8 Types of Fire Alarm Systems

Fire alarm systems play a crucial role in keeping buildings safe. 

They detect smoke, heat, or flames and alert occupants to evacuate. 

There are various types of fire alarm systems, each designed for different needs and building types. 

Understanding these systems helps in choosing the right one for effective fire protection. 

This article explores nine types of fire alarm systems, classified into different categories.

Why Different Types of Fire Alarm System Exist

different types of fire alarm

Different types of fire alarm systems exist to address the unique safety needs of various buildings and environments. 

Fire risks can vary significantly depending on factors like building size, occupancy, use, and potential fire hazards. Here’s why diverse systems are necessary:

Varying Levels of Risk

Buildings have different levels of risk associated with fire. 

High-risk environments, such as hospitals or chemical factories, require advanced systems for early fire detection

Lower-risk settings, like small offices, might need less comprehensive coverage.

Building Complexity

The complexity and layout of a building affect the type of fire alarm system needed. 

Large or multi-story buildings may require intricate systems with multiple detectors and alarms. 

Smaller or simpler structures might only need basic systems.

Specific Needs

Certain buildings have unique requirements based on their use. 

For instance, museums may need systems that avoid false alarms while protecting valuable artefacts. 

Laboratories might need detectors sensitive to specific types of chemicals.

Compliance and Regulations

Different types of fire alarm systems help meet specific legal and safety regulations. 

Compliance with these regulations ensures that buildings adhere to fire safety standards, protecting both occupants and property.

9 Types of Fire Alarm Systems

M Category

m category fire alarm

The M category focuses on manual fire alarm systems. 

These systems require human intervention to activate the alarm and alert occupants to a fire. 

They are designed for situations where manual activation is practical and effective.

Manual Call Points

Manual call points are a primary component of M category systems. 

These devices are typically mounted on walls throughout a building. In the event of a fire, someone pulls the handle to trigger the alarm. 

This action sends a signal to the fire alarm system, initiating an alert. 

Manual call points are commonly found in schools, offices, and public buildings where manual intervention is feasible.

Manual Alarm Bells

Manual alarm bells are another form of M category systems. 

These bells emit a loud sound when activated. 

They are often used in smaller buildings or areas where manual activation is practical. 

Manual alarm bells alert everyone in the vicinity to evacuate immediately.

L Category

The L category of fire alarm systems refers to automatic fire detection systems designed to provide early warning and minimise the risk of fire spreading. 

These systems are crucial in safeguarding lives and property by detecting fires before they become uncontrollable. 

The L category is subdivided into several classes based on the level of protection provided and the specific needs of the building.

L1 Category

l1 category fire alarm

L1 systems offer the highest level of protection and are designed for buildings where early detection is crucial. 

They provide comprehensive coverage by installing detectors throughout the entire building. This includes smoke detectors, heat detectors, and manual call points in every area.

L1 systems cover all areas of the building, including all rooms, corridors, and staircases.

These systems use a combination of smoke, heat, and sometimes flame detectors to ensure early and accurate detection.

L1 systems are equipped with alarms that provide immediate notifications to occupants, giving them more time to evacuate safely.

L1 systems are typically used in high-risk buildings such as hospitals, high-rise buildings, and large commercial properties. 

In these environments, the prompt detection of a fire can prevent significant damage and save lives.

L2 Category

l2 category fire alarm

L2 systems offer a slightly less extensive level of coverage compared to L1 systems. 

They focus on protecting specific high-risk areas within a building while providing basic coverage for other parts.

L2 systems include detectors in high-risk areas such as kitchens, laboratories, and electrical rooms. 

These areas are more likely to experience fires due to the nature of their activities.

While L2 systems provide detection in high-risk areas, they do not cover every room or corridor. 

The coverage is focused on areas where fires are more likely to start.

L2 systems often include manual call points in other areas of the building, allowing occupants to manually activate the alarm if necessary.

L2 systems are suitable for buildings where specific areas pose a higher fire risk but where full L1 coverage is not required. 

L3 Category

l3 category fire alarm

L3 systems provide protection primarily for escape routes such as corridors and stairwells. 

These systems ensure that people can safely evacuate in the event of a fire by detecting smoke or heat along these critical paths.

L3 systems focus on protecting escape routes, ensuring that these paths are clear of smoke and allowing for safe evacuation.

Detection is typically limited to areas along escape routes. 

The system may not include detectors in other parts of the building.

Manual call points may be included near escape routes, enabling occupants to trigger the alarm if they notice a fire.

L3 systems are used in buildings where ensuring safe evacuation is the primary concern. 

They are commonly found in residential buildings, small commercial properties, and places where escape routes are crucial for safety.

L4 Category

l4 category fire alarm

L4 systems are designed for buildings with specific fire risks, such as storage areas or specialised equipment rooms. 

These systems provide detection and protection tailored to the unique needs of these areas.

L4 systems include detectors in areas with specific fire risks. 

For example, they may be used in data centres, warehouses, or areas with high-value assets.

The detection system is tailored to the types of hazards present in the protected area, such as smoke detectors in a server room or heat detectors in a storage area.

L4 systems are appropriate for buildings with unique or high-value areas that require specialised fire protection. 

They are often used in facilities with critical equipment or valuable inventory, where targeted detection is essential.

L5 Category

l5 category fire alarm

L5 systems are customised to meet specific needs and requirements based on the building’s layout and fire risks. 

These systems are highly adaptable and can be designed to address unique fire safety challenges.

L5 systems are tailored to the specific requirements of a building, including its size, use, and fire risks. 

This customization ensures that the fire alarm system meets the exact needs of the environment.

The system may include a combination of smoke, heat, and other detectors, depending on the building’s needs. 

It can also integrate with other fire safety systems for comprehensive protection.

L5 systems are used in buildings with unusual layouts or specialised fire safety needs. 

Examples include historical buildings, museums, and custom-built facilities where standard systems may not provide adequate protection.

P Category

The P category of fire alarm systems focuses on providing automatic fire detection and alerting occupants to evacuate. 

These systems are designed to ensure that a fire is detected early and that people are promptly informed. 

The P category is divided into two sub-categories based on the level of coverage and protection provided:

P1 Category

p1 category fire alarm

P1 systems offer the highest level of protection by providing comprehensive coverage throughout an entire building. 

These systems are designed to detect fires early in all areas, ensuring that any outbreak is quickly identified and addressed.

P1 systems include detectors in every area of the building, such as offices, corridors, storage rooms, and stairwells.

The system uses a variety of detectors, including smoke, heat, and sometimes flame detectors, to ensure early and accurate detection of fires.

P1 systems are equipped with alarms that notify all occupants immediately, allowing for quick evacuation and reducing the risk of injury or damage.

P1 systems are suitable for high-risk environments like shopping centres, large industrial sites, and multi-story buildings where early detection and prompt evacuation are critical for safety.

P2 Category

p2 category fire alarm

P2 systems offer a more targeted approach compared to P1 systems. 

They provide automatic fire detection in specific areas or zones within a building.

P2 systems focus on high-risk areas or zones, such as kitchens, server rooms, or laboratories, while providing basic detection in other areas.

The system can be tailored to address specific fire risks in the protected areas, using the appropriate types of detectors.

P2 systems may include alarms and notifications tailored to the specific areas being protected.

P2 systems are ideal for buildings where full P1 coverage is not necessary but where specific areas require targeted fire detection. 

Examples include schools, smaller offices, and specialised facilities.

Conclusion

The different types of fire alarm systems are essential for protecting buildings and their occupants from fire hazards. 

The different categories and subcategories of fire alarm systems provide varying levels of protection based on specific needs and risks. 

The M category includes manual systems, while the L and P categories focus on automatic detection and warning systems. 

By understanding these systems, you can choose the right fire alarm system for your building and ensure effective fire safety measures.

Fogmaker HDME fire suppression system earns FM approval for mining applications

FM approval awarded to Fogmaker HDME fire suppression system

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

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

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

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

Fogmaker emphasises importance of certification for the mining sector

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

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

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

CEO highlights rigorous testing process and customer benefits

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

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

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

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

Eco-friendly fire suppressant gains recognition

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

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

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

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

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

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

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

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

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

What is COSHH?

Keeping your business safe for everyone in your workplace is vitally important. 

This is where COSHH comes in, but exactly what is COSHH?

COSHH is a crucial regulation for workplace safety. 

This article explains what COSHH is, what it covers, how to comply with it, and everyone’s responsibilities.

What is COSHH?

what is coshh image

COSHH stands for Control of Substances Hazardous to Health. 

It is a set of regulations in the United Kingdom designed to protect workers from health risks associated with hazardous substances. 

COSHH requires employers to manage and control risks associated with these substances to ensure the safety and health of their employees. 

This involves several key activities, including identifying hazardous substances, assessing their potential risks, and implementing control measures to minimise exposure.

The regulations mandate that employers must conduct a thorough risk assessment to evaluate how these substances might affect employees. 

Based on this assessment, they must implement control measures, which may include ventilation systems, protective equipment, and safe handling procedures. 

Employers are also required to provide adequate training for employees on the safe use of hazardous substances and ensure that safety data sheets are available for all chemicals used.

Additionally, COSHH requires regular monitoring and review of the control measures to ensure they are effective and up-to-date. 

Employers must also keep records of risk assessments and any incidents related to hazardous substances.

What Does COSHH Cover?

what does coshh cover

COSHH is a regulation that addresses a wide range of hazardous substances found in various workplaces. 

Understanding what COSHH covers is crucial for managing health risks effectively.

Chemicals

COSHH covers chemicals used in industrial processes, laboratories, and cleaning. 

These include solvents, acids, and detergents. 

Chemicals can pose risks such as toxicity, flammability, or corrosivity. 

COSHH requires employers to identify these risks and implement control measures.

Fumes and Vapours

Workplaces that involve high-temperature processes, such as welding or metalworking, often produce fumes and vapours. 

These can be harmful if inhaled over time. COSHH regulations require proper ventilation and air filtration systems to control exposure.

Dusts

Dusts from materials like wood, flour, or minerals can cause respiratory issues and other health problems. 

COSHH requires measures such as dust extraction systems and regular cleaning to minimise dust levels and protect workers.

Biological Agents

Biological agents include bacteria, viruses, and fungi that can pose health risks. 

For instance, healthcare settings or laboratories may deal with potentially infectious materials. 

COSHH covers the handling, storage, and disposal of these agents, requiring proper hygiene and protective equipment.

Nanomaterials

Nanomaterials are substances with particles smaller than 100 nanometers. 

They can have unique and potentially hazardous properties. 

COSHH regulations apply to the handling and safety of these materials, including risk assessments and protective measures.

Carcinogens

Substances that can cause cancer are covered by COSHH. 

Employers must implement stringent controls to limit exposure, such as using less hazardous alternatives or providing personal protective equipment.

Explosives

COSHH also applies to substances that are explosive or flammable. 

Proper storage, handling, and emergency procedures are required to prevent accidents.

Who Must Comply with COSHH?

who comply coshh

COSHH applies to all employers and self-employed individuals who handle hazardous substances in the workplace. 

This includes a wide range of industries and sectors where hazardous materials are used, stored, or produced.

Employers

Employers are responsible for ensuring compliance with COSHH regulations. 

This means they must:

  • Identify and assess risks associated with hazardous substances.
  • Implement control measures to minimise exposure.
  • Provide training and information to employees about handling these substances.
  • Ensure that safety data sheets are available for all hazardous chemicals.
  • Regularly review and update safety procedures and risk assessments.

Self-Employed Individuals

Self-employed individuals who work with hazardous substances are also required to comply with COSHH. 

They must:

  • Conduct their own risk assessments.
  • Implement appropriate control measures.
  • Use personal protective equipment (PPE) as needed.
  • Keep records of safety procedures and risk assessments.

Contractors and Visitors

Contractors and visitors may need to comply with COSHH if they work with hazardous substances while on site. 

Employers must ensure that they are informed of the risks and safety procedures.

What do the COSHH Symbols Mean?

COSHH symbols are essential for understanding the hazards associated with various substances. 

Each symbol indicates a specific type of risk and helps in handling materials safely. 

Here’s a guide to what each COSHH symbol means:

Compressed Gas

compressed gas coshh symbol

The compressed gas symbol looks like a cylinder and indicates that the substance is stored under pressure. 

This can be dangerous if the gas is released suddenly. 

Compressed gases can cause explosions or injuries if not handled correctly. 

Safety measures include proper storage and handling procedures.

Corrosive

corrosive coshh symbol

The corrosive symbol, represented by a container pouring liquid onto a hand and a metal surface, signifies that the substance can cause severe damage to skin, eyes, or materials. 

Corrosive substances can cause burns or corrosion, so proper protective equipment and careful handling are required.

Environmentally Hazardous

environmentally hazardous coshh symbol

An environmentally hazardous symbol features a dead tree and fish. 

This indicates that the substance can cause significant harm to the environment. 

It may be toxic to aquatic life or contribute to long-term ecological damage. 

Safe disposal and spill containment are essential.

Explosive

explosive coshh symbol

The explosive symbol shows an exploding bomb and warns that the substance can explode under certain conditions. 

Explosive materials can pose a severe risk of blast and fire. 

Proper storage, handling, and safety precautions are necessary to prevent accidents.

Flammable

flammable coshh symbol

The flammable symbol, a flame, indicates that the substance can easily catch fire. 

Flammable materials pose risks of fire and explosion. 

Avoid exposure to sources of ignition and store them away from heat sources.

Health Hazard

health hazard coshh symbol

The health hazard symbol features a human silhouette with a star. 

It denotes substances that may cause serious health effects such as cancer, respiratory issues, or reproductive harm. 

Using personal protective equipment and proper handling procedures is crucial.

Irritant

irritant coshh symbol

The irritant symbol, showing an exclamation mark, represents substances that can cause irritation to skin, eyes, or respiratory tract. 

While not as severe as corrosive substances, irritants can cause discomfort and long-term health effects if not handled properly.

Oxidiser

oxidiser coshh symbol

An oxidiser symbol looks like a flame over a circle and indicates that the substance can cause or enhance a fire. 

Oxidisers can make other materials burn more intensely. 

Store them carefully and away from flammable substances.

Toxic

toxic coshh symbol

The toxic symbol, with a skull and crossbones, signifies that the substance can cause severe health effects or death if ingested, inhaled, or absorbed. 

Extreme caution is needed when handling toxic substances, including using appropriate protective gear and ensuring proper storage.

What are COSHH Employer Responsibilities?

coshh employer responsibilities

Under COSHH regulations, employers have several key responsibilities to ensure the safety and health of their employees when dealing with hazardous substances:

Risk Assessment

Employers must conduct thorough risk assessments to identify hazardous substances and evaluate the risks they pose. 

This includes assessing how substances are used, handled, and stored, and determining the potential impact on employees’ health.

Control Measures

Based on the risk assessment, employers must implement control measures to minimise exposure. 

This can include engineering controls like ventilation systems, administrative controls such as safe working procedures, and personal protective equipment (PPE) like gloves and masks.

Training and Information

Employers are required to provide training for employees on how to handle hazardous substances safely. 

This includes understanding COSHH symbols, following safety procedures, and using PPE correctly. 

Employers must also ensure that employees have access to Safety Data Sheets (SDS) for all hazardous substances used.

Health Surveillance

Employers must monitor employees’ health if they are exposed to hazardous substances. 

This may involve regular health checks to detect any adverse effects early and take corrective actions.

Record Keeping

Employers must keep records of risk assessments, safety procedures, and any incidents involving hazardous substances. 

These records help ensure compliance and provide documentation for regulatory purposes.

What are COSHH Employee Responsibilities?

coshh employee responsibilities

Under COSHH regulations, employees also have important responsibilities to ensure their own safety and the safety of others when working with hazardous substances. 

These responsibilities include:

Following Procedures

Employees must adhere to all safety procedures and instructions provided by their employer. 

This includes using hazardous substances according to the guidelines and following established protocols for handling and storage.

Using Personal Protective Equipment (PPE)

Employees are required to wear and use PPE as specified by their employer. 

This includes items like gloves, masks, and goggles designed to protect against exposure to hazardous substances.

Reporting Hazards and Incidents

Employees must report any unsafe conditions, spills, or incidents involving hazardous substances to their employer immediately. 

Prompt reporting helps to address and mitigate potential risks and prevents accidents.

Attending Training

Employees should attend all training sessions provided by their employer. 

This training covers safe handling practices, understanding COSHH symbols, and emergency procedures related to hazardous substances.

Using Equipment Properly

Employees must use all equipment and tools as instructed and ensure they are in good working condition. 

Proper use of equipment helps to prevent accidents and reduce exposure to hazards.

Conclusion

You should now have more of an understanding of exactly what is COSHH.

COSHH is essential for protecting workers from health risks related to hazardous substances. 

By understanding COSHH regulations, symbols, and responsibilities, employers and employees can work together to create a safer workplace. 

Proper risk assessment, control measures, and training are key to managing hazardous substances effectively.

Australian Seasonal Bushfire Outlook Spring 2024

AFAC has released the Seasonal Bushfire Outlook for Spring 2024.  

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

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

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

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

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

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

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

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

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

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

NFPA and Mike Holt Enterprises Collaborate to Publish 2026 NEC Changes Book

The National Fire Protection Association® (NFPA®) and Mike Holt Enterprises announced their collaboration in publishing a book that explains the key changes in the next edition of NFPA 70®, National Electrical Code® (NEC®). The book, titled Changes to the National Electrical Code®, 2026 edition, is the latest project following their collaboration on the publication of the 2023 NEC changes book. This new book will feature full color illustrations and photos, insightful commentary, technical clarifications, and a general review of the code. Electrical professionals, including electricians, electrical contractors, engineers, and inspectors, will find it a valuable resource for understanding the NEC.

“This book will absolutely be the best resource for understanding the changes in the revised 2026 edition of the NEC. It’s the only NEC changes book officially recognized by NFPA,” said Jim Pauley, NFPA president and CEO. “We are excited to partner with Mike Holt Enterprises once again to advance NFPA’s safety mission and bring this information to professionals responsible for understanding and applying NEC requirements.”

The NEC is the most widely used code in the United States and is used extensively across the globe to safeguard people and property from electrical hazards. To incorporate the latest technologies, research, and learnings, the NEC is updated every three years.

“The NEC remains the essential resource for everyone who works in the electrical industry,” said Mike Holt, president of Mike Holt Enterprises. “We are thrilled to be partnering once again with NFPA to meet today’s electrical safety challenges and to help electrical professionals understand the changes in the 2026 edition. It is an honor to develop products based on the NEC that help individuals understand and apply the code easily to their work. The new edition will include hundreds of detailed graphics and photos, and in-depth analysis on the changes.”

Holt has devoted his career to studying and understanding the National Electrical Code and has published his Illustrated Guide to Changes to the NEC for over 40 years.

The Changes to the National Electrical Code®, 2026 edition book will be available in Fall 2025 through NFPA and Mike Holt Enterprises. The 2023 edition, Changes to the National Electrical Code®, is currently available to purchase on the NFPA website and Mike Holt Enterprises website.

About the National Fire Protection Association® (NFPA®)  

Founded in 1896, NFPA® is a global, self-funded, nonprofit organization devoted to eliminating death, injury, property and economic loss due to fire, electrical and related hazards. The association delivers information and knowledge through more than 300 consensus codes and standards, research, training, education, outreach and advocacy; and by partnering with others who share an interest in furthering the NFPA mission. For more information, visit www.nfpa.org. All NFPA codes and standards can be viewed online for free at www.nfpa.org/freeaccess.  

Mike Holt Enterprises has been serving the electrical industry for over 50 years, creating and publishing books, videos, online training, and curriculum support for electrical trainers, students, organizations, and electrical professionals. Mike Holt is an author, businessman, educator, speaker, publisher, and National Electrical Code® expert. He has written hundreds of electrical training books and articles, founded three successful businesses, and has taught thousands of electrical code seminars across the US and internationally.

Fire Service Cultural Competency Certificate Program – Washington, D.C.

We are excited to invite you to the Fire Service Cultural Competency Certificate Program in Washington, D.C., presented by FSPA and the DC Fire & EMS Department. This UNIQUE and immersive program offers 7 Continuing Education (CE) credits, making it an invaluable opportunity for psychologists and masters-level mental health clinicians to gain unique insights into the world of firefighting and emergency medical services. The program will take place in conjunction with FSPA’s 7th Annual Conference, but attendance at the conference is not required for enrolment in this comprehensive training.

The program will take place in conjunction with FSPA’s 7th Annual Conference on October 3&4, but attendance at the conference is not required for enrolment in this comprehensive training.

Program Schedule:

Day 1: Fire Operations 101
• Date: October 2nd
• Location: DC Fire & EMS Training Facility
• Time: 0800-1600 hrs. EDT
Participants will experience realistic firefighting scenarios, including live fire, search and rescue, aerial ladder operations, and medical emergencies such as overdose response.

Day 2: Understanding Fire Service Culture
• Date: October 5th
• Location: DC Fire & EMS Training Facility
• Time: 0800-1600 hrs. EDT
This classroom session will provide a deeper understanding of the unique cultural aspects of the fire service, including performance standards, trauma exposure, and psychological demands.

Participants will also have the opportunity to complete 40 hours of ride-alongs with DC Fire & EMS and receive additional consultation hours to ensure proficiency in fire service psychology.

FSPA’s Cultural Competency Training is unique from other programs because participants will also have the opportunity to complete 40 hours of ride-alongs with fire departments near their practice and receive additional consultation hours to ensure proper support and proficiency as they learn to work with firefighters.  

Space is limited! Click Here to sign up today and secure your spot. For any questions or special accommodation requests, please contact us at info@firepsychology.org.  

We look forward to seeing you in D.C.!

Best regards, Kristen Wheldon Founder, Fire Service Psychology Association

Survitec Suitxchange removes compliance burdens and reduces port delays

Global Survival Technology solutions provider Survitec has introduced a new rental and exchange service to ensure ship operators always have fully serviced and certified immersion suits onboard.

SuitXChange offers two immersion suits from its world-leading brands, Hansen Protection and Crewsaver. It is a fast exchange service designed to remove the administrative, financial, and operational challenges ship managers face awaiting the return of serviced suits during scheduled port visits.

The development, which provides a more timely and sustainable solution for immersion suit servicing, follows the success of Survitec’s RaftXChange service. When Survitec introduced the world’s first global Liferaft exchange programme in 2008, the industry quickly saw the benefits of quick port turnaround, controlled compliance, and lower capital costs.

Metkel Yohannes, Survitec’s Director of Service and Rental Solutions, said: “By opting for a rental and exchange agreement, no capital investment is required. The prices are fixed, meaning our customers will never be hit with unforeseen costs, allowing them to plan and budget more accurately”.

Under Survitec’s new SuitXChange programme, immersion suits due for certification can be replaced with newly serviced, fully certified suits of the same type, which are ready for exchange as soon as the vessel enters port, supporting customer calls for shorter port stays. The logistics required to service suits are reduced, so less transportation is needed, resulting in a more environmentally sustainable operation. The service facilitates overall cost reduction and better management through fixed annual charges. At the same time, Survitec’s team of highly skilled technicians ensure immersion suits are always compliant with the regulations.

Survitec implemented an eight-month SuitXChange pilot programme to gain insight from its customers. The research helped the company tailor the service to ship managers’ requirements before launching to the market.

“Ship managers often tell us they struggle to get their suits serviced in time, having to rent or buy additional suits to prevent port delays. And then had to pay for those suits being serviced to be shipped to their next location for pickup. With SuitXChange, ship managers no longer need to worry about ensuring they have compliant suits and in-date certificates. We take care of it all”, said Survitec’s Product Category Manager, Alex Scollins.

Ship managers who have already signed a Survitec rental agreement say SuitXChange negates any immersion suit capital expenditure and can reduce the time their vessel spends in port. SuitXChange also eliminates the administrative burden of due-date management, tracking, managing, and ensuring that all associated tasks are completed. Under the agreement, Survitec will fulfil all related tasks.

Since different immersion suits have different service intervals, Survitec offers its Crewsaver Endurance immersion suit for a six-year rental period, with exchanges taking place every three years.

The enhanced SuitXChange+ program offers the premium Hansen Protection SeaEco+ immersion suit, certified for use without a lifejacket.

Both offer fully tested, certified, and SOLAS-compliant immersion suits for a fixed annual rental fee. It is a mandatory requirement under SOLAS regulation III/32 (as amended by resolution MSC.152(78) that all persons on board merchant ships have an immersion suit regularly serviced and certified to prolong the in-water life of each crew member following ship abandonment ship.

“We offer a straightforward administration approach with a key account manager backed up by an experienced global customer service team. We facilitate all the preparation and logistics of the immersion suit exchange, delivering peace of mind.

“We have the largest, most comprehensive service network worldwide, so we can guarantee that immersion suits are replaced with newly serviced, fully certified suits of the same type at all the major maritime hubs,” said Yohannes.

nfpa-logo

Free webinar from the Fire Protection Research Foundation

The NFPA are inviting teams to participate in the next upcoming Fire Protection Research Foundation webinar, from their 2024 annual webinar series:

Scheduled for September 12th, 10 am – 11:30 am US Eastern Time on the topic of “Environmental Impact of Lithium-Ion Battery Incidents Compared to Other Types of Fires”.

The registration link to share with international interested parties is: https://nfpa-org.zoom.us/webinar/register/6217248721378/WN_rkpEqsMnQUSPhl6weH-q1A#/registration

Registrations are free and required to attend the live webinar.

New White Paper from Survitec urges reform of Methanol Fire Safety Guidelines

Global Survival Technology solutions provider Survitec has welcomed new guidance from classification society DNV on the fire safety arrangements for methanol-fuelled vessels but advises that more work is required before ships running on methanol can be completely fire-safe.

Findings from a Survitec study carried out earlier this year and published in the White Paper ‘Do we need new fire safety standards for methanol?’, distributed to industry for the first time at the SMM trade fair in Hamburg, Germany, confirmed existing fire-fighting methods are insufficient for methanol.

“Current water mist-based Local Application Firefighting (LAFF) arrangements, for example, had no effect on a methanol fire even after five minutes of continuous operation,” said Michał Sadzyński, Product Manager, Water Mist Systems, Survitec.”

The safety study conducted by Survitec found two factors were key to putting out a methanol engine room fire: the volume of water released under pressure and the discharge pattern of the water. This required adjustments to the water pump supply and the water mist nozzle’s spacing and placement height to achieve the right coverage to completely extinguish the fire.

“While the LAFF system is a localised first-response system that focuses on the most likely source of a fire, generally the engine, a gas-based Total Flooding solution – CO2 or Survitec 1230 Clean Agent – will also be required to cover the entirety of the machinery space,” said Sadzyński.

The firefighting foam typically used to extinguish bilge hydrocarbon fires was also found to be inadequate, even alcohol-resistant foams using conventional nozzles and water:foam ratios, leading Survitec to develop new nozzles and attachments.

These nozzle adaptors aspirate the foam, allowing it to expand within the space and to extinguish methanol, diesel, heptane and lubrication oil fires. Trials of the new nozzle also confirmed that fluorine-free alcohol-resistant foam was just as effective with the new adaptor for methanol fires as standard AFFF alcohol-resistant foams.

Maciej Nieścioruk, Product Manager, Foam and Clean Agent Systems, Survitec, said: “DNV-RU-SHIP Pt.6 provides additional guidance on the Total Flooding, Bilge Foam and Local Fire Fighting requirements for engines running on methanol. This helps clarify international guidelines under IMO’s MSC.1/Circ.1621, which many ship operators have found confusing. However, we still believe more needs to be done.”

A particular issue of concern is that international guidelines do not provide clear test protocols for alcohol-based fires. These are required, says Survitec, because the firefighting systems, foams and nozzle configurations used for hydrocarbon fires are ineffective in extinguishing alcohol-based fuel fires. As a result, system arrangements must be adapted to work for methanol fire, with system performance then tested and verified in the lab.

“Local Application Firefighting systems are not covered at all in the IMO rules, and there is no mention of any fire safety adjustments being required for the safe use of methanol (CH3OH) as a marine fuel, although some classification societies like DNV, are starting to specify additional requirements,” Nieścioruk said.

“In practice, this means that firefighting measures for methanol will largely be based on those that exist for hydrocarbon fuels, which we now know will not put out a methanol fire,” he said.

The tests carried out at the RISE Fire Research Laboratory, Trondheim, Norway, one of the world’s largest research organisations on fire, showed that for Category A Machinery Spaces, three separate systems are required to protect the ship and crew from methanol-fuelled engine fires.

The Survitec fire safety team has since been working to raise awareness of the key challenges surrounding methanol fire safety and share their findings from the safety study. They are already discussing with other class societies and shipyards how to develop comprehensive requirements covering all vessel types.

“We encourage all stakeholders to come together to address methanol’s unique fire risks and create clear standards, new testing protocols and updated safety rules for methanol to ensure we keep our vessels – and most importantly – our crews, safe”, says Sadzyński.

The Survitec White Paper ‘Do we need new fire safety standards for methanol?’ can be downloaded here Do we need new safety standards for methanol? | Survitec (survitecgroup.com)

About Survitec

Survitec is a global Survival Technology leader to the maritime, defence & government, aerospace and energy sectors. Survitec has over 3,000 employees worldwide, covering 11 manufacturing facilities and over 400 service centres. They operate in over 2,000 ports, spanning 96 countries. Survitec are the world’s largest manufacturer and supplier of liferaft, Marine Evacuation Systems (MES) and offshore rental PPE. They are a leading supplier of fire solutions to the maritime industry and hold a market leading position for Pilot Flight Equipment in the aerospace & defence market. The Survitec team live by their purpose “We Exist to Protect Lives”. Throughout its 168-year history, Survitec has remained at the forefront of innovation, design and application engineering and is the trusted name when it comes to critical safety and survival solutions. www.survitecgroup.com

London fires prompt WMC’s call for enhanced building safety with fire survival cables

Wrexham Mineral Cables (WMC), a leading UK cable manufacturer, is calling for better building safety standards through the use of fire survival cables before more lives are put at risk.

WMC’s call to action comes after the recent fire in a residential tower block in Dagenham, east London, which required the evacuation of 80 people. The incident occurred just weeks after a blaze at the historic Somerset House, home to priceless artworks.

WMC says these high-profile fire events underscore the urgent need for building designers and specifiers to identify and install appropriate cables that can survive – not just resist – real-life fire scenarios.

Currently, specifiers are presented with a choice between polymeric cables and mineral insulated copper clad (MICC) cables. Due to the existing testing regime, both cable types are classed as fire-resistant, creating a misleading impression of equivalence. However, MICC cables have consistently demonstrated superior performance and proven to perform to higher safety standards in ‘real fire’ scenarios.

In 2023, WMC published a white paper outlining how cables – often an overlooked component of a building’s system –directly impact building safety. The paper advocates for the introduction of a higher classification of fire survival cable, which can continue to power critical circuits in the event of a fire.

Colin Hughes, Group Manager at WMC, commented: “Last year, the UK Government introduced stricter building regulations in England as part of new secondary legislation to implement the Building Safety Act. Sadly, recent events in London remind us that buildings of all types remain at a high risk of fire, and we must take every measure to ensure their safety.

“Fire survival cables are a vital component of building safety, yet they often remain an unrecognised hazard. Due to the lack of understanding about the important role they play in keeping buildings safe, all too often inferior cables are frequently installed, which may prove inadequate in the event of a fire. This uncertainty can only be addressed when all fire-resistant cables, regardless of size or construction, are subjected to true fire scenario tests. “At WMC, we are committed to educating the market about the advantages of specifying MICC fire survival cables.”