Engineered to Stop Thermal Runaway Propagation TRP at the Source
Advanced Fire Safety for Lithium-ion BESS.
Third-Party Validated. At Scale.
Most fire protection systems for battery energy storage are validated through simulation, component-level testing, or small-scale bench tests. MCEE's LBF System has been validated differently: through live-fire testing at the scale and cell format of real deployments, witnessed and documented by DEKRA, one of the world's leading independent testing and certification organisations.
No propagation. No re-ignition.
As BESS scales toward 5 MWh and beyond, extinguishing flames is no longer sufficient. The critical requirement is stopping thermal runaway from propagating beyond the initial failure point.
The LBF System is engineered for that intervention, before the cascade begins.
In DEKRA-witnessed container-level testing at 530Ah LFP scale: no propagation to adjacent modules, no open flames, no re-ignition. All non-initiating modules electrically intact.
NFPA 855 (2026) now formally defines Thermal Runaway Propagation Protection as a named safety category. Our test data was generated at the scale this standard addresses.
Our Partner
Our mission is to confront potential safety risks, and react in time to enhance safety for every individual.



The LBF System: Precision-Engineered Protection for Large-Scale BESS
Engineered to stop thermal runaway at the source, not just mitigate it. Our PFAS-free cooling technology is independently witnessed and documented by DEKRA at 530Ah LFP container scale: 5 MWh, no propagation, no re-ignition.
Product Application Cases
Lithium-ion BESS
Tested and effective on 280Ah, 306Ah, and 530Ah lithium-ion batteries on cell-level, rack-level, and indoor/outdoor standalone BESS.
Petrochemical Industry
Successfully tested and proven effective in extinguishing 10 tons of crude oil burning in a 100㎡ open oil pool fire.
AIDC
In the world of AI, uptime is the only metric that matters. MCEE provides the holistic suppression required to keep HVDC-powered data centers operational, even under the most extreme thermal events.
Rubber Tyre
Demonstrated effective suppression of 800+ stacked tires burning in a 1m³ volume—an exceptionally challenging, high-heat fire scenario.
Extinguishing Time: 50 Seconds
Methanol
Proven effective in extinguishing a 1.5-ton methanol pool fire over 9 m²—an intense Class B scenario characterized by rapid flame spread and high volatility.
Extinguishing Time: 60 Seconds
Beyond Water: Precision Chemistry
PFAS-free Cooling Agent for Safer Energy. Heat Extraction at the Source.
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Stay tuned for further live fire testing.