Thermal runaway caused fire and explosion of lithium ion battery

作者: Qingsong Wang , Ping Ping , Xuejuan Zhao , Guanquan Chu , Jinhua Sun

DOI: 10.1016/J.JPOWSOUR.2012.02.038

关键词:

摘要: Lithium ion battery and its safety are taken more consideration with fossil energy consuming the reduction requirement of CO2 emission. The problem lithium is mainly contributed by thermal runaway caused fire explosion. This paper reviews hazards, theory, basic reactions, models, simulations experimental works firstly. general theory proposed detailed reactions summarized, which include solid electrolyte interface decomposition, negative active material reaction, positive binder so on. models or electrochemical-thermal one, two three dimensional can be simulated finite element method volume method. And then related prevention techniques simply summarized discussed on inherent methods device methods. Some perspectives outlooks enhancement for future development. Language: en

参考文章(207)
M. Sievers, U. Sievers, S. S. Mao, Thermal modelling of new Li-ion cell design modifications Forschung Im Ingenieurwesen-engineering Research. ,vol. 74, pp. 215- 231 ,(2010) , 10.1007/S10010-010-0127-Y
Dong H. Jang, Seung M. Oh, Electrolyte Effects on Spinel Dissolution and Cathodic Capacity Losses in 4 V Li / Li x Mn2 O 4 Rechargeable Cells Journal of The Electrochemical Society. ,vol. 144, pp. 3342- 3348 ,(1997) , 10.1149/1.1838016
Carolyn R. Pals, John Newman, Thermal Modeling of the Lithium/Polymer Battery I . Discharge Behavior of a Single Cell Journal of The Electrochemical Society. ,vol. 142, pp. 3274- 3281 ,(1995) , 10.1149/1.2049974
Carolyn R. Pals, John Newman, Thermal modeling of the lithium/polymer battery. II: Temperature profiles in a cell stack Journal of The Electrochemical Society. ,vol. 142, pp. 3282- 3288 ,(1995) , 10.1149/1.2049975
Yonggang Wang, Ping He, Haoshen Zhou, Olivine LiFePO4: development and future Energy and Environmental Science. ,vol. 4, pp. 805- 817 ,(2011) , 10.1039/C0EE00176G
J.-M. Tarascon, M. Armand, Issues and challenges facing rechargeable lithium batteries Nature. ,vol. 414, pp. 359- 367 ,(2001) , 10.1038/35104644
Rajib Mahamud, Chanwoo Park, Reciprocating air flow for Li-ion battery thermal management to improve temperature uniformity Journal of Power Sources. ,vol. 196, pp. 5685- 5696 ,(2011) , 10.1016/J.JPOWSOUR.2011.02.076
Dong Hyup Jeon, Seung Man Baek, Thermal modeling of cylindrical lithium ion battery during discharge cycle Energy Conversion and Management. ,vol. 52, pp. 2973- 2981 ,(2011) , 10.1016/J.ENCONMAN.2011.04.013