主管:中华人民共和国应急管理部
主办:应急管理部天津消防研究所
ISSN 1009-0029  CN 12-1311/TU

消防科学与技术 ›› 2026, Vol. 44 ›› Issue (1): 64-74.

• • 上一篇    下一篇

锂离子电池储能系统消防安全技术研究进展

余威   

  1. (国家消防救援局,北京100097)
  • 收稿日期:2025-10-28 修回日期:2025-12-08 出版日期:2026-01-15 发布日期:2026-01-15
  • 作者简介:余 威,国家消防救援局应急通信和科技司司长,高级专业技术职务,主要从事消防科技信息化管理工作,近年来聚焦新能源火灾防治战略与前沿技术研究,yw9119@126.com。

Research progress on fire safety technology for lithium-ion battery energy storage system

Yu Wei   

  1. (National Fire and Rescue Administration, Beijing 100097, China)
  • Received:2025-10-28 Revised:2025-12-08 Online:2026-01-15 Published:2026-01-15

摘要: 锂离子电池储能作为新型储能的核心技术,在推动能源转型和实现“双碳”目标中具有战略意义。然而,随着装机容量的快速增长,储能系统火灾安全问题日益突出,严重制约产业健康发展。本文系统分析了全球典型储能火灾事故案例,总结事故特征与致灾机理;从本质安全、热失控机理、监测预警和灭火抑爆4个维度,全面梳理了储能安全技术研究现状与发展趋势。在本质安全方面,固态电池技术和材料体系改性研究持续推进;热失控机理研究已从单一特征分析发展到多物理场耦合和跨尺度预测研究;监测预警技术正向多参数融合和智能诊断方向演进;灭火技术从单一灭火剂转向协同策略与精准防控。研究表明,未来储能消防安全技术将朝着本质安全根基化、机理研究系统化、预警诊断智能化和灭火防控精准化的方向协同发展,为构建高安全性的储能系统提供技术支撑。

关键词: 储能系统, 锂离子电池, 消防安全, 技术现状, 趋势

Abstract: Lithium-ion battery energy storage, as the core technology of new energy storage, holds strategic significance in promoting energy transition and achieving the "dual carbon" goals. However, with the rapid growth of installed capacity, fire safety issues of energy storage systems have become increasingly prominent, seriously restricting the safety development of this industry. This paper systematically analyzes typical global energy sto- rage system fire cases, summarizes accident characteristics and disaster-causing mechanisms; and comprehensively reviews the research status and development trends of energy storage safety technologies from four dimensions: intrinsic safety, thermal runaway mechanism, monitoring and early warning, and fire suppression and explosion prevention. In terms of intrinsic safety, research on solid-state battery technology and modification of material systems continues to advance; research on thermal runaway mechanisms has evolved from single-characteristic analysis to multi-physics field coupling and cross-scale prediction studies; monitoring and early alarm technologies are moving towards multi-parameter fusion and intelligent diagnosis; fire extinguishing technologies are shifting from comparison of using single fire extinguishing agents to multi-agent application and precise suppression and control. The research indicates that future energy storage fire technologies will develop in a coordinated manner towards the directions of intrinsic safety foundation, systematic mechanism research, intelligent early alarm and diagnosis, and precise fire extinguishing, providing technical support for building high-level safety energy storage systems.

Key words: energy storage system, lithium-ion batteries, fire safety, current technological status, trends