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胺类添加剂对NCM811||SiC电池热失控抑制效果研究
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作者 侯博文 何龙 +3 位作者 冯旭宁 张伟峰 王莉 何向明 《电化学(中英文)》 CAS 北大核心 2023年第8期13-20,共8页
高镍三元电池的高能量密度是取代化石能源,推动清洁能源发展的核心优势,同时也是导致电池严重安全隐患的根本原因。初级胺类与次级胺类能与常见的含碳酸乙烯酯电解液发生开环聚合,从而形成正负极间隔离层,提高电池热安全性。本文基于胺... 高镍三元电池的高能量密度是取代化石能源,推动清洁能源发展的核心优势,同时也是导致电池严重安全隐患的根本原因。初级胺类与次级胺类能与常见的含碳酸乙烯酯电解液发生开环聚合,从而形成正负极间隔离层,提高电池热安全性。本文基于胺类和电池组分间的化学反应,在电池材料层面和单体层面对电池的安全性展开了研究。在材料层面,利用差示扫描量热法测试锂离子电池中有无胺类添加剂对不同组分间的热稳定性影响。在单体层面,使用绝热加速量热仪对有无添加剂全电池的安全性进行测试,提取热失控特征温度。加入胺类添加剂后电池组分间部分化学反应被提前,同时总放热量明显减少,最大温升速率下降,电池热失控得到有效抑制。 展开更多
关键词 锂电池 热失控抑制 电解液 开环聚合
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Numerical Analysis of Explosion Characteristics of Vent Gas From 18650 LiFePO_(4)Batteries With Different States of Charge
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作者 Shi-Lin Wang Xu Gong +5 位作者 Li-Na Liu Yi-Tong Li Chen-Yu Zhang Le-Jun Xu xu-ning feng Huai-Bin Wang 《电化学(中英文)》 CAS 2024年第8期28-35,共8页
The combustion and explosion characteristics of lithium-ion battery vent gas is a key factor in determining the fire hazard of lithium-ion batteries.Investigating the combustion and explosion hazards of lithium-ion ba... The combustion and explosion characteristics of lithium-ion battery vent gas is a key factor in determining the fire hazard of lithium-ion batteries.Investigating the combustion and explosion hazards of lithium-ion batteries vent gas can provide guidance for rescue and protection in explosion accidents in energy storage stations and new energy vehicles,thereby promoting the application and development of lithium-ion batteries.Based on this understanding and combined with previous research on gas production from lithium-ion batteries,this article conducted a study on the combustion and explosion risks of vent gas from thermal runaway of 18650 LFP batteries with different states of charge(SOCs).The explosion limit of mixed gases affected by carbon dioxide inert gas is calculated through the“elimination”method,and the Chemkin-Pro software is used to numerically simulate the laminar flame speed and adiabatic flame temperature of the battery vent gas.And the concentration of free radicals and sensitivity coefficients of major elementary reactions in the system are analyzed to comprehensively evaluate the combustion explosion hazard of battery vent gas.The study found that the 100%SOC battery has the lowest explosion limit of the vent gas.The inhibitory elementary reaction sensitivity coefficient in the reaction system is lower and the concentration of free radicals is higher.Therefore,it has the maximum laminar flame speed and adiabatic flame temperature.The combustion and explosion hazard of battery vent gas increases with the increase of SOC,and the risk of explosion is the greatest and most harmful when SOC reaches 100%.However,the related hazards decrease to varying degrees with overcharging of the battery.This article provides a feasible method for analyzing the combustion mechanism of vent gas from lithium-ion batteries,revealing the impact of SOC on the hazardousness of battery vent gas.It provides references for the safety of storage and transportation of lithium-ion batteries,safety protection of energy storage stations,and the selection of related fire extinguishing agents. 展开更多
关键词 Combustion and explosion characteristics Explosion limit Laminar flame speed Adiabatic flame temperature Sensitivity analysis
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