UK firefighters continue Venezuela earthquake response mission

Venezuela earthquake response continues as UK International Search and Rescue teams work alongside international partners

UK firefighters are continuing life-saving search and rescue operations as part of the Venezuela earthquake response, where specialist teams are supporting international efforts following last week’s devastating earthquake.

The 68-strong UK International Search and Rescue (UK ISAR) team is now two days into its deployment in the Caraballeda coastal region, around 15km north of Caracas. Working alongside local and international partners, the team is carrying out systematic searches of collapsed structures using specialist equipment and trained search dogs in difficult and hazardous conditions.

The deployment includes firefighters and specialist personnel from 14 UK fire and rescue services, supported by six search dogs, medics, a structural engineer and a veterinary surgeon.

Images released show UK ISAR personnel searching collapsed buildings, coordinating with local emergency responders and deploying canine teams as rescue efforts continue.

National Fire Chiefs Council Chair Phil Garrigan said: “Our thoughts remain with everyone affected by these devastating earthquakes and the families still waiting for news of their loved ones.

“Since arriving in Venezuela the UK ISAR team has been working round the clock in incredibly challenging conditions, working side by side with local and international colleagues as part of a coordinated global response. Their dedication and professionalism is a source of great pride for the UK’s fire and rescue services.

“The commitment of our firefighters and specialists to do everything they can to help brings hope at a time of immense difficulty.”

The UK ISAR team deployed through the Foreign, Commonwealth & Development Office remains self-sufficient and is expected to support operations for up to 10 days.

The earthquakes, which struck on 24 June, have killed at least 1,450 people, with tens of thousands still reported missing.

How fireground lighting solutions are supporting safer fire and rescue operations

Ahead of INTERSCHUTZ 2026, Streamlight® introduces new fireground lighting solutions and safety-rated products designed to improve visibility, coordination and operational safety across modern fire and rescue environments

Across fire and rescue operations, effective lighting supports visibility, safety and control in some of the most demanding working environments. It is a critical part of operational safety, situational awareness and effective decision-making.

From hazardous atmospheres and smoke-filled interiors to large incident scenes, responders require lighting tools that are matched to the task, the risk and the environment.

Streamlight® will be showcasing its latest fire industry product launches and wider professional lighting offerings at INTERSCHUTZ 2026, taking place from 1 to 6 June 2026 in Hannover, Germany.

Visitors will be able to see the Streamlight® products on Stand H37, Hall 27, including a broad selection of safety-rated and general fireground lighting solutions.

New fireground lighting solutions from Streamlight®

Streamlight® recently expanded its professional fire and emergency response offerings with two new products announced at FDIC International. The Portable Scene Light III and LiteBox® 1Million® add further capability to the company’s portfolio, supporting both wide-area scene illumination and long-range search applications.

The Portable Scene Light III builds on the capabilities of the Portable Scene Light and Portable Scene Light II, which came before it. It is a rugged, waterproof, high-lumen portable lighting solution designed for demanding emergency scenes, job sites and first responder applications.

Featuring twelve powerful LEDs with wide-pattern reflectors, it delivers a uniform beam for maximum coverage, helping crews illuminate large working areas quickly and effectively.

With three adjustable brightness levels, the Portable Scene Light III can be adapted to suit the operational requirements. On High, it delivers 10,000 lumens, 121,000 candela and a 696 metre beam distance, with a run time of two hours.

Medium provides 5,000 lumens, 61,100 candela and a 494 metre beam distance, running for four hours, while Low offers 2,500 lumens, 38,000 candela and a 390 metre beam distance, with an eight hour run time.

Designed for flexibility in the field, the Portable Scene Light III supports multiple power options, including a swappable Streamlight® SL-P6™ Lithium-Ion battery pack, dedicated charger, AC power supply or DC power source. Its light head offers 360° rotation and 180° pivoting, giving crews a full range of motion to direct illumination exactly where it is needed.

The included wireless remote controls all functions from up to 75 feet away and can be paired with multiple lights for simultaneous use. The modular design allows the light head to be used with or without the heavy-duty tripod, supporting both elevated scene lighting and more flexible close-range deployment.

With rugged construction, IPX7 waterproof rating with the battery installed, reversible spiked tripod feet and an integrated carry handle, the Portable Scene Light III is built for all-weather use across demanding emergency environments.

For long-range search and scene lighting, the LiteBox® 1Million® provides a powerful new option within the Streamlight® line-up. It is a rugged, heavy-duty, rechargeable and fully portable high-intensity search light/scene light engineered for demanding professional use.

Delivering 1.25 million candlepower, it emits a focused beam capable of illuminating objects up to 1.39 miles away, while also providing peripheral light for broader visibility.

The LiteBox® 1Million® offers High and Low modes. On High, it delivers 3,300 lumens, 1,250,000 candela and a 2,236 metre beam distance, with a run time of 4.5 hours. On Low, it provides 525 lumens, 200,000 candela and an 894 metre beam distance, with a run time of 22.5 hours.

Its articulating light head pivots 135° and rotates 270°, allowing users to position the beam for long[1]range identification, scanning and scene support.

For fire and rescue teams, the LiteBox® 1Million® is particularly valuable in outdoor searches, perimeter assessment, waterway operations, large incident grounds and other situations where long-distance visibility is essential.

Its rechargeable lithium-ion power system, integrated battery status indicator, heavy-duty shoulder strap and IPX4 water-resistant design make it a practical tool for demanding professional use.

Together, these products are impressive new additions to an already strong selection of fire lighting solutions offered by Streamlight®.

Why safety-rated fireground lighting matters

Alongside these new additions, Streamlight® offers a comprehensive selection of fire lighting tools designed for hazardous environments. In areas where flammable gases, vapours or dust may be present, safety-rated lighting is essential. Streamlight® ATEX and HAZ-LO® products are designed for defined hazardous location use, helping fire and rescue professionals select equipment suited to the risks they face.

For turnout gear and right-angle lighting, the Survivor® X ATEX and Survivor® Pivot ATEX are core firefighter lights designed to clip directly to gear, providing hands[1]free illumination in smoke-filled or confined environments.

The Survivor® X ATEX is Zone 0 and Zone 20 rated, while the Survivor® Pivot ATEX provides a versatile right-angle light with a pivoting head, allowing users to direct light where needed during operations. Both are available as Alkaline or Rechargeable systems.

For hazardous location scene lighting and lantern use, the Vulcan® 180 HAZ-LO® ATEX and Vulcan® LED ATEX provide portable, rechargeable lighting options. The Vulcan® 180 HAZ-LO® ATEX features an articulating head that allows the beam to be aimed where required, while the flat base allows the light to stand on its own for scene lighting.

The Vulcan® LED ATEX offers a lightweight lantern option with a tight beam suited to firefighting applications.

Compact handheld and inspection lighting also plays an important role in hazardous environments. The Dualie® 3AA ATEX provides both forward-facing and downward-facing beams, with Spot, Flood, and Spot and Flood modes for inspection and area lighting.

The 2AA ProPolymer® HAZ-LO® ATEX flashlight adds a lightweight, waterproof, intrinsically safe option for inspections, equipment checks and general navigation in hazardous locations.

For hands-free use, the Enduro® Pro HAZ-LO® ATEX headlamp supports firefighters during technical work, rescue operations and equipment handling. With spot/flood combo, spot and flood modes, it allows users to maintain visibility while keeping both hands free.

Fireground lighting tools for search, rescue and incident response

Not every fireground task takes place in a hazardous atmosphere, and Streamlight® also offers a broad selection of non-safety rated lighting tools for general firefighting, rescue and outdoor operations.

The Portable Scene Light and Portable Scene Light II, predecessors to the new Portable Scene Light III, support rapid deployment at incident scenes, helping crews illuminate wide working areas, staging zones, road traffic collisions and outdoor operations. Portable scene lighting is essential for reducing trip hazards, improving coordination and establishing safe work areas during extended incidents.

For long-range search and assessment, the Waypoint® 400 offers powerful directional lighting. Its portability and long run time make it well suited to searching, scanning and identifying hazards at distance, particularly during night operations or low-light outdoor incidents.

Helmet-mounted and hands-free lighting also remains important during close-range tasks. The Vantage® provides compact, helmet-mounted illumination for firefighting and  industrial use, delivering a focused beam designed to cut through smoke and haze while supporting visibility and awareness in demanding, low-light environments.

Together, these products demonstrate how fireground lighting is not about relying on one device, but about building a layered

approach. Scene lights provide wide-area visibility, lanterns and right-angle lights support movement and task work, headlamps and helmet lights keep hands free, and handheld spotlights provide reach for search and assessment.

Visit Streamlight® at INTERSCHUTZ 2026

INTERSCHUTZ will provide an opportunity for professionals to see the latest technologies, equipment and solutions shaping the future of emergency response.

Streamlight® will be exhibiting at Stand H37, Hall 27, where visitors will be able to explore the company’s latest product launches, including the Portable Scene Light III and LiteBox® 1Million®, alongside its wider fire lighting offering. The stand will provide visitors the opportunity to see how Streamlight® products support real-world fire and rescue operations. Visitors can also expect added activity on the stand, including a social media competition to win a Streamlight® product. For fire and rescue professionals attending, the show provides the ideal opportunity to meet the team, see the latest products and explore lighting solutions designed for the demands of modern emergency

Survitec receives DNV qualification for Seahaven evacuation system

Survitec Seahaven gains DNV statement

Survitec has received a formal Technology Qualification Statement from DNV for Seahaven, its Advanced Evacuation System, covering a configuration designed to evacuate up to 1,060 passengers.

Survitec announced that the Seahaven configuration uses two self-propelled inflatable survival craft and four vertical escape helical slides to enable embarkation from the vessel.

DNV carried out the Technology Qualification process in line with DNV Recommended Practice DNV RP A203.

The assessment confirmed that Seahaven had been qualified to operate within defined limits and perform reliably under emergency conditions.

Jonny Whiteside, Chief Operating Officer at Survitec, said: “This Technology Qualification from DNV marks a significant milestone, demonstrating the system’s proven reliability through rigorous testing and independent evaluation.

“It reinforces an already well-established foundation of validation, complementing assessments conducted by Lloyd’s Register, RINA, and Bureau Veritas, and positioning Seahaven as a smarter and safer evacuation solution.”

Whiteside added: “We are advancing strategic discussions with leading operators to install Seahaven across cruise fleets, reflecting strong market interest and a shared commitment to elevating safety standards at sea.”

DNV sets out the technical assessment

DNV said the Technology Qualification work forms a basis for the Alternative Design and Arrangement (AD&A) process for application in passenger vessels.

Dr. Daniel Povel, Senior Principal Specialist Passenger Ship Safety and Risk Assessment at DNV Maritime Advisory stated: “We are pleased to support Survitec in advancing this innovative technology towards application in passenger vessels.

“Through DNV’s Technology Qualification process, the Seahaven system has been independently assessed against defined performance requirements and acceptance criteria.

“The work undertaken in the TQ forms a valuable basis for the Alternative Design and Arrangement (AD&A) process.”

DNV reviewed a technical test and verification programme covering full-scale deployment trials and slide integrity evaluations.

The programme also covered embarkation simulations at maximum capacity, propulsion performance assessments and manoeuvrability trials under representative operating conditions.

The assessment examined structural endurance, redundancy of critical components and resilience under load to confirm sailing-away functionality after evacuation.

DNV also reviewed repeated deployment testing to assess on-demand operational reliability, with the source material stating that existing SOLAS and LSA frameworks do not contain prescriptive reliability requirements for alternative systems of this type.

Survitec said Seahaven is designed as a direct alternative to conventional lifeboats, using propelled inflatable survival units and combining functions usually associated with lifeboats and Marine Evacuation Systems.

With the Technology Qualification completed, the company said it is positioned to move into the AD&A process for newbuild and retrofit passenger vessels.

UL Research Institutes updates search and rescue training course

FRSI training course adds new tactical lessons

UL Research Institutes and its Fire Safety Research Institute (FSRI) have announced a new version of the free online training course Search and Rescue Tactics in Single-Family Single-Story Residential Structures on the Fire Safety Academy.

The updated training course reflects findings from full-scale burn experiments and adds three tactical considerations to the original Search & Rescue course.

One lesson covers simultaneous exterior and interior suppression operations when crews arrive to a fully developed fire with extension to the exterior and sufficient resources are available.

A second lesson covers local ventilation in compartments remote from the fire area, including pre suppression isolation of the compartment before ventilation.

A third lesson covers hydraulic ventilation immediately after suppression to increase the rate at which combustion gases exhaust from the structure.

New materials for officers and instructors

FSRI said the updated course also includes ready-to-use materials for training officers and instructors.

These include five scenario based drill sheets designed to reinforce decision making and coordination across search scenarios and victim removal.

The updated materials also include time-to-task sheets to track how long crews take to complete actions such as forcing entry, a single-room search and drag-and-carry.

Discussion guides have also been added to support post-drill or informal conversation intended to reinforce learning and improve retention.

Meghan Maloney, manager of education and training for the Fire Safety Research Institute, said: “The re-launch of this course builds on years of research and ongoing collaboration with the fire service to meet their training needs.

“On the fireground, every decision and every minute matters, and our free training helps firefighters at all levels be better prepared to make smarter, safer decisions that influence occupant survivability and firefighter safety.”

The course states that firefighters who complete it will learn how isolation and ventilation affect occupant survivability and firefighter safety, how the timing of suppression actions affects search and rescue operations, and how removal tactics and timing may influence survivability.

The Fire Safety Academy also provides free self-paced training on topics including fire dynamics, firefighting tactics, firefighter health, lithium-ion batteries and WUI fires.

The updated course adds new lessons and training materials to the existing search and rescue programme.

LearnPro wins London Fire Brigade contract for risk information platform

LearnPro selected for OneRisk platform

London Fire Brigade (LFB) has selected Prevent + Protect from LearnPro Group, working with Softcat, for its OneRisk project to modernise and integrate building-related fire risk information.

LearnPro announced that the platform was chosen through LFB’s competitive OneRisk procurement process after a tender for a commercial off the shelf platform to replace multiple legacy systems.

LFB identified Prevent + Protect as its preferred system for prevention, protection, operational risk and hydrant management.

The project is intended to consolidate risk information systems and bring risk data into a single cloud hosted platform.

According to LearnPro, the system is designed to remove data silos, improve mobile capability and give teams across departments access to shared risk information.

What the platform will replace

The source material states that LFB sought a sector-ready platform to replace multiple legacy systems and support work across Prevention, Protection and Hydrant Management teams.

Prevent + Protect is described as a mobile-first system with specialist CRM functionality that keeps touchpoint and job history records where individuals move location or are linked to more than one premises or business.

It also supports the management of parent and child premises structures.

LearnPro said the platform includes workflow automation and Microsoft integration, including support for artificial intelligence capabilities.

Comments on the contract award

Pamela Oparaocha, London Fire Brigade Assistant Commissioner for Prevention and Protection, said: “We are committed to strengthening how we manage, share and use risk information across our organisation.

“We have a unified and accurate picture of risk is essential for the way we plan our work, engage with communities and support our firefighters on the ground.

“This new platform will replace several legacy systems and give our teams a more consistent and accessible view of the information they need.

“This is a long term investment in innovation, digital capability and improved service delivery for London, and an important part of our ambition to build a more modern, data enabled fire and rescue service.”

Costi Karayannis, Chief Executive Officer of LearnPro Group, said: “We are incredibly proud that Prevent + Protect has been selected by London Fire Brigade to deliver its OneRisk vision.

“We look forward to partnering closely with LFB as part of their continuous effort to reduce risk and optimise the critical services they provide to the public across our capital city.”

Russell Wood, UK Market Lead at LearnPro Group, added: “This award reaffirms Prevent + Protect as the leading modern Prevention and Protection platform for Fire and Rescue Services and follows several additional new FRS contracts secured in recent months.

“We are excited to support London Fire Brigade on its transformative OneRisk journey.”

UAE rescue facility to deliver helicopter emergency simulation training

Rescue training centre planned for UAE operations

A new Security and Rescue Training Center (SRTC) is set to be built in the United Arab Emirates, with completion scheduled for the first half of 2028.

Sahra Group announced the project, which will be developed in partnership with AMST Group to deliver mission-based training for Helicopter Emergency Medical Services, law enforcement and commercial operators.

The facility is intended to operate as a regional training hub, supporting helicopter emergency response, water rescue and disaster response scenarios using simulated environments.

It will combine helicopter hoist systems, rappelling towers, Helicopter Underwater Egress Trainers (HUET) and maritime vessel simulators within a single commercial training site.

The centre will also include helicopter simulators mounted on cranes, alongside water pools and vessel simulators designed to replicate real-world operational conditions.

Training environments will incorporate darkness, rotor downwash and high noise levels to reflect operational pressures faced during emergency response.

Simulation systems designed to replicate high risk rescue scenarios

Sahra Group stated that the facility will support 24 hour training across multiple disciplines, with capacity for up to 4,500 personnel annually from sectors including civil defence, fire services and military operations.

The project represents an investment of AED 180 million (USD 50 million) and is designed to reduce reliance on live helicopter training, which can cost up to USD 10,000 per hour.

Synthetic training is expected to allow trainees to gain up to ten times more experience compared to live helicopter operations under controlled conditions.

The simulation systems are also expected to reduce CO₂ emissions per hour by over 99% compared to real helicopter use.

Jamal Alkaf, CEO at Sahra Group, said: “This facility represents a significant investment in the future of mission-critical training and positions the UAE at the forefront of global capability development.

“As the first facility of its kind, it brings together advanced simulation, integrated environments, and full-spectrum training in a way that simply does not exist today.

“Beyond its immediate impact, the SRTC is designed as a scalable platform for growth – capable of expanding its training offerings, technologies, and international partnerships over time.

“Our vision is not only to set a new benchmark for operational readiness, but to establish a global center of excellence that will attract organizations from across the region and around the world seeking the highest standards in safety, sustainability, performance, and efficiency.”

Wolfgang Lindlbauer, Senior Business Development Manager at AMST Group, added: “In every rescue, operation or critical response, the margin for error is measured in seconds – and in lives.

“This new facility will eliminate uncertainty by recreating the most demanding real-world conditions in a controlled, repeatable environment.

“Here, teams will master intense and hazardous scenarios, from complex helicopter hoist operations to high-risk water rescues and rapid deployment techniques.

“It will enable key personnel to build instinct, precision, and confidence to take forward into the field.

“The training starts with the basics and ends with the trainee completing mission simulation, very similar to reality.

“By combining advanced simulation with mission-based training, we are making world-class preparation safer, more accessible, and more cost-effective, ensuring that every crew member, responder, and operator is equipped to perform when it matters most.”

The centre is also expected to support helicopter-assisted industrial operations, including maintenance work on infrastructure such as power lines, wind turbines and offshore installations.

PPE under pressure: Semmco LPS shows how placement determines EEBD effectiveness

In hazardous atmospheres, escape is shaped by route design and movement, with Semmco LPS EEBDs supporting withdrawal under pressure

Emergency Escape Breathing Devices (EEBDs) sit in a narrow part of life safety.

They come into use at the point air becomes unsafe.

They give a wearer enough breathing time to leave a space after smoke has spread or oxygen levels have fallen, which places them between PPE and escape planning, where route length and delay shape the outcome.

In practice, that moment rarely arrives in ideal conditions.

Alarm signals, reduced visibility and uncertainty around the route all affect how quickly a person can act.

Semmco LPS designs short-duration oxygen breathing apparatus for escape and working rescue across marine and industrial settings.

EEBDs sit with escape PPE

An EEBD supplies breathable oxygen for a short escape window so the wearer can keep moving through unsafe air.

In Semmco’s range, that is delivered through a closed-circuit oxygen re-breather system.

A starter supply covers the first breath as the unit leaves its case, then exhaled moisture activates the KO2 canister, which absorbs carbon dioxide and releases oxygen.

That distinction needs to stay clear in site procedures because EEBDs belong with escape PPE.

Fire attack and extended work in a hazardous atmosphere call for other breathing apparatus.

This separation affects decision-making during an incident, as a worker reaching for an EEBD is committing to withdrawal rather than intervention.

The same distinction carries through into specification.

A short-duration escape set serves a worker heading for an exit, while a working set supports a crew moving into danger for a defined task.

In Semmco’s range, both the Marine 15 and Industrial 20 are designed around withdrawal from the area, with durations set for escape rather than work inside the space.

Duration starts with route time

That distinction becomes more concrete when duration is considered in practice.

Rated duration is often the first figure people look for, but route time needs to come first.

A 15-minute unit may suit a shipboard escape route, aligning with the Marine 15 EEBD.

A 20-minute unit may suit a larger industrial site where travel distances are longer, reflected in the Industrial 20.

The difference becomes clearer when mapped against real layouts.

A worker in a lower deck machinery space, or deep within a plant room, may face direction changes and vertical movement before reaching open air.

Stress changes the picture quickly.

Breathing rate rises.

Visibility falls.

Movement slows on stairs or ladders.

Obstacles and congestion at exits can extend that time further, especially for contractors or visitors.

A usable margin comes from the longest credible route under poor conditions, with calm drills on a clear route giving a starting figure rather than the final answer.

Both versions also have a 60-minute at-rest duration, though escape planning still centres on the rated escape time, with room for delay once visibility drops.

Placement shapes use

If duration defines how long a worker has, placement defines whether they can use that time at all.

A device helps only when it can be reached without hesitation.

In machinery spaces, plant rooms and tunnels, that usually means positioning the EEBD along the natural line of travel to the exit.

On ships, it often means locations near ladder bases, with escape trunk access points needing their own coverage.

That positioning reduces the need for decision-making under pressure, where a worker follows a known route and encounters equipment where it is expected.

In Semmco’s range, the storage bracket supports that approach by keeping the unit visible and ready for quick removal.

Belt clips and waist-mounted options meet a different need by placing the device on the wearer where fixed storage would leave too much distance between the person and the set.

Storage has to follow the route out, and the viability indicator needs a clear line of sight during routine checks.

Hidden equipment adds delay, and delay cuts into breathing time.

Training needs repeated handling

Training needs more than a single demonstration.

People need repeated handling so the order of use feels familiar before an alarm sounds.

Semmco’s EEBD training set supports that approach by providing a replica unit for repeated drills, with a mouthpiece and hose that can be cleaned between sessions, allowing live sets to remain in service.

This matters on sites where a worker may have to climb a ladder or pass through a hatch while visibility drops.

It also applies in smoke-affected corridors, where the user needs to understand how the EEBD sits around the neck and how the breathing bag moves during escape.

That familiarity reduces hesitation, as even a short pause while recalling the sequence can affect available escape time.

Contractors need the same level of familiarity when work takes them into enclosed areas or temporary shutdown zones, where confidence in both the route and the device can shorten the pause between alarm and movement.

How this plays out in practice

Consider a worker in an enclosed engine room when a fire starts in an adjacent space.

Smoke begins to spread before the full extent of the incident is clear, and visibility drops as the alarm sounds.

The worker reaches the nearest EEBD positioned along the escape route, activates it and begins moving toward the exit.

The route includes a ladder and a change in direction, with a short delay where other personnel converge on the same access point.

Breathing rate rises with exertion, and movement slows as visibility reduces.

The rated duration of the unit is no longer an abstract figure, it is being used against real time lost to movement and uncertainty.

In that situation, placement and training shape the outcome as much as the specification of the device itself.

The EEBD provides the breathing window, but the plan determines whether that window is enough.

Standards and approvals still matter

Marine rules remain the clearest reference point for EEBD provision.

SOLAS and the IMO Fire Safety Systems Code set minimum expectations for carriage and use in shipboard spaces, while ISO 23269-1 defines performance requirements and keeps the escape purpose of the category in view.

Semmco’s Marine 15 EEBD sits within that framework with UKCA and CE Wheelmark approval, while the Industrial 20 holds UKCA and CE approval for land-based use.

These approvals tie the products to recognised test routes, with site selection then resting on local risk assessment, route length and expected escape conditions.

They also keep marine and industrial use clearly separated.

Shipboard environments carry defined carriage and operating duties, while industrial sites rely on local assessment, permit systems and escape planning linked to layout.

Shelf life and inspection sit in the same discussion

Storage life affects replacement planning and ongoing checks.

In Semmco’s range, storage life extends up to 15 years with regular visual inspection during that period, bringing the viability indicator and storage position into the same operational discussion.

The requirement remains simple.

The unit must stay visible and accessible, and it must stay within its service window.

Inspection routines carry more weight where equipment is distributed across large or complex sites, where missed checks can leave gaps in coverage.

A unit that passes inspection but sits out of sight still introduces delay during an evacuation.

Placement returns to the front here as well, as a unit mounted away from the natural exit route may remain compliant on paper, then lose time when it matters.

Device choice works best when the plan is site-based

EEBD selection works best when device choice follows the route out and the pace of movement during escape, with the likely air hazard shaping that choice.

In Semmco’s range, the Marine 15 and Industrial 20 reflect that approach, each built around a defined escape context.

Supporting equipment such as storage brackets and belt-mounted options earn their place when they reduce access time or support repeated practice.

Used in that way, the EEBD becomes working safety equipment with a defined role when breathable air is lost, with its value shaped by planning, placement and training as much as by the device itself.

This was originally published in the April 2026 Edition of International Fire & Safety Journal. To read your FREE copy, click here.

Wearable data for front-line response: How Lumiio helps crews identify vulnerable individuals at scene

How Lumiio’s NFC wearable devices provide first responders with a quicker route to identifying vulnerable people during public welfare incidents

A fire and rescue crew arrives to find a man sitting on a low wall beside a row of shops.

He appears calm but uncertain about where he is.

When firefighters speak with him he answers politely, though he cannot explain where he lives and the name he gives may not be correct.

A shop worker nearby says he has been walking up and down the street for some time.

The crew begins working through the usual steps.

They speak with him again, trying to confirm the name he provided and whether he remembers any landmarks nearby.

Control is asked to check the details while firefighters remain with the man and keep the conversation steady.

No one present recognises him and there is nothing to identify where he has come from.

Situations like this often hinge on one piece of information.

A confirmed name or a contact number can change the pace of the incident immediately because it connects responders with someone who knows the individual.

Without that connection the process becomes slower, relying on control room checks and local enquiries while the person waits with responders.

Lumiio, a UK company, has developed wearable safeguarding devices designed to make that first step easier.

The company produces wristbands and tags that contain near field communication technology.

When an NFC-enabled smartphone touches the device it opens a secure webpage containing personal information stored in advance.

The page can display the wearer’s name together with up to two emergency contact numbers for a relative or carer, and an ‘About Me’ section containing vital information like diagnoses or medication details.

A responder who notices the device can access that information within seconds using a standard smartphone.

When a person cannot explain who they are or where they should be, that small piece of data may help responders reach someone connected to the individual.

When identity cannot be confirmed at scene

For crews attending public welfare calls, the hardest part can be establishing the basics.

A person may appear settled enough to talk, but the information they provide can shift from one sentence to the next.

An address may sound plausible at first and then prove incorrect once checks begin.

A family name may be remembered, though the person cannot say where that relative lives or how to reach them.

Memory loss adds another layer to these encounters because it affects how information is given as well as what is remembered.

Someone may answer with confidence and still be mistaken.

Firefighters then have to judge what can be relied on while keeping the person reassured and engaged.

The work is patient and practical, and it depends on details that can be confirmed.

A device linked to stored information may help during this stage.

If a name can be matched quickly to a relative or carer, the situation develops differently.

Responders gain a direct contact who understands the person’s circumstances and can provide guidance about what should happen next.

How the device works in practice

Lumiio’s products are intended to be worn throughout the day as wristbands or tags.

The technology uses NFC, the same short-range function that allows contactless interaction on many phones.

When a smartphone is held against the device, it opens a secure page without the need for a separate application.

This detail matters because any extra step can slow use at scene.

A product that depends on special equipment is less likely to fit naturally into a live incident.

In this case the interaction is simple.

A responder notices the wearable, checks it with a phone and sees whether useful information is available.

The page can hold the wearer’s name, key personal information, and emergency contact details for the person responsible for their care.

It is not presented as a full record and it does not replace safeguarding procedures already used by emergency services.

Its purpose is narrower.

It provides a quick route to identification so responders can begin contacting the right person while giving individually tailored support.

A fit with day-to-day operational work

Fire and rescue crews encounter situations where a member of the public appears confused or unable to explain where they should be.

This may happen during a missing person search or after a passer-by raises concern about someone sitting alone in a public area.

In other cases firefighters notice a vulnerable person while responding to an unrelated incident.

The response usually begins with conversation and reassurance while control rooms check available information.

Crews remain with the individual and try to confirm details that might lead to identification.

If a wearable device provides a reliable name or a number to call, responders have a clearer starting point for resolving the situation.

Many services already work closely with vulnerable residents through prevention visits and safe and well activity.

Firefighters often become familiar with people whose needs extend beyond fire safety alone.

A wearable identification device sits naturally alongside those safeguarding efforts because it focuses on helping responders recognise who someone is and who should be contacted.

Existing use through public schemes

Lumiio’s products have already been used by public bodies and support organisations in the UK.

Devon and Cornwall Police have deployed the devices within local programmes focused on vulnerable residents.

Recently, Lumiio has gone live with South Yorkshire Police on an initiative using the devices to support people living with dementia.

Sefton Council has distributed the wristbands as part of community safety initiatives aimed at residents who may become lost.

Charities involved in dementia support have also taken part in awareness programmes connected to the technology.

These initiatives place emphasis on recognition.

A device that contains useful information must still be noticed by responders before it can assist.

Awareness among front-line personnel therefore plays an important role in whether the technology proves helpful during an incident.

Identification during vulnerable person incidents

During incidents involving vulnerable individuals, establishing identity often determines the next stage of the response.

Confirmed information allows responders to contact someone who knows the person and can explain their circumstances.

That contact may be a relative, a carer or an organisation already supporting the individual.

A wearable device that stores basic identification details can provide that connection more quickly.

Instead of relying solely on wider enquiries, responders may be able to confirm who the person is and who should be informed.

For crews dealing with a confused individual in an unfamiliar location, access to those details can help bring the situation towards a safe resolution.

This was originally published in the April 2026 Edition of International Fire & Safety Journal. To read your FREE copy, click here.

Lighting the way in search and rescue operations: Streamlight outlines why beam control matters

Streamlight sets out why lighting is operationally critical, clarifies lumen and candela performance, compares equipment types and highlights the need for responder familiarity

Search and rescue operations are among the most challenging tasks faced by firefighters and emergency responders.

Whether operating in remote wilderness, collapsed structures, flood zones or urban environments after dark, the ability to see clearly and accurately is fundamental to success.

Lighting plays a critical role not only in locating casualties, but also in ensuring responder safety, maintaining situational awareness and enabling coordinated decision-making under pressure.

Modern search and rescue lighting has evolved far beyond basic illumination, offering specialised beam patterns, increased output and robust designs tailored to demanding operational environments.

Search and rescue missions frequently take place in conditions where natural light is limited or entirely absent.

Darkness, smoke, adverse weather and structural damage all combine to restrict visibility and increase operational risk.

Effective lighting allows responders to rapidly assess scenes, identify hazards, detect movement and confirm the presence of casualties.

Without appropriate illumination, even highly trained personnel can struggle to interpret terrain, depth or structural stability, increasing the likelihood of delays or injury.

Lighting also plays an important role in team coordination, enabling responders to signal positions, guide movement and maintain visual contact across complex or changing environments.

In many situations, well-chosen lighting can significantly reduce search times, which is critical when survivability is time dependent.

Understanding lumens, candela and beam patterns

Lumens, candela and beam pattern each influence how light behaves in real-world conditions and understanding how these factors work together is essential for effective deployment in search and rescue operations.

Lumens refer to the total amount of visible light emitted by a source.

In search and rescue environments, higher lumen output enables responders to illuminate larger areas and penetrate darkness more effectively.

High-lumen lights are particularly valuable during initial searches, wide-area sweeps and scene assessments, where broad visibility is required to quickly identify hazards, terrain changes or signs of life.

However, lumen output alone does not determine usefulness, as excessive brightness without proper control can lead to glare, reduced contrast and eye fatigue, particularly in close-range or smoke-filled environments.

Candela measures the intensity of light focused in a specific direction and is closely linked to beam distance.

A higher candela rating indicates a tighter, more intense beam capable of projecting usable light over longer distances.

In outdoor search and rescue operations, candela is especially important for scanning treelines, open fields, waterways or elevated ground, where potential casualties may be located far from the search team’s position.

Strong candela output allows responders to identify reflective materials, movement or contrasting shapes at range without needing to physically cover every area on foot.

Beam pattern defines how light is distributed between the central hotspot and surrounding spill.

Flood beams provide wide, even illumination across a broad field of view and are well suited to interior searches, confined spaces and close-range work where peripheral awareness is essential.

Spot beams concentrate light into a narrower pattern, delivering greater reach and intensity for long-range searching and identification.

Many modern search and rescue lights combine these characteristics, offering a balanced beam that supports both distance work and situational awareness.

Selecting an appropriate beam pattern for the environment is often just as important as output figures when it comes to operational effectiveness.

Streamlight lighting solutions in search and rescue

Different stages of a search and rescue operation place different demands on lighting equipment.

During initial searches, responders benefit from powerful, wide illumination that allows them to quickly assess terrain, structures or debris fields.

As operations progress and points of interest are identified, more focused beams become valuable for confirmation and navigation.

Interior searches require controlled light that reduces harsh shadows while still providing enough brightness to reveal hazards such as unstable flooring, sharp debris or restricted access points.

The most effective lighting strategies involve adapting output, intensity and beam shape to the environment, rather than relying on a single lighting solution for all tasks.

Streamlight has long been recognised for producing lighting tools designed specifically for emergency service professionals and its product range demonstrates how different lighting characteristics can be applied effectively across a variety of search and rescue scenarios.

For scene lighting and extended operations, portable area lights such as the Portable Scene Light and Portable Scene Light II provide broad, even illumination across large working areas, supporting command posts, casualty treatment zones and staging areas.

Their elevated light heads help reduce shadows and improve overall visibility, while rechargeable power systems and adjustable output levels support sustained use during prolonged incidents.

In hazardous or ATEX-regulated environments, the Vulcan® 180 HAZ-LO® ATEX offers reliable scene illumination while meeting stringent safety requirements, with a wide beam pattern and articulating head that allow light to be directed precisely where it is needed.

Hands free options for interiors

Hands-free lighting is essential during interior and close-quarters search operations, where responders must keep both hands free for tools, patient handling or navigation.

The Survivor® X ATEX is designed specifically for emergency service use, offering a durable, rechargeable platform with multiple lighting modes to support task-focused work and movement through complex environments.

The SL-SideSaddle® complements this by providing compact, hard hat or helmet-mounted illumination for close-range tasks, ensuring consistent visibility without adding unnecessary bulk or restricting mobility.

High-output handheld lights remain critical for scanning, identification and long-range assessment.

The Dualie® 3AA ATEX offers dual-light functionality, combining forward-facing and downward-facing illumination to improve situational awareness, while remaining suitable for hazardous locations.

For longer-distance searching, the ProTac® 2.0 HP and ProTac® HP-X deliver powerful, tightly focused beams with strong candela performance, allowing responders to identify reflective materials and points of interest at range.

Durable construction, multiple operating modes and rechargeable power options ensure dependable performance during demanding search and rescue operations.

Effective search and rescue lighting is rarely about relying on a single device.

Instead, it involves deploying a combination of lighting tools that complement one another across different operational phases.

High-output handheld lights support long-range scanning and rapid assessment, helmet-mounted lights provide close-range task illumination and scene lights ensure sustained visibility across larger working areas.

When used together, these tools allow responders to transition smoothly between wide area searching, focused investigation and hands-on rescue tasks without compromising safety or efficiency.

Lighting as a critical operational tool

Lighting remains one of the most critical yet underestimated components of search and rescue operations.

It is not simply about brightness, but about understanding how lumens, candela and beam patterns interact with real-world environments.

When the right lighting tools are matched to the right scenarios, responders can search faster, operate more safely and make better decisions under pressure.

Streamlight’s range of professional lighting solutions demonstrates how purpose-built design supports the demanding realities of search and rescue, helping firefighters and emergency responders perform at their best when it matters most.

This was originally published in the March 2026 Edition of International Fire & Safety Journal. To read your FREE copy, click here.

BC Ferries selects Zelim rescue detection system for new ferries

Zelim secures ferry detection contract

Zelim has secured a contract to supply its ZOE man-overboard (MOB) detection system to four hybrid-electric ferries being built for British Columbia Ferry Services (BC Ferries).

Zelim announced the contract on 25 March, stating that the partnership was agreed in February 2026 and that installation is expected to begin in 2027.

The hybrid-electric New Major Vessels will replace four end-of-life vessels and are scheduled to start service in 2029.

BC Ferries operates 37 vessels across 25 routes serving 47 terminals across nearly 1000 miles (1,600 kilometres) of coastal British Columbia.

Developed by Zelim, ZOE MOB uses computer vision and video analytics to provide 360-degree surveillance for vessel crew.

The AI-enabled system is trained on a proprietary maritime dataset of over 9.5 million annotated objects.

It is designed to detect man-overboard incidents instantaneously, in compliance with ISO 21195:2020, the international standard for shipborne man-overboard detection systems.

ZOE has also been independently tested by Lloyd’s Register to detect adults and children during daytime and night-time conditions.

Zelim sets out vessel rollout details

Sam Mayall, Zelim’s Founder and CEO, said: “We look forward to building a strong partnership with BC Ferries as we deliver our technology to its New Major Vessels.

“It secures a multi-vessel rollout for Zelim and demonstrates the growing value of our ZOE technology for passenger ships.

“It also reflects the positive momentum we’re continuing to build with vessel operators in the ferry sector – and more broadly across the North American market.”

Ed Hooper, BC Ferries’ Head of Fleet Renewal, said: “Safety is our first priority throughout the entire organisation.

“We look forward to working with Zelim to incorporate this innovative technology into our New Major Vessels as we modernise our fleet and further strengthen the safety of our passengers and crews.”