in machinery and can ignite if exposed to heat or sparks. 

Lubricants

Lubricants like motor oil and industrial greases are essential for reducing friction in machinery, but they are also combustible. 

Improper storage or exposure to heat can cause lubricants to catch fire, particularly in industrial or mechanical environments where sparks or high temperatures are common. 

To safely store lubricants, they should be kept in sealed containers and away from heat or open flames. 

It’s also important to keep storage areas well-ventilated and to follow manufacturer recommendations for handling and disposal to reduce fire risks.

Kerosene

Kerosene, used as a liquid fuel for heating, lighting, and in aviation, is a highly combustible material. 

While it is less volatile than petrol, it can still cause significant fire hazards. 

Kerosene should always be stored in approved containers designed for flammable liquids. 

In homes, kerosene lamps and heaters must be handled with care, and the fuel should never be stored near heat sources. 

Diesel

Diesel is another commonly used combustible liquid, found in transportation and heavy machinery. 

While it is less flammable than petrol, it can still cause significant fires if not handled properly. 

Diesel fires can escalate quickly if fuel spills or leaks occur near heat sources. 

Diesel should always be stored in proper containers and kept away from sparks or open flames. 

How Can Combustible Materials Be Used or Stored Safely?

storing combustible materials safely

Proper handling and storage of combustible materials are essential to prevent fires and ensure safety. 

Here are some practical tips for their safe use and storage:

Use Approved Containers

Store combustible liquids in containers specifically designed for flammable substances. 

These containers should be leak-proof, clearly labeled, and kept sealed when not in use.

Maintain Proper Ventilation

Store materials like coal, charcoal, and lubricants in well-ventilated areas to prevent heat buildup. 

This reduces the risk of spontaneous combustion.

Keep Away from Heat Sources

Ensure combustible items are stored far from open flames, heaters, or electrical appliances. 

Even indirect heat can cause materials like straw or cloth to ignite.

Avoid Overloading Storage Areas

Avoid piling materials too high, as this can trap heat and increase fire risks.

Regular Inspections

Check for leaks, damage, or signs of overheating in storage areas. 

Repair or replace damaged containers promptly.

Have Fire Extinguishers Nearby

Place appropriate fire extinguishers, and other fire suppression equipment near storage areas.

What is the Difference Between Flammable and Combustible Materials?

The primary difference between flammable and combustible materials lies in their ignition temperature. 

This determines how easily they catch fire under certain conditions.

Flammable Materials

Flammable materials ignite easily at lower temperatures, typically below 37.8°C (100°F). 

These materials can catch fire with minimal heat or a small spark, making them more hazardous. 

Due to their high volatility, flammable materials require stringent handling and storage conditions, such as being stored in sealed containers away from heat sources.

Combustible Materials

Combustible materials require higher temperatures, typically above 37.8°C, to ignite. 

Although they are less volatile than flammable materials, they still pose significant fire risks if improperly handled. 

While not as easily ignited, combustible materials can fuel large fires once they start.

Both flammable and combustible materials can be hazardous, but understanding their differences helps ensure proper storage, handling, and fire safety precautions.

What are Non-Combustible Materials?

non combustible materials

Non-combustible materials are substances that do not ignite, burn, or support combustion under normal conditions. 

These materials are often used in construction, manufacturing, and safety applications due to their fire-resistant properties.

Characteristics of Non-Combustible Materials

Non-combustible materials can withstand high temperatures without catching fire or emitting toxic gases. 

They do not contribute to the spread of fire and are considered safe for use in environments where fire risk is a concern.

Examples of Non-Combustible Materials

Metal

Steel and aluminum are widely used in construction due to their durability and fire resistance.

Concrete

A common choice for buildings, it resists heat and provides structural integrity during fires.

Glass

Certain types, like tempered or fire-rated glass, can endure high heat without breaking.

Brick and Stone

These materials are naturally resistant to fire and commonly used in construction.

Conclusion

You should now have more of an understanding of the most common combustible materials.

Understanding combustible materials and their risks is essential for safety. 

By following safety protocols and training, using appropriate fire extinguishers, and ensuring proper storage, the dangers of combustion can be minimised. 

Awareness and preparedness are key to preventing fires and protecting lives and property.

AEI Cables calls for Building Safety Act to be widely understood

AEI Cables has said the performance of cabling in critical fire safety systems needs to be clearly understood as part of the new Building Safety Act.

The new Building Safety Act makes requirements for higher-risk buildings which are those deemed to be of at least 18 metres in height or at least seven storeys containing at least two residential units.

The Act updates guidelines for construction and management of higher risk buildings and covers the whole supply chain including electrical safety systems and cabling. The current British Standard Code of Practice BS 8519 identifies six categories of power and control cables with survival times of 30, 60 or 120 minutes. 

General Manager, AEI Cables, Stuart Dover’s statement

Stuart Dover, General Manager of AEI Cables, said: “There is a lot of new detail in the legislation and we welcome the requirements of the Act. However, there is a pressing need to understand the part played by electrical safety systems and the cabling that operates these systems.

“There is good information available through the cabling industry including our own technical advisers about cable testing, cable classifications and cable performance in real fire conditions.”

The systems in these buildings powered by electrical cables, including smoke and heat extraction systems, assist fire services in firefighting and a safe evacuation in the case of life safety.

The Building Safety Regulator

The Building Safety Regulator will oversee the safety and performance of all buildings, as well as having a special focus on high-rise buildings. It will promote competence and organisational capability within the sector including for building control professionals and tradespeople.

Building owners should now have their building safety regime in place and any occupied higher-risk buildings should be registered with the Building Safety Regulator.

New legislation needs to be welcomed, says AEI Cables: Summary

AEI Cables has called for the updates to the Building Safety Act to be widely understood. AEI’S General Manager said that there is a pressing need to understand the part played by electrical safety systems and the cabling that operates these systems.

North Wales Fire & Rescue voice support for Register My Appliance Week

North Wales Fire and Rescue Service is supporting Register My Appliance Week (20-26 January 2025) and is urging all households to register these machines, small or large, to ensure their brands know where to find them.

Whether machines are newly-purchased, long-installed, have been acquired ‘nearly-new’ or second-hand, registration is needed to help ensure the longest possible safe lifespan.

According to research, households could be missing out on important safety information because they have yet to register over 40 million large appliances in use in their homes.

With an estimated 133 million fridges, washing machines and ovens in use in UK homes, nearly a third of household have never or rarely registered their large appliances, rendering them extremely hard to trace if a safety repair is ever needed.

Survey on household appliances

A new survey by OnePoll for the Association of Manufacturers of Domestic Appliances (AMDEA) found that two thirds (68%) of baby boomers said they could not live without their washing machine, closely followed by Gen X (67%). Millennials differed, however, with 56% valuing equally their washer and fridge.

Inter-generational harmony was shown over the impact washing machines had on domestic life with more than half (58%) agreeing it was significant. High regard was also given to vacuum cleaners, dishwashers, fridges and freezers.

The survey by OnePoll also revealed products once considered luxury items are now regarded as everyday necessities by younger generations. Two thirds of Gen Z considered hair tongs, tumble dryers and air fryers as necessities rather than luxury items. By contrast, however, nearly half (47%) of Gen X (just two ‘generations’ older) consider the trusty tumble dryer an extravagance.

Head of Prevention, North Wales Fire and Rescue, Kevin Jones’ statement

Kevin Jones, Head of Prevention for North Wales Fire and Rescue said : “We all value how appliances have changed our lives and are excited by how smart and efficient tech makes chores easier. However, it’s important to ensure these machines we use everyday are registered. It’s quick as well as absolutely free, and means you will be the first to know if a safety repair is ever needed. Just a few minutes well spent will ensure you can enjoy the machine’s perks without sacrificing safety.”

Recalls on home appliances are rare but issues with the equipment can develop over time and a simple, free in-home adjustment by a qualified engineer can ensure a longer and safer life for machines. But, unlike our cars for which logging details is mandatory, a vast number of these valuable possessions are still untraceable because they are unregistered.

Register My Appliance Week backed by North Wales Fire & Rescue Service: Summary

The North Wales Fire and Rescue Service has announced their support for Register My Appliance Week, taking part over the 20-26 January 2025. Registering your household appliance is necessary for a longer lifespan and to optimise user safety.

EmiControls sends TAF Firefighting Robot to support Ukrainian firefighters

EmiControls, a company based in Italy, who design innovative firefighting solutions using water mist technology, has recently delivered a TAF firefighting robot to Ukrainian firefighters in collaboration with its local partner.

EmiControls have sent its TAF Firefighting Robot to enhance the safety of emergency responders in the war zone, where over 100 firefighters have already lost their lives and many others have been injured.

The handover of the TAF Firefighting Robot to Ukraine’s State Emergency Service (DSNS) took place during an event attended by German Development Minister Svenja Schulze.

Innovative technology for enhanced safety

The TAF AirCore firefighting robot has been designed by EmiContols to tackle challenging scenarios. Its modular design and remote-control capability make the TAF AirCore suited for operations in crisis areas.

Equipped with thermal imaging and high-resolution cameras, the robot allows firefighters to operate from a safe distance of up to 300 meters. This protects them from dangers such as fires, explosions and firearms.

The aim is to support the work of firefighters and increase their safety under extreme conditions. The use of water mist enables targeted firefighting but also helps to suppress gas or smoke and create escape routes.

International cooperation for deployment in Ukraine

EmiControls is headquartered in Bolzano, Italy, and is part of the TechnoAlpin Group. The company develops solutions for firefighting, dust suppression and odor control using water mist technology, which is deployed worldwide. The TAF AirCore firefighting robot, distributed via Magirus GmbH, is based on the idea of using an air stream generated by a turbine to distribute water mist on a mobile platform, allowing for more efficient firefighting.

CEO OF EmiControls, Martin Eppacher’s statement

CEO of EmiControls, Martin Eppacher said of the delivery that: “Our goal is to provide innovative technologies that protect people in dangerous situations and make the work of emergency responders easier.”

TAF Firefighting Robot sent to Ukrainian firefighters by EmiControls: Summary

EmiControls have sent one of their TAF Firefighting Robots to Ukrainian firefighters, to help emergency responders feel safer.

Different Classifications of Burns Explained

Burns are a common injury that can range from mild to severe. 

Understanding the different classifications of burns can help in providing the right treatment and knowing how to prevent them. 

Burns can be caused by a variety of factors, and knowing how to handle them is important for both prevention and care.

In this article, we will explain the different classifications of burns and how they are caused. 

We will also explore the best ways to treat burns and provide helpful tips on preventing them in different situations.

What are the Main Causes of Burns?

causes of burns

Burns can occur in many ways. 

Understanding the different causes helps in both preventing and treating burns effectively. 

Below are the main causes of burns.

Thermal

Thermal burns are caused by exposure to heat sources like fire, hot liquids, steam, or heated surfaces. 

These burns are the most common and can happen in various environments, especially in the kitchen or around open flames. 

Thermal burns can range from mild to severe, depending on the temperature and length of exposure. 

Examples include burns from a hot stove, boiling water, or touching a heated iron.

Cold

Cold burns, also known as frostbite, occur when the skin is exposed to extremely cold temperatures for extended periods. 

These burns damage the skin and tissues, leading to numbness, discoloration, and in severe cases, tissue death. 

Cold burns commonly happen in freezing temperatures or when handling extremely cold objects, such as liquid nitrogen or snow.

Friction

Friction burns happen when skin rubs against a rough surface, generating heat. 

This can occur during physical activities such as running, falling, or using tools like a belt sander. 

The friction generates enough heat to damage the skin’s surface, causing redness, blisters, and pain. 

These burns can be superficial but may cause discomfort and take time to heal.

Radiation

Radiation burns are caused by exposure to ultraviolet (UV) radiation from the sun or other sources of radiation. 

Sunburn is a common example of a radiation burn. 

These burns can damage the skin’s DNA, leading to redness, swelling, and peeling. 

Prolonged or intense exposure to radiation can also increase the risk of skin cancer.

Electrical

Electrical burns happen when the body comes into direct contact with an electrical current. 

These burns can cause both external skin damage and internal injuries, depending on the voltage and duration of exposure. 

Electrical burns may occur from faulty appliances, downed power lines, or electrical equipment mishandling. 

The damage can be severe and may require emergency medical attention.

Chemical

Chemical burns occur when the skin comes into contact with corrosive substances like acids, alkalis, or solvents. 

These chemicals can cause deep tissue damage by breaking down cells. 

Chemical burns often happen in industrial or home settings where chemicals are used for cleaning, gardening, or maintenance. 

Immediate washing and neutralising the chemical are essential to minimise damage.

The Different Classifications of Burns

classifications of burns image
Source: Wikipedia

Burns are classified into four different degrees. 

Each degree indicates the severity of the burn and helps determine the appropriate treatment.

First Degree

First-degree burns are the mildest type of burn. 

They affect only the outer layer of the skin, known as the epidermis

These burns typically result in redness, pain, and slight swelling. 

A common example of a first-degree burn is a mild sunburn. 

The skin may appear red, and the affected area might feel tender to the touch, but no blisters form. 

First-degree burns usually heal within a few days without permanent damage. 

Second Degree

Second-degree burns are more severe and affect both the epidermis and the second layer of skin, called the dermis

These burns can cause intense pain, swelling, and blistering. 

The skin may appear red, shiny, and wet, due to fluid leaking from damaged tissue. 

Second-degree burns can occur from hot liquids, steam, or direct contact with fire. 

The healing process takes longer than first-degree burns and may take up to 2–3 weeks, depending on the severity. 

Third Degree

Third-degree burns are deep burns that extend through all layers of the skin and into the underlying tissues. 

These burns can cause the skin to appear white, charred, or leathery, and they may not be painful initially due to nerve damage. 

However, third-degree burns are extremely serious and can cause permanent damage to the skin and underlying structures. 

Third-degree burns can result from prolonged exposure to fire, hot liquids, electrical sources, or chemicals. 

Immediate medical care is required to treat these burns, as they can lead to severe complications such as infections or shock.

Fourth Degree

Fourth-degree burns are the most severe type of burn, causing deep damage not only to the skin but also to muscles, tendons, and bones. 

These burns destroy all layers of the skin and may also affect the underlying tissue and bone. 

The skin may appear blackened or charred, and there may be no pain in the area due to extensive nerve damage. 

Fourth-degree burns are life-threatening and require immediate medical intervention. 

How are Burns Treated?

how are burns treated

Treatment for burns depends on the degree of the burn and its severity. 

For minor burns, at-home care may be sufficient, while more severe burns require immediate medical attention.

First Degree

First-degree burns are the least severe and typically require minimal treatment. 

The main goal is to relieve pain and reduce inflammation. 

To treat a first-degree burn:

Cool the Burn

Run cool (not cold) water over the burned area for 10-15 minutes or use a cold, wet compress to reduce heat.

Moisturise

After cooling, apply soothing lotions like aloe vera gel or over-the-counter burn creams to prevent the skin from drying out and to alleviate pain.

Pain Relief

Over-the-counter pain relievers, such as ibuprofen or acetaminophen, can help manage discomfort.

Protect the Area

Keep the burn clean and covered with a sterile, non-stick bandage to prevent infection.

Hydration

Drink plenty of fluids to help the skin heal.

Second Degree

Second-degree burns involve both the epidermis and dermis, so they require more attention:

Cool the Burn

Similar to first-degree burns, cool the area with cool water to reduce pain and swelling.

Don’t Pop Blisters

If blisters form, don’t pop them, as this can lead to infection. Keep them covered with a sterile bandage.

Moisturise

Apply aloe vera gel or burn creams to soothe the area.

Pain Relief

Use pain medications such as ibuprofen or acetaminophen to reduce pain and swelling.

Medical Care

For larger second-degree burns, or if infection is suspected, seek medical care.

Third Degree

Third-degree burns are much more serious and often require professional medical treatment:

Call Emergency Services

Seek medical attention immediately for third-degree burns.

Cover the Burn

If possible, cover the burn with a clean, dry cloth or sterile bandage.

Don’t Remove Burned Clothing

Avoid removing burned clothing, unless it is smouldering.

Do Not Immerse in Water

For deep burns, do not immerse the area in water as it could cause further damage.

Pain Relief and IV Fluids

Medical staff may provide pain management and IV fluids to prevent dehydration and shock.

Third-degree burns often require surgery, such as skin grafts, and have long recovery times.

Fourth Degree

Fourth-degree burns are life-threatening and require immediate medical intervention:

Call Emergency Services

Fourth-degree burns require immediate attention from healthcare professionals.

Prevent Shock

Keep the patient warm and lay them down with their legs elevated to reduce shock.

Monitor Breathing

Ensure the person is breathing, and if necessary, perform CPR until help arrives.

Treatment for fourth-degree burns involves extensive medical care, including surgery, skin grafts, and possibly amputations, depending on the severity.

How to Help Prevent Different Types of Burns?

prevent types of burns

Many burns can be prevented with careful attention to safety

Here are some tips for avoiding burns in various situations.

Thermal Burns

To prevent thermal burns, always handle hot objects with care. 

Use oven mitts or gloves when handling hot pots and pans. 

Ensure that hot liquids or foods are kept away from the edges of counters and tables where they could spill. 

Install and use smoke detectors to alert you of any fire hazards in the home. 

When cooking, never leave the kitchen unattended.

Cold Burns

Cold burns can be avoided by dressing warmly in cold weather. 

Wear layers of clothing, including gloves, hats, scarves, and thermal socks, especially when spending time outdoors in freezing temperatures. 

Avoid prolonged exposure to cold environments, and take regular breaks to warm up. 

Ensure that children and elderly people are properly protected from the cold.

Friction Burns

To prevent friction burns, wear protective gear, such as gloves, elbow pads, or knee pads, when participating in activities that involve physical contact or intense movement, like sports or cycling. 

Make sure footwear is suitable for the environment to prevent slipping and falling, which could cause friction burns.

Radiation Burns

Radiation burns can occur due to prolonged exposure to the sun or other sources of radiation. 

To prevent sunburns, wear sunscreen with SPF 30 or higher, seek shade, and wear protective clothing like hats and sunglasses. 

Avoid prolonged sun exposure, especially during peak hours (10 a.m. to 4 p.m.). 

When dealing with other forms of radiation, always follow safety protocols and wear protective clothing or shields.

Electrical Burns

To prevent electrical burns, ensure that all electrical outlets, cords, and devices are in good working condition. 

Keep electrical appliances away from water sources, and never use electrical devices with wet hands. 

Always turn off the power supply before repairing any electrical equipment. 

Install safety covers on outlets to protect children.

Chemical Burns

To prevent chemical burns, always handle chemicals with caution. 

Wear appropriate protective gear such as gloves, goggles, and aprons when working with cleaning products, solvents, or industrial chemicals. 

Store chemicals in a safe location, away from children and pets, and read labels carefully for handling instructions. 

Ensure good ventilation when using strong chemicals

Conclusion

You should now have more of an understanding of the different classifications of burns.

Burns are a common injury, but they can range from minor to life-threatening depending on the severity. 

Understanding the different classifications of burns and knowing how to treat them is essential. 

Whether the burn is caused by heat, cold, chemicals, or friction, timely and proper treatment is crucial.

By practising safety measures in the home and work environment, burns can be prevented. 

Whether cooking, handling chemicals, or enjoying outdoor activities, taking precautions can help keep you and your loved ones safe from burns.

Always remember, if a burn seems severe, it’s important to seek medical help immediately.

Building safety for the modern world

Vice President Beth Tubbs and Regional Director Mohamed Amer highlight ICC’s role in advancing building resilience, fire safety and sustainable practices in the MENA region

Having recently taken its first step onto the global stage at the International Fire Operations Conference (IFOC) in Riyadh, Saudi Arabia, the International Code Council (ICC) is bringing a mission of comprehensive building safety and resilience.

In this interview, Beth Tubbs, ICC’s Vice President of Codes Development and Mohamed Amer, Regional Director of Operations at ICC MENA, outline ICC’s role in advancing fire safety through an integrated approach to building codes and standards. Together they provide insight into the organisation’s work in the Middle East, where ICC’s solutions are increasingly relevant in an interconnected, fast-evolving world.

Could you introduce yourself and explain your role at the International Code Council?

Beth: I am Beth Tubbs, Fire Protection Engineer, past president of the Society of Fire Protection engineers and registered professional fire protection engineer in California and Massachusetts, USA.  I am currently serving as the Vice President of Codes at the ICC.  I have been heavily involved in the code development process associated with the International Codes and associated legacy codes along with the development of the ICC Performance Code since the late 1990s. 

As Vice President I focus on the facilitation and implementation of the code development process for ICC.  I, along with the code development team, work to ensure the successful development of a new set of the I-Codes every three years. In addition to code development, we develop commentary and work with many activities both internally and externally to ICC to help make the codes as technically up to date as possible.

Amer: I am Mohamed Amer, the Regional Director of Operations for the MENA region at the International Code Council (ICC). I lead ICC’s Dubai office, where I provide essential support to organisations involved in building safety across the region, working closely with a wide range of stakeholders, including authorities having jurisdiction (AHJs), consultants, manufacturers, architects and more.

With over 15 years of experience in the oil and gas, project management and TIC industries, I am responsible for spearheading ICC’s operations and business development in the MENA region. I collaborate with both existing and new partners to deploy ICC’s service lines and introduce innovative business offerings, ensuring we meet the region’s evolving needs for building safety and code compliance.

For readers unfamiliar with ICC, what is the primary mission of the organisation and what services does it provide?

Amer: The International Code Council is a member-focused organisation with a network of over 64,000 members. Recognised industry wide as leading global source of building safety codes and standard, it also provides a range of additional services known as our ‘Family of Solutions’. These offerings include testing, inspection, product certification, training and credentialing, accreditation and consulting services.

Why is ICC’s participation in the International Fire Operations Conference in Riyadh a significant step for the organisation?

Amer: As a first-time participant in this strategic event, we found ourselves with a moral responsibility to advance and tackle fire safety challenges in the region. This event was helpful for ICC to engage directly with key stakeholders, including authorities having jurisdiction (AHJs), industry professionals, building safety stakeholders in general and in the fire safety domain in specific for enhanced collaboration. By showcasing its expertise in developing building safety codes and standards, including fire safety, ICC further strengthens its leadership position in the region.

Additionally, the conference provided an opportunity for ICC to expand its network, forming strategic partnerships that can lead to collaborative efforts in shaping local fire safety regulations. With Saudi Arabia’s rapid growth and focus on innovation in construction, ICC’s presence at the conference also highlighted its role in promoting safety and resilience through its broad range of services, ranging from certification and training to consulting.

This participation not only allowed ICC to address regional fire safety challenges but also provided valuable insight into the evolving market, ensuring that its solutions remain relevant and tailored to local needs.

How would you describe ICC’s current work in the Middle East and what priorities is it addressing in the region?

Amer: The ICC MENA office was established to serve as a regional hub for building safety expertise, supporting local stakeholders and partners in the rapidly evolving building safety landscape. Initially focused on customising the I-Codes for the region, the office aimed to position the ICC as a trusted resource offering tailored solutions.

Over the past five years, under my leadership, ICC MENA has expanded its influence through strategic partnerships, workshops, media content and trade show participation, establishing ICC as a leading voice and preferred trusted advisor in building safety. The office has enhanced Testing, Inspection and Certification (TIC) solutions for new building technologies, such as 3D concrete printing and offsite construction, by working closely with Authorities Having Jurisdiction (AHJs).

Aligning with regional goals of sustainable construction and digital transformation, ICC’s efforts focus on promoting resilient and innovative building practices through appropriate codes, standards and assessments.

Can you outline the concept of a “holistic and coordinated approach to building safety” that you were discussing at the IFOC?

Beth: The concept of a holistic and coordinated approach to building safety is focused upon having a strong ecosystem that is made up of various components that work together as a system.  This begins with model codes (regulations) and associated standards but those do not create safe buildings on their own. 

To be successful, various other elements must be available and in place to support the successful implementation.  This includes enacting legislation, a compliance (enforcement) infrastructure, proper qualifications of those involved, product testing, inspection and certification programs and a proper accreditation framework for such things as laboratories and manufacturing processes.

What are some key global building safety challenges that ICC aims to address with its codes and standards?

Beth: The core building safety challenges in today’s world include quickly developing and evolving technologies such as energy storage systems, the popular use of lithium ion fuelled devices and equipment, combustibility of building products, changing risk profiles in the places we live and work, threats to the built environment from more numerous wildland fires and climate change impacts such as hurricanes.  These challenges are even greater for existing buildings.

Have recent technological or environmental changes impacted fire safety and ICC’s regulatory focus?

Beth: We are seeing rapid changes in a variety of areas including technological changes and societal expectations which are difficult to keep up within real time.  Currently the big issues related to technology involve how we integrate and coexist with photovoltaics, energy storage systems and the increasing use of lithium ion and similar battery technologies which pose different fire safety risks than in the past. 

In addition, we are seeing more plastics in construction products and systems and the contents of our buildings.  These hazards can be addressed, but we must be aware that the risk profile is changing.  Additionally, there is a growing demand for sustainability, energy efficiency and the need for affordable housing.  These demands are often placing pressure on the fundamentals of fire safety as such features and characteristics often conflict with these goals.

In your view, what are the critical factors for building resilient and safe structures, especially in rapidly developing regions?

Beth: A baseline of safety needs to be established with building and fire regulations.  Once the regulations are established methods to ensure compliance need to be in place and supported by the ability to demonstrate that the construction and associated products meet the requirements of the regulations and are installed as specified in the design and as approved by the authorities. 

Finally, how does ICC envision the future of international cooperation in building safety and what role will it play in shaping this future?

Amer: There is so much construction happening in GCC and an immense demand for innovative solutions, best practice knowledge and leveraging tools that have proven successful in other parts of the world. We plan to deepen our engagement in key markets, including Saudi Arabia, Oman and the UAE, where there’s significant interest in our solutions, while at the same time continuing to engage with AHJs and stakeholders in other markets throughout the region to respond to identified and articulated needs with tailored solutions and propagate our success stories.

While we see considerable opportunity to expand our TIC business and enhance regulatory support, we view ourselves as trusted advisors – listening to the needs that our partners communicate to us and striving to provide customised service offerings that meet those needs and the growing needs of the region. We’re also committed to staying ahead of emerging issues such as climate change, fire safety and digital transformation, ensuring that our expertise continues to drive the future of building safety in the MENA region. 

About the International Code Council

The International Code Council is a global source of model codes and standards and building safety solutions. The I-Codes, standards and solutions are used to ensure safe, affordable and sustainable communities and buildings worldwide. More information about ICC MENA: www.iccsafe.org/mena

This article was originally published in the January 2025 issue of International Fire & Safety Journal – to read your FREE digital copy, click here.

`Building safety is being ignored by clients’ say the Building Engineering Services Association

Construction clients are failing to engage with the new building safety regime, according to research carried out by the Building Engineering Services Association (BESA).

The Association used its regional meetings with members as ‘focus groups’ over a six-month period to gauge take-up of measures introduced under the Building Safety Act and awareness of roles, responsibilities and risks associated with the legislation, which has been in force since 2022.

Findings from the BESA report

The main finding was a lack of engagement from clients with BESA members reporting that not a single client had discussed compliance with them. They asserted that, far from seeing evidence of any significant culture change, the pressure to deliver projects faster and more cheaply was increasing at the expense of quality and safety.

Members from all UK regions confirmed that project decisions remained primarily driven by cost and speed, particularly by owners and developers whose buildings were not classified as ‘higher risk’ (HRBs). This confirmed the suspicion that most clients believe the Act only applies to this type of building.

The meetings followed in-depth research commissioned by BESA last year which revealed that, while awareness of the legislation was rising, contractors and clients were confused about their roles and responsibilities and there was little discernible change taking place.

BESA’s Director of Specialist Knowledge, Rachel Davidson’s statement

BESA’S Director of Specialist Knowledge, Rachel Davidson spoke out: “As there is currently very little enforcement of the legislation and, therefore, no apparent consequences, clients are still subjecting contractors to aggressive and sub-economic pricing.

“Not a single client has asked any of our members about compliance with the Act.  Tenders are still being won on lowest price and still being value engineered throughout the project on non-HRB works.

“Several contractors who insisted on applying more rigorous safety measures said they had been priced out of projects as a result.”

Davidson has called for a government driven public awareness campaign to improve client engagement.

BESA members and their consensus

The BESA meetings also confirmed that most clients erroneously considered the legislation to be a ‘Construction’ Safety Act i.e. aimed exclusively at the construction industry and did not, therefore, apply to those owning, managing and operating buildings throughout their lifecycle.

BESA members also expressed concern about the number of projects being delayed due to additional planning constraints exacerbated by severe shortages in local authority building control departments.

The need to pay for additional third-party testing to ensure building components meet the specification when operating as a system is another potential source of higher cost and project delays, the BESA meetings reported.

Davidson also discussed how : “The serious geographical divide with clear evidence that the further north you go the less awareness of and engagement with the legislation you find, particularly among clients.”

AMA Research’s survey

The industry-wide survey, carried out by AMA Research between May and September last year, reported that 88% of respondents showed some awareness of the Act with almost a third claiming to be fully aware. There were higher levels of awareness among BESA members than the industry as a whole, but detailed understanding of roles and responsibilities was found to be mixed and varied by building and project type.

Most contractors told researchers that the Act was only having a minimal impact on their businesses and just 9% reported making any significant changes to help them comply.

Compliance and legal understanding of the legislation were proving to be challenging for most industry businesses who told researchers they needed more training and a closer working relationship with the office of the Building Safety Regulator to embed the changes required to improve building safety.

Levels of awareness vary according to company size with larger organisations, both in terms of turnover and number of employees, shown to be more up-to-speed.

BESA Director of Specialist Knowledge, Rachel Davidson’s final thoughts

“Some firms have used the Act, and the wider post-Grenfell context, as an opportunity to re-set employees’ focus on what makes them good at their jobs and where they find deficiencies, to carry out more training,” added Davidson. “However, this is far from universal and access to appropriate training remains another key challenge for our sector and one that BESA is pursuing vigorously.”

She added that the industry needed clearer and simpler guidance to help them both apply the legislation measures to their own businesses and explain them to their clients. She also called for a closer and more productive relationship with the Regulator involving open channels of communication and a greater willingness to offer advice on how to comply with Act.

“Also, if the government is really serious about improving standards of safety and performance alongside its ambitious plans for construction growth, it must properly resource the Regulator and ensure that this potentially game changing legislation is fully enforced,” said Davidson.

BESA say `building safety is being ignored by clients’: Summary

The Building Engineering Services Association have acknowledged what they say is a failure to engage with the new building safety regime. Noting project decisions being influenced by cost and speed as being important factors.

OHEAP Fire and Security announce merger with Risk Assessment Solutions

As the New Year starts, OHEAP Fire and Security announces that it is merging Risk Assessment Solutions into its wide range of fire protection, security, and training services, enabling it to offer a holistic safety risk management solution to all its customers.

The merger will include services such as health and safety training, risk assessments, and compliance documentation management in the OHEAP Fire and Security portfolio. This gives customers easier access to a full range of protection services.

Managing Director of OHEAP Fire and Securities statement

Nicholas Heap, Managing Director of OHEAP Fire and Security notes: “We are delighted to be able to add additional, critical services to our portfolio as we bring Risk Assessment Solutions under the OHEAP umbrella.

“It means we can provide a wraparound protection and risk management solution for our customers, giving them peace of mind as they focus on their day jobs. This latest growth means we can better support the Risk Assessment Solution customers with a wider array of services to help them grow safely and securely.

“We are committed to ensuring we are the best people to help protect your business or organisation, whether is is through additional services, the best people or the highest quality service. We aim to make OHEAP the protection partner of choice.”

OHEAP’s new developments

This latest development is key to the strategic development of OHEAP Fire and Security who have always had the mission of empowering people with the right tools to protect their business.

Starting with essential fire safety services including extinguishers and alarms, OHEAP has expanded over the decades to offer the complete protection suite including technology-led security solutions and specialist PPE and workwear.

The last six decades have seen OHEAP Fire and Security steadily expand the services they offer to many different industries in a variety of settings across the UK, and the addition of health and safety services is another example of their commitment to protecting organisations.

OHEAP Fire and Security merge Risk Assessment Solutions into their wide range of services: Summary

The merger between OHEAP Fire and Security and Risk Assessment Solutions allows for a holistic safety risk management to be given to all their customers. Services that will be provided include fire protection, security, and training.

Nicholas Heap, Managing Director of OHEAP Fire and Security spoke about how this collaboration will enable wraparound protection and risk-management to all their customers, whilst enabling Risk Assessment Solutions to safely and securely grow.

AEI Cables says early partnering is key to solving legislation challenges

Early collaboration between project partners is an important first step to achieving smooth project completion under new legislation, says cable supplier AEI Cables.

The new Building Safety Act – introduced in October 2023 – makes new stringent requirements for higher-risk buildings which are those deemed to be of at least 18 metres in height or at least seven storeys containing at least two residential units.

The systems in these buildings powered by electrical cables – including smoke and heat extraction systems – assist fire services in firefighting and a safe evacuation in the case of life safety.

AEI Cables General Manager’s statement

Stuart Dover, General Manager of AEI Cables, said: “We recognise the issues presented by the new legislation for all those working in the built environment but by working closely together early in the process we believe we can overcome a lot of the challenges.

“We are finding that collaboration amongst our partners really works and leads to a much more streamlined, efficient process.”

The Building Safety Regulator’s role

The Building Safety Regulator will oversee the safety and performance of all buildings, as well as having a special focus on high-rise buildings. It will promote competence and organisational capability within the sector including for building control professionals and tradespeople.

Building owners should now have their building safety regime in place and any occupied higher-risk buildings should be registered with the Building Safety Regulator.

AEI Cables discuss importance of early collaboration due to new legislation: Summary

Thanks to the Building Safety Act and their tight new rules regarding higher-risk buildings, AEI have mapped out a plan they believe will combat any legislative issues.

Stuart Dover of AEI stated that by promoting collaboration amongst partnerships, a smoother process is ensured.