Battery Energy Storage Roadmap/SAFE
SAFE battery energy storage uses proven hazard mitigations and leading practices across the project life cycle that address safety risks and comply with codes to uphold public and worker health and safety, environmental justice, and equity.
Aspects of the Future State
A future in which battery energy storage is SAFE requires:
- Hazard characterization, including research in material safety at various operating conditions, for commercial and emerging BESS technologies for improved risk assessment and implementation of safety strategies that consider all project stakeholders.
- Innovation upon existing fire and explosion prevention and protection knowledge to develop applicable monitoring and modeling tools, effective technology solutions, and relevant emergency action plans.
- Collaboration and sharing of experiences to advance common leading practices across the industry and enhance the development of sensible and comprehensive codes, standards, and regulations.
- Community authorities (authorities having jurisdiction) to be equipped with the necessary resources and tools to ensure battery energy storage upholds public health, safety, environmental justice, and equity.
- Engagement, education, and effective communication with the public to share safety strategies that consider BESS benefits, risks, and community concerns.
Current State and Gaps
The Current State of safety related to each project Life Cycle Phase gives context to the identified Gaps that EPRI and others can address to advance deployment of safe battery energy storage.
Life Cycle Phase | Current State | Gaps |
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Planning | Potential opposition from agencies and communities that may be unaware or misinformed about the environmental, health, and safety (EH&S) attributes of BESS creates challenges in facility siting and permitting. |
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Procurement | Overall BESS safety can be improved with uniform system designs but is delayed by inconsistent jurisdictional requirements and underdeveloped safety guidance for emerging technology hazards and risk. |
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Deployment & Integration | Discordant development schedules for battery energy storage technologies and the codes, standards, and regulations needed to enforce safety are a cyclic obstacle that slows mutually beneficial advancements needed to accelerate and bolster safety in BESS deployments. |
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Operations & Maintenance | Maintaining safe operation that does not compromise system reliability and profitability requires improved monitoring, data, and documentation of existing systems. |
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Decommissioning | Safe BESS decommissioning practices are not well characterized nor developed, especially for damaged energy storage systems, and guidance is lacking as few systems have yet reached end-of-life (EOL). |
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EPRI's Role in SAFETY
EPRI is engaged in applied research and project activities for BESS safety. The projects listed below are a representative sample from the breadth of EPRI’s activities related to this Future State Pillar. EPRI resources related to BESS safety can be found on the EPRI resources page.