CROSS UK examines Glasgow Union Street fire lessons

Glasgow fire and historic building risk

A CROSS UK feature article reflects on the Glasgow Union Street fire on 8 March 2026 and sets out the fire safety issues that can affect older and listed buildings.

The article says the cause of the fire at the B-listed building on Union Street has not yet been determined and that investigations are ongoing.

Emergency services responded quickly and no injuries were reported. The fire destroyed the businesses within the building.

Damage to the structure also disrupted nearby businesses and transport infrastructure.

CROSS UK says incidents of this kind show how fires in historic buildings can affect city centres and local economies even when there are no casualties.

Glasgow lessons from older construction and change of use

Older and larger historic buildings often contain timber floor structures, lath and plaster walls and ceilings, cast iron frames and columns, along with hidden voids and complex roof spaces.

These features can affect how fire starts and spreads.

Timber floors, concealed cavities and linked roof spaces can allow fire and smoke to move through a building without being seen.

The article says many historic buildings also lack a clear documented fire strategy.

Original drawings may be incomplete or unavailable.

A building may also have changed use several times across its life, altering layouts, occupancy patterns and fire loading.

Service penetrations for ductwork, cables and pipework can also create routes for fire spread where openings are not properly fire stopped.

Managing fire safety in heritage buildings

CROSS UK says effective management in heritage buildings starts with a competent fire risk assessment that reflects the building’s construction, layout and current use.

The article says this work may require a fire risk assessor with experience of heritage buildings, especially where concealed spaces or older construction systems are involved.

It also calls for a formal fire strategy that addresses life safety and property protection.

That strategy should cover detection, compartmentation, suppression and management.

In leased buildings, leaseholders and landlords may each hold responsibilities for fire safety measures in different parts of the premises.

The article says coordination between responsible persons is needed so that fire risk assessments and fire strategies align across the whole building.

It also points to early detection, maintenance, housekeeping, control of contractors and hot work, protection of compartmentation and control of fire loads and ignition sources as parts of fire safety management in older buildings.

The article ends by stating that fires in historic buildings can leave lasting economic and cultural damage, and that protecting them depends on a proactive and coordinated fire safety approach.

Read the CROSS UK article here.

Fire hazards of lithium-ion batteries in buildings: CROSS UK report

Lithium-ion battery risks detailed in new CROSS UK paper

Collaborative Reporting for Safer Structures (CROSS UK) has published a Topic Paper examining the fire hazards associated with lithium-ion batteries in the built environment.

The paper presents information from publicly available research, industry guidance, and confidential reports within the UK.

It highlights the fire and explosion risks posed by both battery-powered devices and Battery Energy Storage Systems (BESS).

According to CROSS UK, lithium-ion batteries are used in smartphones, laptops, electric vehicles, and other applications due to their high energy density and long lifespan.

However, they also present safety challenges, particularly in the event of thermal runaway, a self-sustaining reaction that can lead to fires or explosions.

Understanding thermal runaway and its hazards

Thermal runaway in lithium-ion batteries can be triggered by overcharging, short-circuiting, or overheating.

Once initiated, it can cause rapid temperature increases, producing flammable and toxic vapours.

These incidents are difficult to control, with batteries capable of reigniting due to residual heat.

In some cases, they may react violently with common extinguishing agents.

CROSS UK’s paper warns that stakeholders must be aware of these risks and implement mitigation measures.

Recommended safety measures

The Topic Paper outlines several strategies to manage lithium-ion battery fire risks.

These include the use of battery management systems (BMS), fire detection and suppression systems, safe storage and disposal practices, adequate ventilation, and regular inspections.

CROSS UK states that emergency procedures should also be in place to respond to battery-related fire incidents effectively.

Intended audience for the paper

CROSS UK’s paper is relevant for those responsible for designing, constructing, and managing the built environment.

The organisation recommends it be reviewed by local authorities, building control bodies, developers, building surveyors, architects, fire engineers, facilities managers, and fire and rescue services.

The paper is also aimed at owners and occupiers of buildings where lithium-ion battery technology is in use or planned for installation.

Fire hazards of lithium-ion batteries in buildings: Summary

CROSS UK has published a Topic Paper examining fire risks associated with lithium-ion batteries in the built environment.

The report explains how thermal runaway can cause fires or explosions, making them difficult to control due to flammable vapours, potential reignition, and reactions with extinguishing agents.

The paper highlights the importance of safety measures, including battery management systems, fire detection and suppression systems, ventilation, and emergency procedures.

CROSS UK advises that those responsible for the design, construction, and management of buildings should stay informed about lithium-ion battery risks.

The full paper is available on the CROSS UK website.