The Lithium-Ion Battery Conundrum: Beyond Code Compliance to Effective Fire Suppression
Lithium-ion batteries have changed the fire environment. Electric vehicles, e-bikes, electric buses, energy storage systems, and high-density battery storage can introduce hazards that challenge traditional fire suppression strategies, including thermal runaway, cell-to-cell propagation, toxic gases, reignition, contaminated runoff, and prolonged incidents.
This four-hour course examines lithium-ion battery fires through a critical question: Are we simply code compliant, or are we prepared for the actual hazard? Participants will explore the science behind thermal runaway and hazardous gas production, evaluate traditional suppression and defensive strategies, and examine the operational, environmental, life-safety, and transportation consequences of lithium-ion battery incidents.
The course also examines emerging suppression approaches, including encapsulator technology and water-mist delivery. International research, full-scale testing, applicable performance criteria, and real-world case studies are used to evaluate how these technologies may be applied in fire department operations and engineered fixed fire-suppression systems.
This course is for:
What You'll Learn:
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Explain thermal runaway, cell-to-cell propagation, reignition, and other hazards associated with lithium-ion battery fires
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Evaluate suppression strategies based on thermal-runaway control, propagation, water consumption, environmental impact, and operational consequences
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Examine lessons from electric vehicle, micromobility, energy storage, and battery facility incidents
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Understand encapsulator technology, including its role in heat transfer, penetration, encapsulation, and thermal-runaway control
Course Format: