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New energy fire protection solutions for energy storage power stations and lithium‑battery battery‑swapping stations

Release Date:

2026-07-23


(1) Applicable Scenarios

Photovoltaic energy storage container, commercial and industrial energy storage module, lithium‑battery battery‑swapping station, lithium‑battery R&D laboratory, energy storage distribution cabinet, and battery‑cluster storage module.

(II) Pain Points of Fire Safety in Venues

1. Lithium batteries pose a high risk of thermal runaway; once ignited, they maintain extremely high temperatures and have an exceptionally high likelihood of reigniting.

2. Conventional heptafluoropropane has limited cooling capacity and cannot effectively suppress the high-temperature combustion of lithium batteries.

3. New energy projects are subject to stringent carbon-neutral and low-carbon environmental requirements; high‑global‑warming‑potential fire suppressants cannot pass environmental impact assessments.

4. Energy storage compartments are typically enclosed spaces; in the event of a fire, toxic fumes can accumulate, preventing personnel from conducting firefighting operations at close range.

(3) Configuration of Supporting Products

1. Main protection for the energy storage module: cabinet-type prefabricated heptafluoropropane fire suppression system;

2. Internal protection of a single battery cabinet: perfluorohexanone fire suppression module with miniature fire detection tubes;

3. Energy Storage Step-Up Distribution Room: IG100 pure nitrogen piped‑network fire suppression system;

4. Auxiliary detection and fire suppression equipment: explosion-proof temperature-sensing optical fiber, suspended perfluorohexanone fire suppression system;

5. Long-distance open-flame handling equipment: a remotely operated firefighting robotic dog.

(IV) Core Advantages of the Plan

1. Perfluorohexanone exhibits outstanding endothermic cooling performance, rapidly suppresses thermal runaway in lithium batteries, and effectively prevents re-ignition.

2. ODP=0, GWP=1; low-carbon and environmentally friendly, meeting the environmental impact assessment and carbon neutrality acceptance criteria for new energy projects.

3. The equipment supports integrated pre‑installation in a container, requiring only simple electrical and piping connections on site, thereby significantly shortening the construction schedule.

4. It can be seamlessly integrated with an energy storage BMS, enabling bidirectional communication; in the event of abnormal battery overheating, it automatically disconnects the power supply and initiates the fire suppression sequence.

5. Equipped with a full suite of fire safety and 3C certifications for the new energy industry, along with third-party testing reports, to meet grid-connection acceptance requirements.

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