LiNova Energy launches zero fire risk metal-free battery cell for data centres

LiNova Energy has launched PolyPower, a metal-free polymer cathode battery cell with zero fire risk designed for data centre backup power applications, with the company stating that the technology removes thermal runaway risk at cell level.

The company said the product has been developed to address growing demand for high-power, low-risk energy storage as global data centre power requirements are projected to increase significantly by 2030.

Battery cell designed to reduce fire risk

  • High power density for high-rack-density data centre environments.
  • Intrinsic safety through a polymer cathode that evolves CO₂ rather than oxygen, according to LiNova.
  • Metal-free chemistry that avoids nickel, cobalt and other critical minerals.
  • Lower cathode costs, with the company claiming reductions of up to 90% compared with conventional materials.

PolyPower is based on LiNova’s proprietary polymer cathode, a metal-free active material made from mass-produced precursors. The company said the cathode can be sourced domestically in multiple regions and manufactured using existing lithium-ion production lines.

Mike Nagus, CEO of LiNova Energy, said: “The battery cathode is the most expensive and dangerous component in the stack, and has historically been the least reinvented. With its superior performance and zero fire risk, PolyPower represents a fundamental breakthrough in battery technology for mission-critical applications.”

LiNova said PolyPower was developed with a hyperscale data centre operator to meet requirements for next-generation battery backup units. Independent third-party testing at the University of California San Diego showed high-rate performance, with capacity retention exceeding hyperscaler benchmarks, according to the company.

Mike Ferry, Director of Energy Storage and Systems at the University of California San Diego, said: “Our testing results successfully demonstrate LiNova’s ability to instantly deliver high power and stable performance under stressful conditions without the degradation mechanisms seen in other battery cells.”

The high-power cell is currently available for testing in a pouch-format design. LiNova said a cylindrical format is expected in Q3 2026, with integration into hyperscaler-spec battery backup units planned for performance testing in Q4 2026.

One cell away from disaster: Why EV battery design could determine safety

Thermal incident risks linked to battery cell design, 24M Technologies says

24M Technologies has reported that thermal incidents are expected to increase as global electric vehicle (EV) numbers rise and battery energy density continues to grow.

The company cited forecasts projecting the global EV fleet to reach 250 million by 2030, up from around 40 million today.

According to 24M Technologies, some markets have already experienced a 33% increase in thermal incidents involving EVs.

It stated that while these events remain rarer than fires involving internal combustion engine (ICE) vehicles, they often pose greater risk, particularly when vehicles are stationary or charging.

The company warned that even if thermal incidents occur in just one of every 10,000 EVs, the annual total could reach 25,000 worldwide by the end of the decade.

Battery energy density and fast charging identified as major factors

24M Technologies stated that growing energy density, which helps increase range and boost EV adoption, also reduces the safety margin within battery cells.

The company added that manufacturing processes cannot eliminate risks such as contamination, which can contribute to thermal events.

It reported that internal short circuits are especially dangerous, as they are difficult to detect externally and can trigger overheating.

Naoki Ota, President and CEO at 24M Technologies, said: “The industry’s current safety challenges stem from decades-old battery design principles.

“While we’ve achieved remarkable progress in cost reduction and energy density, we’re still building upon architectures that have not fundamentally changed in more than 30 years.

“Process improvements alone cannot address these design limitations and multiple OEMs have faced costly recalls as a result.

“Rather than address these issues through add-on system features, safety must be incorporated as a foundational element at the core of the battery cell.”

24M Technologies noted that recalls related to EV fires can cost up to $1 billion per vehicle model line, putting financial pressure on manufacturers.

Dendrites and thermal runaway pose long-term fire hazards

The company reported that dendrite growth, which can occur during repeated charging cycles or due to fast charging at low temperatures, is a major risk factor for thermal incidents.

It explained that dendrites can cause short circuits and lead to thermal runaway, a process where a battery cell overheats and releases flammable gases.

24M Technologies stated that thermal runaway can happen in milliseconds and may spread to adjacent cells and the vehicle itself.

It added that once a thermal event begins, it cannot be stopped without intervention.

Naoki Ota continued: “The solution is to incorporate transformative in-cell fire prevention technology.

“24M’s pioneering Impervio system is uniquely capable of suppressing dendrites and neutralising thermal runaway before it can start.

“Unlike other technologies, Impervio not only monitors individual cells but prevents thermal incidents.

“The industry must shift from reactive measures to try to contain fires to proactive designs preventing failures before they occur.

“Without this step change approach, the safety and financial challenges will only intensify as EV adoption accelerates.”

Impervio technology designed to mitigate cell failure risks

24M Technologies stated that its Impervio technology aims to prevent thermal incidents by suppressing dendrite growth and detecting faults at the individual cell level.

Ulrik Grape, President, European Operations, at 24M Technologies [pictured] said: “Impervio offers a proactive solution for the world’s car makers, fundamentally changing how battery safety is approached through revolutionary new battery cell design.

“Controlling the cell at the individual electrode level, the Impervio separator actively suppresses dendrite growth within cells while enabling sophisticated monitoring capabilities for early fault and short-circuit detection.

“It can shut down a cell that is at risk – monitoring, preventing, containing – and represents a step change in safety while offering the capability to massively reduce risk and financial exposure.”

In a test, 24M compared two NMC/graphite cells charged to 100% and then overcharged.

The cell without Impervio developed dendrite-induced shorts after 15 minutes and exploded after 38 minutes.

The Impervio-equipped cell remained stable, with no short or fire after an hour of overcharging.

EV safety challenges linked to infrastructure and recall complexity

24M Technologies noted that although EVs are 20 times less likely to catch fire than ICE vehicles, thermal incidents often occur when vehicles are parked or charging.

It stated that such fires are difficult to extinguish due to internal chemical reactions and may reignite after hours or days.

The company explained that this creates challenges in buildings such as car parks, apartment blocks and shopping centres.

It added that Impervio technology supports targeted recalls, enabling manufacturers to isolate specific faulty units rather than entire vehicle lines.

24M Technologies stated that Impervio is compatible with lithium-ion, lithium metal and its proprietary LiForever cell platforms.

It reported that the technology can also improve state-of-health and end-of-life predictions, supporting battery reuse strategies.

The company confirmed it is working with several car makers and partners to integrate the system into future designs.

Thermal incident risks linked to battery cell design, 24M Technologies says: Summary

24M Technologies has warned that thermal incidents in electric vehicles are likely to increase as EV adoption and energy density grow.

The company cited data showing a 33% increase in thermal incidents in some markets.

It projected a potential global total of 25,000 EV fires per year by 2030.

Internal short circuits and dendrite growth were identified as key causes of thermal runaway.

24M stated that safety challenges stem from battery designs that have changed little in 30 years.

CEO Naoki Ota said a new approach is needed that addresses safety at the cell design level.

Impervio, the company’s in-cell safety system, aims to prevent dendrite formation and thermal runaway.

Testing showed Impervio cells withstood overcharging without catching fire.

The technology allows for continuous monitoring and cell-level shutdown to isolate faults.

It is compatible with existing lithium battery formats and 24M’s own LiForever cells.

The company stated that Impervio may help reduce recall costs by targeting only affected batteries.

24M is collaborating with car makers to integrate Impervio into next-generation batteries.

New product safety and metrology bill to address fire risks and enhance UK regulatory framework

Enhancing fire safety in product regulation

The Product Safety and Metrology Bill has been introduced to enhance the UK’s regulatory framework, focusing on fire risks associated with modern technology, as noted in the briefing notes for The King’s Speech 2024.

The Bill provides the UK with new powers to address contemporary safety issues, ensuring the supply of safe goods in the market.

It allows the UK to either align with or diverge from updated EU regulations, maintaining high product safety standards while fostering economic growth.

Addressing fire risks in new product regulations

The Bill outlines measures to support growth and protect consumers by addressing fire risks and opportunities.

It specifically targets fire risks associated with emerging technologies, such as e-bikes and lithium-ion batteries, responding to a 78% increase in e-bike fires in 2023 compared to 2022, according to the London Fire Brigade.

The Bill aims to clarify responsibilities within the supply chain, especially for online marketplaces, to better protect consumers.

By updating compliance and enforcement measures, the Bill aims to tackle non-compliance and enhance data sharing between regulators and market surveillance authorities, ensuring effective regulation of high-risk products.

Managing divergence from EU regulations in fire safety

Most product safety legislation in the UK currently derives from EU law.

The Bill grants the UK government the ability to manage divergence from EU regulations, applying changes to UK legislation where beneficial.

This move addresses the varying application of EU laws within the UK internal market due to the Windsor Framework, particularly affecting Northern Ireland.

The legislative framework covers nearly all manufactured products, impacting around 220,000 UK businesses with a market turnover of nearly £280 billion.

The Bill also updates the legal metrology framework to support technological progress, ensuring accuracy in weights and measures for purchased goods, which is crucial for national infrastructure and consumer confidence.

Enhancing compliance and enforcement in fire safety

To future-proof the UK’s regulatory capacity, the Bill proposes improvements in compliance and enforcement.

It aims to tackle challenges posed by modern, digital borders and enable better data sharing between regulators.

The Bill also seeks to update the legal metrology framework, crucial for national infrastructure and consumer confidence.

These updates will support innovation while maintaining accuracy in areas like energy meter readings.

Fire at South Korea lithium battery factory kills nine, leaves 15 missing

Deadly fire at South Korea lithium battery factory

A fire at a lithium battery manufacturing factory in Hwaseong city, near South Korea’s capital, left at least nine people dead, four injured, and 15 others missing, as reported by various sources.

The fire broke out on Monday morning around 10:30 a.m. local time.

According to local fire official Kim Jin-young, the fire, which has mostly been extinguished, began after a series of battery cells exploded inside a warehouse containing approximately 35,000 units.

Initial reports indicated one death and four injuries, with two of the injured in critical condition.

Subsequently, rescue workers retrieved eight more bodies, raising the death toll to nine.

Search for missing people

Efforts to locate the missing individuals are ongoing.

Kim Jin-young stated that the mobile phone signals of the missing people were traced to the second floor of the factory.

He noted that most of the missing individuals were foreign nationals, including Chinese workers.

At the time of the incident, 102 people were reported to be working at the factory.

The exact cause of the fire has yet to be determined.

South Korean media reported that much of the blaze has been controlled.

Factory operation and response

The factory, run by battery manufacturer Aricell, experienced the fire following an explosion of battery cells.

Kim Jin-young provided details in a televised briefing, confirming that nine people died and four others were injured, with two of them in critical condition.

Yonhap news agency reported that some 20 bodies were found, but official counts confirmed nine fatalities.

Emergency response teams are continuing their efforts to manage the situation and provide assistance to the injured.

The authorities are also working on identifying the exact cause of the fire and assessing the extent of the damage.

Safety measures and industry impact

The incident highlights the potential dangers associated with lithium battery manufacturing and storage.

Factories dealing with such materials are under scrutiny to ensure adherence to safety protocols to prevent similar occurrences.

The fire at the Aricell factory has raised concerns about safety measures in place at similar facilities.

The South Korean government is expected to review and possibly enhance regulations regarding the storage and handling of lithium batteries to prevent future incidents.

The focus will be on improving safety standards and emergency response mechanisms to protect workers and reduce the risk of fires.

NFPA seeks comments on development of battery safety standard

NFPA considers comprehensive battery safety standard

The National Fire Protection Association (NFPA) is considering the development of a comprehensive standard to address battery hazards.

As reported by NFPA, the proposed NFPA 800, Battery Safety Code, aims to provide uniform, minimum requirements for fire, electrical, life safety, and property protection related to battery technologies.

The increasing use of batteries in various applications, from consumer products to electric vehicles and energy storage systems, has led to a rise in fire incidents.

Although existing codes address some aspects of battery safety, there is no single standard covering the full spectrum of requirements.

NFPA 855, first released in 2019, addresses risks associated with stationary energy storage systems but does not cover general battery safety throughout the battery lifecycle.

Call for public comments

NFPA is seeking comments from interested organizations and individuals to determine support for the proposed standard.

The proposed NFPA 800 standard intends to reference existing related standards and develop new requirements to fill gaps, particularly in areas like fire and explosion risks associated with battery technologies.

Comments are being sought on the need for standards to address known battery hazards, ensure comprehensive safety throughout the battery lifecycle, and minimize losses and damages from current and future battery technologies.

Interested parties can submit their comments via email to stds_admin@nfpa.org by 12 July 2024.

Technical committee applications

In addition to public comments, NFPA is seeking potential candidates for a Technical Committee if the Standards Council approves the development of the proposed project.

Stakeholders interested in participating can submit an application online through NFPA’s website.

Applicants must be logged into NFPA.org to complete the application and provide comments supporting the project.

Further information about the proposed standards development on battery safety can be found at nfpa.org/batterysafety.

Importance of a comprehensive standard

The proposed NFPA 800 aims to address the gap in guidance for general battery safety beyond specific installations.

By establishing minimum requirements and referencing existing standards, NFPA hopes to create a safer environment and support local authorities in determining applicable codes and standards for battery hazards in their communities.

NFPA 855 currently serves as the primary reference within NFPA’s standards process for raising battery safety issues.

However, the expansion of battery use necessitates a more comprehensive approach to address the evolving risks associated with battery technologies.

IFSJ Comment

The consideration of a comprehensive battery safety standard by NFPA reflects the growing recognition of the risks associated with widespread battery use.

With incidents of fires and other hazards on the rise, the development of a unified standard like NFPA 800 could provide much-needed guidance to ensure safety across various battery applications.

By soliciting public comments and seeking technical committee members, NFPA is taking a proactive approach to involve stakeholders in the creation of these important safety standards.

NFPA highlights lithium-ion battery fire risks during National Electrical Safety Month

NFPA offers free resources to address fire risks from lithium-ion batteries

Lithium-ion batteries are commonly used in various daily devices like smartphones, laptops, and electric vehicles, leading to a noticeable rise in related fire incidents.

During National Electrical Safety Month, the focus from the National Fire Protection Association (NFPA) is on educating consumers about the potential dangers of lithium-ion batteries and offering guidance on their safe usage, charging, and storage.

The campaign, supported by the Electrical Safety Foundation International (ESFI), aims to enhance public awareness of electrical hazards, the significance of electrical fire safety, and electrical worker safety throughout May.

NFPA’s role and resources provided

The NFPA has joined forces with ESFI this month to distribute free educational materials aimed at reducing lithium-ion battery-related injuries and property damage.

These resources are designed for firefighters and first responders to use in community outreach, enhancing public safety measures.

Lorraine Carli, NFPA’s Vice President of Outreach and Advocacy, highlighted the importance of proper handling of lithium-ion batteries: “Lithium-ion batteries power the lives of millions of people every day, but what many consumers may not know is that these batteries can pose a fire risk if they are used or recharged improperly, are damaged, or fail to operate safely.

“During Electrical Safety Month, NFPA is taking action to help educate the public about ways they can protect their lithium-ion battery-powered devices and vehicles and safeguard their families and property.”

NFPA’s detailed resources and information availability

NFPA has made a variety of resources available to the public and first responders, including safety tip sheets, social media cards, and educational videos.

These are accessible through dedicated sections on their website, focusing on general lithium-ion safety, as well as specific considerations for e-bikes, e-scooters, and electric vehicles.

Furthermore, NFPA provides training and materials for emergency personnel on handling fires involving alternative fuel vehicles, highlighting their commitment to comprehensive safety education and resource provision.

IFSJ Comment

The NFPA’s proactive approach during National Electrical Safety Month plays a crucial role in mitigating the fire risks associated with lithium-ion batteries.

By providing extensive resources and engaging in public outreach, the NFPA not only enhances individual safety but also supports community resilience against potential fire incidents.

Such educational initiatives are essential for fostering a safer environment for the widespread use of lithium-ion batteries in various consumer devices and vehicles.

Office for Product Safety Standards takes action over e-bike batteries

The UK’s Office for Product Safety and Standards (OPSS) has taken decisive action against a hazardous e-bike battery, prompting significant attention in the realm of consumer safety.

This move comes in response to multiple fires linked to the UPP-manufactured battery.

OPSS takes enforcement action against dangerous e-bike battery

In a proactive response, the OPSS has issued Withdrawal Notices to four online marketplaces and 20 sellers, mandating the cessation of supply for the UPP battery.

Additionally, a notice was dispatched to the China-based manufacturer.

These steps signify the OPSS’s commitment to safeguarding consumers from potential harm.

Public safety prioritised in response to e-bike battery fires

The authorities have strongly advised consumers against using the UPP battery.

For those in possession of the product, the guidance is to contact the seller for redress.

Proper disposal is recommended at local recycling centres, though consumers should verify acceptance of such items at these facilities.

OPSS emphasises consumer awareness in safety measures

Graham Russell, Chief Executive of OPSS, highlighted the inherent dangers of these batteries and underscored the importance of heightened consumer awareness.

He said: “The safety of consumers is of the utmost importance, and we are committed to ensuring that dangerous products are removed from the market.”

IFSJ Comment

The OPSS’s action against the hazardous e-bike battery by UPP underscores the critical role of regulatory bodies in monitoring and acting on potentially dangerous consumer products.

This case serves as a reminder of the risks associated with certain technological advancements, particularly in emerging markets like e-bikes.

The swift response by the OPSS reflects a growing global emphasis on consumer safety and the proactive measures needed to protect the public.

The importance of such regulatory actions cannot be overstated, as they not only prevent immediate harm but also set a precedent for industry standards and consumer expectations.

US Coast Guard issues fire warning following electric vehicle salt water submersion

Following significant damage caused by hurricane Ian which flooding throughout Florida and the Southeastern United States, the US Coast Guard has issued a warning over the fire risk surrounding electric vehicles which have been exposed to salt water.

During the response and reconstitution after the hurricane, first responders encountered numerous vehicle fires involving Electronic Vehicles (EVs) that are powered by Lithium-Ion batteries. Investigations have revealed that the vehicle fires resulted from exposure of the Lithium Ion batteries to salt water.

Saltwater exposure can significantly degrade lithium-ion (Li-ion) batteries, causing a chemical reaction that creates an extreme fire. Review of vehicle registration records revealed there are over 7,000 electric vehicles (EVs) in Lee County, Florida with potential for damage.

The Coast Guard said that vessels, ports, and shippers should be aware of this extreme risk and avoid loading EVs with damaged Lithium-Ion onto commercial vessels.

The Coast Guard strongly recommends that vessels, ports, shippers, and regulators conduct a comprehensive review of the vehicle shipping requirements found in both the Hazardous Materials Regulations (49 CFR) and the International Maritime Dangerous Goods (IMDG) Code. All lithium batteries are hazardous materials regulated by the Department of Transportation’s Pipeline and Hazardous Materials Safety Administration (PHMSA). As such, they are required to comply with the Lithium Battery Guide for Shippers.

It also said that they should conduct review of additional requirements for shipping damaged lithium ion batteries located in the PHMSA Safety Advisory Notice for the Disposal and Recycling of Lithium Batteries in Commercial Transportation. Due to the large size of EV batteries, the packaging requirements to comply with damaged shipment regulations are inadequate.

As such, IMDG special provision 376 specifically requires approval from the competent authority (PHMSA or US Coast Guard) prior to shipment of damaged lithium batteries.

The Coast Guard said: “Remain vigilant and ensure damaged lithium-ion vehicle batteries are not loaded onto vessels for shipment, placed within port facilities, or enclosed in containers.”