Fire safety cable standards drive demand for Category 3 Control in UK

Updated guidance prompts cable safety focus

AEI Cables has reported increased demand for Category 3 Control fire performance cables in the UK, following renewed attention to guidance in BS 8519:2020.

The British Standard outlines how control cables should be selected and installed in fire safety systems used in buildings such as care homes, offices, hospitals and shopping centres.

The company said these systems include evacuation alarms for disabled occupants, emergency voice communication systems and voice alarms in public buildings.

The guidance sets expectations for cable performance during fire-related emergencies and categorises cables by their survival time and function.

According to AEI Cables, following – and exceeding – these minimum standards improves the reliability of critical fire safety systems.

AEI Cables comments on current UK trends

Stuart Dover, General Manager of AEI Cables, said the company is seeing a steady rise in customer interest for Category 3 Control cable types.

He said: “We are seeing quite an increase in demand for Category 3 Control cables and we can only stress that if they meet and exceed all standards requirements this can only help in the interest of safety of property and lives in these critical spaces.

“Meeting standards is a minimum requirement but going above and beyond these standards will help firefighters in a real-life fire situation.”

AEI Cables has been promoting the role of LPCB-certified products and urging the industry to take account of updated codes of practice.

According to Dover, the cables play a role in powering systems like smoke control, heat extraction and evacuation alarms, which are relied upon during incidents requiring fire service intervention.

Firetec Enhanced and BS 8519 Category 3 Control

The company said its Firetec Enhanced cabling has received third-party certification from LPCB.

This certification applies to BS 8519 Annex B under both Category 2 Control and Category 3 Control classifications.

The BS 8519 Code of Practice includes three power cable categories and three control cable categories.

Each category aligns with survival times of 30, 60 or 120 minutes depending on the intended system function during a fire.

AEI Cables said the updated code provides clarity for contractors, developers and consultants specifying products for life safety systems.

Industry approvals and UK use cases

AEI Cables stated that its fire performance cable range is backed by third-party testing and certification from organisations including BASEC and LPCB.

The manufacturer added that it also holds approvals from Lloyds Register, the Ministry of Defence, Network Rail and London Underground.

Its cables are designed and tested to international standards and are supplied to infrastructure, defence and public sector projects.

The company said the most common UK applications include use in tall buildings, healthcare environments and transport hubs where system failure poses a life safety risk.

Role of Category 3 Control cables in emergencies

Control cables serve different functions from power cables, and Category 3 Control cables are specified for the highest level of system resilience.

These cables are used in systems that support evacuation, suppress smoke and allow fire services to manage internal conditions during an emergency.

According to AEI Cables, these systems must remain operational during extended fire exposure.

The company said reducing toxic gas and flame spread also assists in safer evacuation routes and fire service access.

AEI Cables has urged those responsible for design and specification to prioritise cables with enhanced survivability and independent certification.

Fire safety cable standards drive demand for Category 3 Control in UK: Summary

AEI Cables has reported growing demand for Category 3 Control fire safety cables.

The company attributed this trend to the updated BS 8519:2020 guidance.

This British Standard outlines cable selection for life safety systems.

Category 3 Control cables are used in evacuation and fire management systems.

AEI Cables said meeting and exceeding standards improves fire safety.

Firetec Enhanced cables have been certified by LPCB to BS 8519.

BS 8519 includes six cable categories based on function and duration.

AEI Cables holds certifications from BASEC, LPCB and others.

Its cables are used in care homes, hospitals and high-rise buildings.

The shift begins at the socket: How Ci Global is rethinking electrical fire safety

Ci Global Founder Anthony D. Parfitt discusses certified smart sockets that identify faults, shut off power, and reduce the risk of fatal electrical fires

Trusting traditional fire detection systems proved catastrophic at Grenfell Tower. It’s time to rethink fire safety – not as a response, but as a prevention.

The Grenfell Tower fire was a wake-up call to the world.

A devastating reminder that waiting for a fire to start before taking action is not just outdated – it’s deadly. Seventy-two lives were lost. Lives that should never have been in danger.

The fire began with a fridge-freezer. A standard appliance in a standard flat. Used exactly as intended. But somewhere, deep inside, a hidden fault had developed – quietly, invisibly.

And by the time anyone knew something was wrong, it was already too late. No one expected it. No one could have seen it coming.

Yes, the Grenfell Inquiry uncovered a series of failures – from the flammable cladding and ‘stay put’ policy, to regulatory oversights and corporate negligence.

But let’s be clear: nothing in the current system, no alarm, no regulation and none of the 58 recommendations now accepted by the UK government, would have stopped that fridge-freezer from igniting. Because everything we do today starts after a fire has already begun.

This article explores how modern technology can stop deadly electrical fires before they start – by tackling the risk directly at its most common source: the socket.

Why are we still reacting – when we could be preventing?

Conventional detection systems are built to alert people after a fire has already started – but they do nothing to stop it from starting in the first place.

Smoke alarms, fire doors, evacuation plans – all vital. But all reactive. None of them intervene at the source.

This is the fatal flaw not just in Grenfell and the UK, but across fire safety worldwide: almost every system waits for ignition. And once there’s a fire, the damage is already done.

Electrical faults remain one of the most common causes of fires – in homes, hotels, hospitals, schools. Often starting silently, at night, when people are asleep. And too often, by the time anyone knows, it’s already spreading. This isn’t good enough. Not when we have the technology to do better.

The overlooked risk hiding in plain sight

The insidious nature of electrical fires lies in their everyday origin. Everyday appliances. Chargers. Extension cords. Even the fixed wiring within buildings. All of it has the potential to ignite.

According to UK Fire and Rescue Services data, one in four fires are caused by electrical faults – with over 5,800 of these recorded in 2022/2023 alone.

And while it’s right to raise concerns about substandard or counterfeit products, the truth is that even trusted, reputable appliances can develop faults over time.

As the saying goes: good white goods go bad. The real issue? There’s no way to know when things start to go wrong.

Most electrical safety systems today only kick in after a major fault – like a short circuit or overcurrent – tripping a breaker or blowing a fuse.

But many fires don’t start with an obvious failure. They start with something much smaller – localised overheating in a plug, a damaged cable, or a degrading component.

These threats are silent, invisible and completely undetectable by conventional means. And they can come from anywhere – a brand-new charger, a high-end appliance, or a well-worn extension lead that’s been daisy-chained under a rug. It’s a fire waiting to happen.

And yet, the one place we could be monitoring most effectively – the socket – is still treated as nothing more than a passive conduit.

Electrical sockets, despite being central to our homes and workplaces, haven’t meaningfully changed in over a century.

They were never designed to detect danger. They were built to deliver power – not to question what they’re powering, or whether it’s safe.

This is the fundamental gap in modern electrical fire safety. We monitor smoke and flames. We sound alarms. But we do almost nothing to stop the risk where it begins – at the socket itself.

Tragedy can lead to transformation

The sad truth is, real safety reform often comes after disaster. The King’s Cross fire in 1987 – sparked by a dropped match – led to a total overhaul of safety across the London Underground, including the removal of all wooden escalators.

The Bradford City Stadium fire in 1985 – where a small blaze under a wooden stand spread in seconds and killed 56 people – led to bans on timber grandstands in UK football grounds.

Both were horrific. Both were preventable. And both forced the nation to act. Grenfell must be the same. Not just a moment of mourning – but a turning point.

For Anthony D. Parfitt, Founder and Chairman of Ci Global, the journey started years earlier, with a burst pipe and an electrical short in his own home. A near-miss. A warning.

It pushed him to tinker – building an early prototype for a water leak detection system with auto shut-off.

But at the time, it was just a side project. His day job involved pioneering safety systems for the UK Home Office, DVLA and Network Rail – including the UK’s first Automatic Number Plate Recognition (ANPR) system.

Then Grenfell happened.

An electrical fire in a common appliance had taken 72 lives – and exposed a devastating truth: the system wasn’t broken.

There was no system. At least not one designed to prevent electrical fires before they start. So he made a decision.

He revisited his prototype. Tore it apart. Reimagined what a socket could do. And then built something nobody else had dared to try: An electrical fire prevention safety smart socket.

One that could detect faults before they become flames. One that could monitor heat, load and anomalies at the exact point where risk begins – and shut off power before disaster strikes.

It was a radical idea. But Anthony knew it had to happen. Because no one else was going to do it.

Redefining fire safety – from detection to prevention

Anthony knew that preventing another Grenfell would require more than detection and suppression. By the time a smoke alarm sounds or a sprinkler kicks in, the fire is already underway.

We need to act sooner. Much sooner.

That means going straight to the source: the socket. The very point where appliances draw power – and where the majority of electrical fire risks begin.

Through Ci Global, Anthony and his team developed a fully certified, patented safety socket that continuously monitors for the earliest warning signs of fire risk. That includes: dangerous overheating in plugs or appliances, circuit overloads,      ring main faults and gradual faults that develop silently over time

By analysing these patterns – including through AI-powered real-time monitoring – Ci’s technology can detect anomalies that indicate a developing electrical fault. And crucially, it can shut off power before the conditions for ignition are ever reached.

This is what Ci calls the ‘fire prevention window’: the critical moment between a fault forming and a fire starting. Where Ci acts is right at the start – before things even start to get hot.

With Ci One and Ci Max, safety smart sockets become an active line of defence, cutting power before a fire can ignite – not after. But Ci didn’t stop there.

This intelligent prevention technology now extends beyond wall sockets to include smart extension leads, creating a wider ecosystem of protection at the socket level.

The sockets also include sensors for other hazards – such as water leaks, which can pose a serious fire risk if they reach electrical points and gas leaks, which can lead to catastrophic explosions.

These systems can be configured to automatically shut off valves remotely, stopping danger in its tracks.

And it goes even further.

These capabilities can be embedded directly into appliances – like white goods or electric vehicle (EV) chargers – during manufacturing.

Internal sensors monitor for component overheating or malfunction.

If something goes wrong, power is cut from within the device itself.

Built-in ‘black box’ data logging also gives manufacturers valuable diagnostics: insight into warranty claims, targeted recalls, product improvements and – in the event of a fire – proof that their product wasn’t to blame.

Ci’s safety smart socket technology protects lives, protects reputations and sets a new standard for how electrical safety should work.

Prevention not reaction

If we’re serious about reducing the risk of electrical fires – in homes, workplaces and public buildings – we must stop relying on systems that only act once it’s already too late.

That shift begins at the socket.

By embedding smart, self-monitoring technology directly within the socket, we can detect dangerous conditions – like appliance overheating, faulty wiring, or circuit overloads – and cut power before ignition ever occurs.

These are not just smarter sockets.

They’re self-protecting guardians – turning the most overlooked component in fire safety into the first and most effective line of defence.

Setting a new global standard for fire safety means targeting the problem at its source – not waiting for symptoms to surface.

And thankfully, that shift is already underway.

Ci Global’s certified safety smart sockets – designed to stop electrical fires before they start – are already available in the UK, UAE and Saudi Arabia, with more countries coming online soon.

Because when it comes to fire safety, prevention isn’t optional.

It’s the only standard that makes sense. Pre-orders are open now.

To register your interest, visit: https://ci.global/contact/

This was originally published in the July 2025 Edition of International Fire & Safety Journal. To read your FREE copy, click here. 

Augwind unveils commercial AirBattery in Germany

Israel-based Augwind to deploy energy storage system in Germany

CleanTechnica has reported that Israel’s Augwind Energy will construct the world’s first commercial-scale AirBattery energy storage system in Germany.

The project will use compressed air stored in underground salt caverns to provide electricity during periods of low renewable generation.

This type of long-duration energy storage is designed to complement intermittent energy sources like wind and solar.

The compressed air will be generated using surplus renewable energy from the grid.

Or Yogev, Founder and CEO of Augwind Energy, discussed the initiative with CleanTechnica in a recent interview.

The system will store energy for several months

The company explained that the AirBattery will be able to store compressed air for up to several months.

Yogev said: “We can store energy for up to several months – a game-changing capability for addressing Germany’s ‘Dunkelflaute’ periods when solar and wind output is low.

“Our system has unlimited duration potential, limited only by the volume of the cavern itself.

“This long-duration storage capability is exactly what Europe needs as renewable energy penetration exceeds 50%.”

The compressed air is stored in solution-mined salt caverns, which are naturally airtight due to their density and pressure.

Yogev said: “The salt in the deep underground is highly condensed and pressurised by the weight above it.

“It is so dense that it is completely airtight.

“This unique characteristic has led to the use of solution mined salt caverns for safely storing compressed natural gas for over half a century.”

Installation timeline and turbine generation capacity

The AirBattery system will require between 9–12 months for installation and an additional 3–6 months for commissioning once permitting is finalised.

The facility will include 3 or 4 turbines, capable of generating between 3–10 MW of electricity on average.

Yogev said: “The turbines will be similar to the highly efficient Voith Hydro turbine currently operating in our demonstration site.”

To improve power quality and responsiveness, the system will be integrated with lithium-ion batteries.

Yogev added: “We couple the system with short-duration lithium-ion batteries for ancillary services and to provide a high-quality power profile.”

While the startup speed is slower than lithium-ion, the integration allows rapid deployment when needed.

Commercial model and system costs

The total cost of the first module will depend on the specific cavern selected and is expected to range between €7 million and €15 million.

AirBattery’s projected cost per kilowatt-hour for multiweek storage is estimated at 10–15 USD.

Yogev said: “Our AirBattery technology offers exceptionally competitive economics at 10–15 USD per kWh for multiweek duration storage.

“This cost-effectiveness, combined with our minimal environmental footprint and use of locally sourced materials rather than critical minerals, makes AirBattery the clear choice for Germany’s energy transition needs.”

The system is designed to work with wind and solar electricity that would otherwise be curtailed due to grid oversupply.

Augwind intends for this approach to reduce reliance on imported energy sources.

Yogev explained: “We’re taking excess renewable electricity that would otherwise be wasted during periods of oversupply and storing it for when Germany needs it most.”

Deployment partners and market role

The company is currently finalising partnerships with various stakeholders including energy traders, utilities, cavern owners, and industrial customers.

Although the names of participating partners have not yet been confirmed, Augwind says that demand from the German energy market has been strong.

Yogev said: “Our goal is to become Europe’s preferred partner for multiweek storage solutions, and this German launch will demonstrate that long-term energy storage is not only technically feasible but economically sound.”

The project’s final capacity will depend on the specific geological site selected.

Each AirBattery cavern could store compressed air equivalent to 3–8 GWh of electrical output, according to the company.

The exact figure for the first site has not yet been confirmed.

Germany to install first commercial AirBattery system: Summary

Augwind Energy has announced plans to build a commercial AirBattery system in Germany.

The system will store compressed air in underground salt caverns to generate electricity.

Air will be compressed using surplus wind and solar energy.

The company said each unit may store 3–8 GWh depending on site conditions.

Compressed air can be stored for several months.

The project cost will range between €7 million and €15 million.

The installation phase will last 9–12 months, followed by 3–6 months for commissioning.

The system will use 3 or 4 turbines generating 3–10 MW.

Lithium-ion batteries will support the system for ancillary services.

Projected storage cost is 10–15 USD per kWh.

No specific customers have yet been named.

The project aims to support Germany’s long-duration storage needs.

Fire safety upgrade rules clarified for strata buildings in NSW

Strata buildings may need fire safety upgrades in certain cases

Owners corporations in New South Wales may be legally required to upgrade fire safety systems in strata buildings, depending on the circumstances.

According to Building Commission NSW, requirements under the Environmental Planning and Assessment Act 1979 (EP&A Act) and its associated regulations may trigger these obligations.

Fire safety upgrades may be mandated through formal fire safety orders, or when a Development Application or Complying Development Certificate is submitted that affects the building’s use or structure.

The commission said upgrades may also be required when smoke alarm standards change or where existing systems no longer meet minimum performance requirements listed in a fire safety schedule.

Fire and Rescue NSW or local councils have the authority to issue fire safety orders under Division 9.3 of the EP&A Act.

These orders may compel owners to install or improve fire safety systems to bring buildings into full or partial compliance with the Building Code of Australia.

Building modifications may trigger compliance upgrades

Fire safety upgrades are not only ordered reactively but can also result from building modifications.

Building Commission NSW said a change in building use through a Development Application (DA) may require updated protection measures to match the new occupancy type.

It explained that fire safety features such as smoke detection, sprinkler systems, and emergency exits must align with the use classification under the Building Code of Australia.

The agency also noted that when new or proposed building work exceeds 50 percent of a building’s volume, fire protection systems may need to be reassessed.

Upgrades in these cases ensure consistency with category 1 fire safety provisions and structural requirements.

This also applies to Complying Development Certificates (CDCs), where assessments must consider current fire safety standards under sections 142 and 143 of the EP&A Regulation 2021.

Fire safety orders follow procedural steps

Building Commission NSW said local councils must follow a defined process before issuing a fire safety order.

They must notify the building owner and include the intent of the order, the terms, the compliance timeframe, and information on how to respond or appeal.

Owners have the right to make representations and can appeal to the Land and Environment Court if they dispute the order.

The commission stated that this is part of procedural fairness, and allows owners to seek negotiation on the type and timing of required works.

However, if Fire and Rescue NSW issues a fire safety order, there is no right of appeal unless the order restricts access or use of the property.

Routine maintenance does not require upgrades

According to Building Commission NSW, routine fire safety inspections or maintenance do not in themselves trigger an obligation to upgrade systems.

The organisation clarified that fire maintenance contractors cannot compel upgrades unless a formal order or regulatory process is involved.

It said building owners are only required to upgrade existing fire safety measures if they fail to meet the performance standard listed on the building’s fire safety schedule.

This schedule sets out which measures are in place and their required performance level.

The commission confirmed that as long as measures meet these standards, no further upgrades are needed, even if newer standards exist.

Smoke alarm requirements remain in place

Smoke alarm regulations also form part of the fire safety upgrade rules.

Building Commission NSW noted that smoke alarms must be installed in all dwellings and buildings where occupants sleep.

The required locations and technical specifications are detailed in Part 13 of the EP&A (Development Certification and Fire Safety) Regulation 2021.

These provisions ensure that all new development or changes in occupancy continue to meet minimum life safety requirements.

The commission stated that failure to comply with smoke alarm provisions may trigger a separate compliance process or enforcement action.

Fire safety upgrade rules clarified for strata buildings in NSW: Summary

Owners corporations may need to upgrade fire safety systems in strata buildings under specific legal triggers.

Building Commission NSW stated that these triggers include fire safety orders, development applications, or non-compliance with performance standards.

Fire safety orders can be issued by local councils or Fire and Rescue NSW under the EP&A Act.

Development applications involving structural changes or changes in use may require upgrades to meet Building Code of Australia standards.

Complying Development Certificates also require consideration of current fire safety measures.

Fire safety orders from councils must follow a process that includes notification and appeal rights.

Orders from Fire and Rescue NSW cannot be appealed unless they restrict access.

Routine maintenance does not require upgrades unless the system no longer meets the listed performance standard.

Smoke alarms must be installed in sleeping areas, with technical requirements set by regulation.

Construction company fined £165,000 for fire safety failures at Preston development

Fire safety enforcement leads to £165,000 penalty

An Altrincham-based construction company has been fined after failing to implement basic fire safety measures during a residential conversion project in central Preston.

According to the Health and Safety Executive (HSE), Glovers Court Ltd was fined £165,000 following repeated breaches of fire safety duties during redevelopment works at a warehouse on Glovers Court.

Lancashire Fire and Rescue Service (LFRS) first inspected the six-storey building on 16 May 2023 and found major deficiencies, including no fire detection system or evacuation plans.

LFRS issued a prohibition notice requiring the building to be vacated by occupants and stopped further works pending fire safety improvements.

The HSE said its own inspection confirmed that Glovers Court Ltd had not maintained proper compartmentation and failed to phase works to reduce fire spread risks.

HSE outlines repeated breaches at Preston site

The HSE reported that during its initial inspection, Glovers Court Ltd had no active fire detection or alarm systems in place at the time of redevelopment.

The inspection found that the site lacked adequate means of raising an alarm and had not maintained compartmentation across the floors, creating the potential for rapid fire spread.

Following this visit, the HSE issued both a prohibition notice and an improvement notice, halting work until suitable precautions were established and requiring the company to prepare a fire management plan.

However, further site visits by the HSE in June and November 2023 confirmed that the company had continued construction activities despite failing to comply with either enforcement notice.

According to the HSE, this ongoing non-compliance constituted a criminal offence under health and safety law.

Legal outcome and penalties imposed

Glovers Court Ltd, registered in Altrincham, Cheshire, was prosecuted in absence at Preston Magistrates’ Court on 26 June 2025.

The court found the company guilty of four offences under the Health and Safety at Work etc. Act 1974 (HSWA) and Construction (Design and Management) Regulations 2015 (CDM 2015).

These included breaching Regulation 11(1) and 13(1) of CDM 2015, relating to failure to plan, manage, and monitor safety during both pre-construction and construction phases.

The company was also convicted of two counts under section 33(1)(g) of HSWA for breaching improvement and prohibition notices.

Glovers Court Ltd was fined £165,000 and ordered to pay £10,512 in costs.

The HSE confirmed that the company has since entered liquidation.

Regulator and fire service statements

HSE inspector Christine McGlynn said: “This company showed a blatant disregard to both fire safety and the laws in place to protect both people and places.

“Each year there are estimated to be hundreds of fires on construction sites, potentially putting the lives of workers and members of the public at risk.

“Any outbreak of fire threatens the safety of those on site and is costly in terms of its damage and delay.

“Many can be avoided by careful planning and control of work activities.”

A spokesperson for Lancashire Fire and Rescue Service said: “This prosecution highlights the positive outcomes multi agency working has for fire safety in Lancashire.

“It also highlights the critical importance property developers, owners and managers must give to fire safety.

“We welcome the court’s recognition of the seriousness of these breaches and hope this serves as a clear message to all about their legal and moral responsibilities.”

Legislative framework and guidance

The HSE stated that construction employers are required under UK law to carry out suitable fire risk assessments and implement proportionate control measures.

This includes providing fire detection and alarm systems and ensuring firefighting equipment is properly located on site.

Guidance on meeting these legal obligations is available under Regulation 32 of the Construction (Design and Management) Regulations 2015 and in HSE publication HSG168, “Fire safety in construction”.

The HSE confirmed that enforcement action was led by enforcement lawyer Karen Park and paralegal Rebecca Withell.

Construction company fined £165,000 for fire safety failures at Preston development: Summary

An Altrincham-based construction company has been fined over fire safety failures in Preston.

The Health and Safety Executive said Glovers Court Ltd breached safety laws during a redevelopment project at Glovers Court.

Lancashire Fire and Rescue Service first visited the site in May 2023 and issued a prohibition notice.

The HSE later found ongoing breaches and issued an improvement notice.

Further inspections confirmed the company had continued work without compliance.

The company was found guilty of four offences at Preston Magistrates’ Court.

The offences included breaches of CDM 2015 and failure to follow enforcement notices.

Glovers Court Ltd was fined £165,000 and ordered to pay £10,512 in costs.

The company is now in liquidation.

Statements were issued by HSE inspector Christine McGlynn and LFRS.

HSE guidance requires suitable fire precautions on all construction sites.

Consilium strengthens Türkiye presence with Ares Marine acquisition

Consilium acquisition targets Turkish shipbuilding market

Consilium Safety Group has expanded its operations in Türkiye by acquiring marine safety company Ares Marine.

According to Consilium, the acquisition will support its strategic goal to increase service availability in key maritime regions.

The company stated that the deal enables 24/7 support and access to a local sales operation in a market that includes more than 70 shipyards.

Consilium said that the move enhances its ability to serve shipbuilders and owners across the region, with access to its complete product range.

The announcement was made in a company release published on 3 July 2025.

Local sales and support services to be expanded

The company explained that the Ares Marine acquisition enables more direct support for shipbuilders in the area.

Consilium added that it will now be able to provide local aftermarket and upgrade services, aiming to maximise operational uptime for shipowners.

Philip Isell Lind af Hageby, Chief Executive Officer of Consilium Safety Group, said: “I am delighted that Ares Marine is joining Consilium. We know that our customers around the world appreciate our strong physical presence, which enables us to provide fast and reliable service 24 hours a day, 7 days a week.

“With the acquisition of Ares Marine, we are strengthening our position in the region, not only by providing enhanced support to the shipbuilders, but also by offering local aftermarket and upgrade services to shipowners, ensuring maximum uptime in their operations.”

Ares Marine brings local experience and market knowledge

Ares Marine was founded in 2016 and is based in Tuzla Bay, Istanbul.

Consilium stated that the location gives the company direct access to Türkiye’s shipbuilding industry, where the majority of the country’s shipyards are located.

The firm added that Ares Marine has built a strong customer base and offers fire and gas detection, cargo control, monitoring systems, instrumentation and marine electronics.

These capabilities are expected to support Consilium’s efforts to provide integrated safety solutions for both new builds and existing vessels.

Co-founder of Ares Marine supports move

Mustafa Özler, Co-Founder of Ares Marine, said: “This is the right time for Ares Marine to become part of a larger organisation. With Consilium’s full product range and extensive experience behind us, we can now take the next big step in our growth plan and join the global expansion journey.

“We have strong expertise and a deep understanding of our market, so this acquisition truly has the potential to be a win-win, especially for our local customers in Türkiye.

“Having known Consilium for many years, we highly value their business model, which means there will be no ramp-up period, our collaboration will be fully operational from day one.”

Türkiye identified as strategic region for growth

Consilium explained that Türkiye is a priority region due to its high concentration of shipyards and ongoing shipbuilding activity.

The company stated that establishing a local presence was important to improve access for existing customers and respond to regional demand.

It added that this step reflects its wider growth strategy to offer more regional support and reduce service response times.

The expansion in Türkiye is part of Consilium’s broader plans to grow its presence in international maritime markets.

The company also indicated that further developments in the region may follow as part of this long-term plan.

Consilium strengthens Türkiye presence with Ares Marine acquisition: Summary

Consilium Safety Group has acquired Ares Marine.

The acquisition expands Consilium’s operations in Türkiye.

Consilium reported that the move supports 24/7 service and local sales operations.

Türkiye has over 70 shipyards, according to Consilium.

Ares Marine is based in Tuzla Bay, Istanbul.

The company was founded in 2016.

It provides fire and gas detection, cargo control, instrumentation and marine electronics.

Philip Isell Lind af Hageby is the CEO of Consilium Safety Group.

He said the acquisition strengthens regional support and improves customer service.

Mustafa Özler is Co-Founder of Ares Marine.

He said the deal supports growth and enables full integration with Consilium’s operations.

Consilium identified Türkiye as a strategic market.

It said the deal supports its international growth strategy.

UK F-Gas certification milestone signals growing compliance focus

Membership milestone reflects growth in UK certification

REFCOM has registered its 9,000th member, marking what the Building Engineering Services Association (BESA) described as a continuing shift towards legal and environmental compliance within the UK refrigeration, air conditioning and heat pump (RACHP) industry.

BESA, which operates the certification scheme, stated that recent regulatory changes linked to the Building Safety Act and increasing demands around environmental standards had accelerated contractor engagement with certification schemes.

The association added that the achievement highlights a wider move in the UK market to formalise competence and accountability among firms working with F-Gas systems.

Jill Nicholls, director of competence and compliance at BESA, said: “This milestone reflects the growing professionalism of the RACHP sector and the trust that businesses place in REFCOM.”

She added: “Helping our members reach and maintain higher standards of safety, compliance, and environmental responsibility is a critical part of our role.”

Digital tools and partnerships support certification engagement

According to BESA, REFCOM’s increased membership is supported by its investment in digital compliance tools, strategic training partnerships and its Elite Membership initiative.

Nicholls said these elements provide support that goes beyond the statutory requirements of certification.

She explained that these services were designed to help building services firms address increasing client expectations and stay aligned with future regulatory changes.

Nicholls added: “REFCOM’s ongoing investment in digital tools, training partnerships, and its ‘Elite Membership’ scheme offered further practical support to contractors beyond certification.”

She continued: “These would be increasingly important to firms working to meet rising customer expectations and cope with further proposed changes to legislation.”

Government outlines F-Gas regulatory changes

DEFRA officials attending a REFCOM event warned that more stringent rules on the use of fluorinated gases are under review.

Jacob Andresen, who leads the F-Gas policy team at the Department for Environment, Food and Rural Affairs, said a consultation with the sector is expected later in the year.

Andresen said the proposals may include an accelerated phase-out of high-global-warming refrigerants and further restrictions on certain substances to align with EU regulation and UK net zero targets.

He explained that DEFRA’s current position is to remain aligned with the European approach while supporting national goals.

Andresen stated: “The government was planning to consult the sector later this year on reforming its approach as it seeks to meet its obligations of remaining in step with the EU on refrigerant management and contributing to the UK’s own net zero targets.”

Industry calls for training on flammable alternatives

During a wider discussion held at the BESA headquarters in London, members raised safety concerns around low global warming refrigerant alternatives.

REFCOM members said the flammability of these gases introduced new risks and called on government to introduce an awareness campaign and make specialist training more widely available.

BESA reported that members sought clarity on the safety requirements and technical competencies needed when switching to these refrigerants.

The organisation added that training provision would be critical to support firms adapting to these regulatory shifts.

Next steps and additional support for members

REFCOM said its next aim is to reach 10,000 members as part of a continued effort to improve compliance levels across the UK.

Nicholls said this goal would help reinforce the body’s role in environmental responsibility and policy alignment.

She added: “REFCOM was now focused on reaching the 10,000 member milestone – a significant achievement that would further strengthen its position as the UK’s leading F-Gas certification body and support the government’s aims of reducing the environmental impact of the RACHP sector.”

In addition, REFCOM announced that it had negotiated a 10% public liability insurance discount for members via Kingsbridge Insurance.

The organisation will also be exhibiting at the Installer Show this week, where it will support World Refrigeration Day on 26 June.

UK F-Gas certification milestone signals growing compliance focus: Summary

REFCOM has reached 9,000 members in its F-Gas certification scheme.

The Building Engineering Services Association reported increased demand due to regulatory and environmental pressures.

BESA said its digital tools and Elite Membership programme support contractor compliance.

Jill Nicholls of BESA said certification helps meet safety and legal standards.

DEFRA’s Jacob Andresen said tighter rules on refrigerants are being planned.

Consultation with the sector is expected later in 2025.

REFCOM members expressed concern about the flammability of low-GWP gases.

They called for government-backed information campaigns and training.

REFCOM plans to reach 10,000 members in the near future.

A new insurance discount has been introduced through Kingsbridge.

REFCOM will be present at the Installer Show and World Refrigeration Day.

BESA competence guide for ductwork installers: Full report

Practical guide aims to support industry compliance

The Building Engineering Services Association (BESA) has published a new guide aimed at helping UK ductwork installers meet competence requirements under building safety legislation.

According to BESA, the free-to-download guide is the first in a series designed to assist the building services sector in understanding and applying the Skills, Knowledge, Experience and Behaviours (SKEB) framework.

The Association said the move responds to growing legal obligations introduced following the Grenfell Tower fire and subsequent Hackitt Review, which identified widespread failures in demonstrating professional competence.

Developed with input from Milford & Marah, the Association of Ductwork Contractors and Allied Services (ADCAS), and the Association for Specialist Fire Protection (ASFP), the document targets both individuals and companies.

BESA stated that the toolkit offers a “what good looks like” model to support contractors in meeting the requirements of the Building Safety Act and industry standards.

Sector collaboration backs new SKEB guidance

The content of the BESA guide aligns with the work of the Engineering and Building Services Skills Authority (EBSSA) and the Industry Competence Steering Group (ICSG), which are developing broader frameworks to assess industry competence.

BESA confirmed that future guides will follow the same structure, each tailored to different areas of building engineering, and linked to the evolving national competence model.

Rachel Davidson, Director of Specialist Knowledge at BESA, said: “This guide has been designed to help individuals and companies simplify the process of measuring and assessing competence in a practical and easy to understand way.

“It is the first step towards creating a much-needed competence and compliance culture and is designed to support the more in-depth work being carried out by the ICSG to produce a national competence framework for the whole industry.”

Jon Vanstone, Chair of the Industry Competence Committee, welcomed the new document: “The SKEB Toolkit is a clear and practical example of what good looks like when sector-led initiatives meet the ambitions of national policy.

“It provides an essential foundation for ensuring individual competence can be properly demonstrated and supported – both now and in the future.”

Toolkit provides detailed framework for ductwork installers

The first guide in the series focuses on industrial and commercial ductwork installation, with a structured approach for firms and workers to assess and record their capabilities.

BESA explained that the guide outlines six key areas where evidence is required: health, safety and environmental legislation; working relationships; preparation; system and component identification; installation and testing; and pre-commissioning checks.

It includes example qualifications, recommended assessments, and methods for documenting work experience and professional behaviour.

The association noted that the guide is not intended to replace national frameworks but is a means of supporting immediate needs, especially for clients demanding clear proof of contractor capability.

The guide is available for free on the BESA website and is intended to be used as a live document that evolves in line with feedback and wider industry developments.

Collaboration underpins long-term compliance goals

BESA emphasised that the guide’s development was made possible through input from multiple industry organisations, signalling a move towards more cohesive cross-sector action.

Davidson added: “There is still a lot of work to be done to help our industry develop a true competence and compliance culture.

“However, these ‘starter guides’ provide an important first step.

“Also, they have been made possible by cross-sector collaboration which will be essential to the wider and more in-depth work ahead.”

The organisation said the toolkits were created in response to industry feedback, particularly from those facing immediate questions about competence under new legislation.

According to BESA, it will continue to release future guides covering other technical disciplines, each aligned with existing and emerging frameworks.

National context rooted in Grenfell response

The UK Government introduced new building safety requirements through the Building Safety Act, in response to failings highlighted by the Grenfell Tower fire inquiry.

The Hackitt Review recommended establishing a clear, measurable way to assess individual and organisational competence across construction and engineering.

BESA explained that its toolkit is designed to offer accessible support while more comprehensive national competence frameworks continue to be developed.

The industry is currently transitioning towards compliance models that require engineers and firms to demonstrate their competence to clients, regulators, and insurers.

BESA added that its practical guides fill a gap by giving immediate tools to document and evidence competence in day-to-day operations.

BESA competence guide for ductwork installers: Summary

BESA has launched a practical guide to support UK ductwork installers in demonstrating professional competence.

The guide is the first in a planned series to support compliance with the Building Safety Act.

It was developed in partnership with Milford & Marah, ADCAS and ASFP.

The guide uses the Skills, Knowledge, Experience and Behaviours (SKEB) model.

It outlines six key areas of required evidence for ductwork installers.

The guide includes examples of qualifications, tasks and behavioural expectations.

Rachel Davidson of BESA said it helps simplify competence assessment.

Jon Vanstone of the Industry Competence Committee endorsed the guide.

The guide is aligned with work by EBSSA and the Industry Competence Steering Group.

BESA said future guides will target other building engineering roles.

Blue Whale and UNIGRID to deploy rooftop BESS in Southeast Asia

Urban BESS installations face new solution in Southeast Asia

Blue Whale Energy has announced a new partnership with UNIGRID to deliver battery energy storage system (BESS) installations in space-limited Southeast Asian cities.

The two companies will begin by rolling out 8 MWh of sodium-ion rooftop battery systems beneath commercial and industrial solar arrays by the end of 2025.

According to Blue Whale Energy, BESS co-located with solar is essential to support electric grids experiencing strain from variable solar output and increasing demand.

In dense urban areas, however, conventional lithium-ion systems face challenges due to setback requirements, fire safety concerns and engineering complexity.

Blue Whale Energy stated that its compact rooftop approach using sodium-ion battery technology allows deployment in areas where lithium-ion systems are impractical.

Sodium-ion selected for thermal safety and flexibility

Blue Whale Energy explained that sodium-ion cells from UNIGRID eliminate the need for active thermal controls.

The company said lithium-ion installations typically require advanced cooling, fire mitigation, and housing infrastructure that increases costs and reduces feasibility in urban zones.

By contrast, UNIGRID’s sodium-ion batteries operate across a wide temperature range without active cooling, according to Blue Whale Energy.

Gabriel Lim, Founder and CEO of Blue Whale Energy, said: “This technology is a game changer for us.”
“With UNIGRID’s sodium-ion platform, we can deploy energy storage directly where energy is needed – on commercial and industrial rooftops throughout urban cities where space constraints previously made installations unfeasible.”
“This allows us to turn every roof into a dispatchable grid asset.”

Partnership to scale Southeast Asia’s virtual power plants

The two companies have confirmed that the 2025 deployment will serve as a launch platform for broader rollout in 2026.

The initiative will form part of Blue Whale Energy’s development of a distributed virtual power plant (VPP) model across Southeast Asia.

UNIGRID CEO Darren H. S. Tan said: “We’re proud to support Blue Whale in building Southeast Asia’s virtual power plant network, powered by distributed renewable energy and safe storage.”
“Such an approach allows us to open up new and untapped market opportunities in the BESS world.”

Blue Whale Energy confirmed that the VPP strategy is based on turning underused rooftop space into grid-connected assets.

The firm said sodium-ion’s safety profile makes it viable for urban VPP rollout in a way that lithium-ion cannot match.

Regulatory and economic factors drive solar-plus-storage

Blue Whale Energy noted that falling solar costs and policy incentives are driving up installation rates across the region.

The firm said that while solar adoption is growing, many grids cannot absorb the influx of power during daylight hours without storage support.

UNIGRID added that flexible storage infrastructure is increasingly necessary to maintain system reliability.

According to Blue Whale Energy, the mismatch between peak demand and solar generation has created a need for BESS integration.

It said sodium-ion storage enables better alignment between generation and consumption while reducing fire risk.

First deployments planned for late 2025

Blue Whale Energy stated that the initial 8 MWh rollout is scheduled for completion by the end of 2025.

The project will focus on commercial and industrial rooftops in dense city locations.

Both companies said they intend to scale deployments to additional sites in 2026 and beyond.

They confirmed that future projects will be based on the same compact rooftop installation model.

According to Blue Whale Energy, long-term goals include wider adoption across Southeast Asia in support of national energy transition strategies.

Blue Whale and UNIGRID to deploy rooftop BESS in Southeast Asia: Summary

Blue Whale Energy has partnered with UNIGRID to deliver rooftop BESS in Southeast Asia.

The companies will deploy 8 MWh of sodium-ion rooftop battery systems by the end of 2025.

The storage units will be co-located beneath commercial and industrial solar arrays in urban areas.

Blue Whale Energy said sodium-ion was selected for its thermal safety and ability to operate without cooling.

UNIGRID confirmed the batteries will support distributed virtual power plant development across Southeast Asia.

The companies said the strategy addresses limitations of lithium-ion in cities, such as fire safety and space needs.

Blue Whale Energy said the solution aligns with rising solar adoption and the need to balance grid supply.

The firm said the approach turns rooftops into grid assets that store and dispatch energy.

Both companies plan to expand installations from 2026 onwards.

The news was reported by Blue Whale Energy on 26 June 2025.

Huawei launches ESS safety initiative in China

Industry collaboration drives ESS safety improvements

Huawei has reported that the Grid Forming & ESS Safety Forum was held in Shanghai on 12 June 2025 to address safety standards, technology trends and operational practices within the global energy storage sector.

According to Huawei, the event included contributions from insurance providers, partners, testing bodies, and customers across the photovoltaic and energy storage industries.

During the event, Huawei Digital Power announced the launch of the ESS Safety Initiative.

The initiative aims to develop internationally recognised safety levels and performance benchmarks for energy storage systems.

Huawei said the ESS Safety Initiative was launched in cooperation with customers, certification organisations, and insurers.

Safety design and grid-forming capability at the centre of Huawei’s approach

Huawei Digital Power President of Smart PV & ESS Product Line Steven Zhou said grid-forming ESS technology is becoming increasingly relevant as the global energy transition continues.

Zhou said: “A grid-forming ESS, with its excellent grid-supporting capability, has become a cutting-edge and popular technology.”

“Moreover, ESS safety is the top priority for the sustainable development of the industry.”

“Huawei Digital Power has just launched the brand-new FusionSolar 9.0 Smart PV+ESS solution, promoting grid-forming technology from ESS to PV+ESS and across all scenarios, thereby achieving comprehensive applications.”

Huawei explained that its Smart String Grid-Forming ESS technology was tested in Qinghai and Xizang and applied in GW-level deployments.

According to Huawei, four main technical challenges still affect commercial rollouts: device parallel stability, oscillation damping, overload resilience, and safety.

Huawei said its technology covers the entire power system lifecycle.

Test results shared from grid-forming project in Southeast Asia

Huawei said TÜV SÜD conducted field testing on a utility-scale project in Cambodia, using its PV+ESS system.

The company stated that tests were carried out in line with PPP 58232 standards.

According to Huawei, these tests demonstrated grid stability and helped lay the groundwork for future deployments across Southeast Asia.

Industry stakeholders including Wood Mackenzie’s APAC Research Director Robert Liew and VDE’s Patrick Zank addressed market readiness and standardisation efforts.

Representatives from SchneiTec and TÜV SÜD also shared insights on how ESS infrastructure is evolving in Southeast Asian power systems.

Huawei outlines safety features across entire ESS lifecycle

Huawei Digital Power President of Grid-Forming ESS Business Steve Zheng said ESS units face risks due to electrochemical inconsistency, grid fluctuation, and digital monitoring gaps.

To address this, Huawei has introduced a layered safety system combining battery design, architecture control, and monitoring.

Zheng said: “ESSs have three typical characteristics: high density, high voltage, and high current.”

“During the lifecycle, the electrochemical inconsistency, grid uncertainty, and insufficient digital management capabilities of ESSs may cause great safety risks.”

Huawei explained that its system includes the Panshi battery pack, which uses triple-layer insulation to reduce arc, thermal and fire risk.

The system’s two-stage string architecture aims to prevent backfeed and support power ride-through.

Huawei said its digital platform enables pre-emptive alerts up to one week in advance and supports over 30 fault classifications.

Empirical safety tests conducted with DNV

Huawei reported that testing carried out at the Huawei Dongguan Grid-Forming ESS Comprehensive Lab involved simulations of fire, water and thermal conditions.

The tests were conducted with DNV and focused on four ESS safety criteria: non-flammable, non-explosive, non-spreading, and non-harmful.

Huawei said its technology also meets additional grid, load, and environmental compatibility benchmarks.

The company stated that these tests support the goals of the ESS Safety Initiative by providing measurable safety standards across all system components.

According to Huawei, ongoing engagement with industry partners is intended to develop global ESS fire suppression guidelines and establish lifecycle-wide risk management procedures.

Huawei confirmed its intention to continue supporting grid integration and renewable energy adoption through the PV+ESS solution.

Huawei launches ESS safety initiative in China: Summary

Huawei has reported that the Grid Forming & ESS Safety Forum took place in Shanghai on 12 June 2025.

The forum brought together customers, partners, insurers, and testing organisations.

Huawei launched the ESS Safety Initiative during the event.

The company said this initiative focuses on safety visibility and management across the full ESS lifecycle.

Huawei outlined four ESS safety standards: non-flammable, non-explosive, non-spreading, and non-harmful.

Huawei confirmed that empirical testing was carried out with DNV and TÜV SÜD.

Huawei presented its Smart String Grid-Forming ESS and FusionSolar 9.0 PV+ESS solution.

According to Huawei, grid-forming ESS is key to future grid stability.

The company said its technology was tested in projects in Qinghai, Xizang, and Cambodia.

Huawei identified four commercialisation challenges for ESS: device stability, oscillation damping, overload support, and system safety.

Huawei highlighted its layered battery, architecture, and monitoring system.

The firm confirmed that its solution meets grid, load, and environmental compatibility standards.