Bariatric rescue data challenges claims about non-fire workload

Bariatric rescue data across UK fire services

UK fire and rescue services attended 15,849 bariatric rescue incidents between 2020 and 2025, with annual totals rising from 1,804 in 2020 to 3,183 in 2024, then falling to 2,539 in 2025.

ZAVA said it sent Freedom of Information requests to 49 UK fire and rescue services on 6 November 2025 to compile the dataset.

The dataset lists London Fire Brigade as the highest total over the period, with 2,025 incidents from 2020 to 2025.

South Wales Fire and Rescue Service recorded 1,174 incidents, Northern Ireland Fire and Rescue Service recorded 859 and Lancashire Fire and Rescue Service recorded 747.

What the dataset says about time, costs and resourcing

ZAVA stated that UK fire and rescue services spent 553,609 minutes at bariatric “special service calls” since 2020, equivalent to 384.5 days of continuous time.

The dataset shows a 76% rise between 2020 and 2024, increasing from 1,804 incidents to 3,183.

ZAVA estimated London Fire Brigade’s resource cost at £1,033,295 across 2,025 incidents between 2020 and 2025.

ZAVA said London incidents were concentrated in Croydon at 195, followed by Greenwich at 151 and Bromley at 140.

Tom, a London Fire Brigade firefighter, said: “Staffing levels are shockingly low, with large numbers retiring, fewer firefighters coming through, and crews now carrying far less experience.

“I’ve ridden trucks where the officer had 25 years’ service, the driver four, and the rest of the crew less than two years between them.

“Stations are closing, appliances are being cut, and demand is rising, meaning those who remain are busier and increasingly under-resourced.”

Fireground implications described by London firefighter

ZAVA said the dataset equated to one bariatric rescue every 3 hours and 20 minutes from 2020 to October 2025.

Tom said: “Jobs that would be straightforward with a casualty of a healthier weight become physically damaging and exhausting.

“Removing a severely overweight casualty from a fire would mean working harder, using more air, and staying longer in a dangerous environment.

“This significantly increases the risks of heat exhaustion, collapse, and fire spread.

“With a healthier-weight casualty, we could manage extrication far more easily.

“Instead, bariatric rescues are time-consuming, place severe strain on firefighters’ backs, and increase risk, particularly in fire situations where air use and exposure time are critical.

“These rescues are rarely just about lifting.

“They often involve removing windows, doors, balconies, or working at height, all of which increase risk and duration.”

Crystal Wyllie, a doctor at ZAVA, said: “Obesity is an epidemic across the world, but within the UK, we can see a natural impact that bariatric care has not only on the NHS, but also on other public services such as fire and rescue services.

“First responders have to deal with a tremendous amount of stress on a day-to-day basis, but adding difficult callouts for bariatric patients risks their health and safety when manual handling pushes the physical limits of responders.

“So tackling obesity is key here to reduce strain on our public services.”

The analysis material also describes a London case study involving a ten-hour rescue with five fire engines and additional specialist units, plus police and multiple ambulances.

New UK guidance on lithium battery fire, explosion and smoke hazards from asecos

New lithium battery whitepaper for UK workplaces

asecos has published a new lithium battery safety whitepaper for UK workplaces, responding to requests from safety professionals for clearer guidance on emerging risks.

The company announced the document on Wednesday 26 November 2025 from Derby, UK.

Titled “Lithium-Ion Batteries – Fire, Explosion and Smoke Hazards You Must Address,” the whitepaper focuses on workplace hazards associated with thermal runaway.

The publication is intended to help organisations understand and manage the rise in lithium-ion battery incidents being recorded by UK fire services.

According to asecos, the document is designed to bring together evidence, legal context and practical measures in a single reference for duty holders.

Rising incident rates and thermal runaway hazards

The whitepaper highlights what asecos describes as a marked increase in lithium-ion battery fires attended by UK fire and rescue services.

The company reports that fire services are now dealing with at least three lithium-ion battery incidents a day.

It links these incidents to hazards arising from thermal runaway, including the potential for fires, explosions and heavy smoke generation.

asecos notes that these hazards affect a wide range of equipment powered by lithium-ion cells in workplace environments.

The company positions the paper as a resource to help safety professionals interpret these developing risks in the context of day-to-day operations.

Legal duties and support for organisations

asecos states that the whitepaper sets out how existing legal frameworks apply to lithium-ion battery use and storage in workplaces.

The document refers to the Health and Safety at Work Act, DSEAR and the Fire Safety Order as key sources of duty-holder obligations.

According to asecos, the paper explains how these laws influence the need for risk assessment, hazard control and documentation around lithium battery management.

It also discusses legal exposure where organisations fail to implement protective measures that regulators and insurers are increasingly expecting to see.

The company says the whitepaper outlines practical steps aimed at achieving what it describes as a “gold standard” approach to lithium battery safety.

asecos adds that the publication draws attention to the support it offers through free site surveys, its Derby showroom and annual maintenance plans.

Les Day, Commercial Director at asecos, said: “The lithiumion revolution has transformed how we work but it’s also created a complex, fast-evolving safety challenge.

“This whitepaper offers professionals the evidence, legal clarity and technical guidance needed to act decisively before an incident occurs.”

Practical relevance for battery risk management and compliance

Fire safety officers can use the whitepaper to align existing lithium-ion storage and charging arrangements with legal expectations linked to DSEAR and the Fire Safety Order.

Facility managers across industrial, commercial and public sites gain a single reference for checking whether lithium-ion powered tools, devices and systems are covered by suitable controls.

Risk assessors can draw on the incident data and thermal runaway discussion when reviewing workplace assessments that currently treat lithium-ion batteries in the same way as conventional batteries.

System installers and fire-protection contractors may need to consider how the “gold standard” measures described by asecos influence specifications for cabinets, ventilation and fire-detection interfaces.

Procurement officers can reference the legal and insurance sections when evaluating investment in containment products, maintenance plans or site surveys related to lithium battery hazards.