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Analysis of Li-Ion Battery Gases Vented in an Inert Atmosphere Thermal Test Chamber

机译:惰性气氛热试验箱中排出的锂离子电池气体的分析

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One way to support the development of new safety practices in testing and field failure situations of electric vehicles and their lithium-ion (Li-ion) traction batteries is to conduct studies simulating plausible incident scenarios. This paper focuses on risks and hazards associated with venting of gaseous species formed by thermal decomposition reactions of the electrolyte and electrode materials during thermal runaway of the cell. A test set-up for qualitative and quantitative measurements of both major and minor gas species in the vented emissions from Li-ion batteries is described. The objective of the study is to measure gas emissions in the absence of flames, since gassing can occur without subsequent fire. Test results regarding gas emission rates, total gas emission volumes, and amounts of hydrogen fluoride (HF) and CO 2 formed in inert atmosphere when heating lithium iron phosphate (LFP) and lithium nickel-manganese-cobalt (NMC) dioxide/lithium manganese oxide (LMO) spinel cell stacks are presented and discussed. Important test findings include the large difference in total gas emissions from NMC/LMO cells compared to LFP, 780 L kg ?1 battery cells, and 42 L kg ?1 battery cells, respectively. However, there was no significant difference in the total amount of HF formed for both cell types, suggesting that LFP releases higher concentrations of HF than NMC/LMO cells.
机译:在电动汽车及其锂离子(Li-ion)牵引电池的测试和现场故障情况下,支持开发新的安全措施的一种方法是进行模拟可能发生的事件的研究。本文着眼于与因电池热失控期间电解质和电极材料的热分解反应而形成的气态物质排出有关的风险和危害。描述了一种用于定性和定量测量锂离子电池排放气体中主要和次要气体种类的测试装置。这项研究的目的是在没有火焰的情况下测量气体排放,因为放气可以在没有随后发生的火灾的情况下发生。关于气体排放速率,总气体排放量以及加热磷酸铁锂(LFP)和锂镍锰钴(NMC)二氧化钛/锂锰氧化物时在惰性气氛中形成的氟化氢(HF)和CO 2量的测试结果(LMO)尖晶石细胞堆栈介绍和讨论。重要的测试结果包括NMC / LMO电池的总气体排放量与LFP,780 L kg?1电池组和42 L kg?1电池组相比差异很大。但是,两种细胞类型形成的HF总量没有显着差异,这表明LFP释放的HF浓度高于NMC / LMO细胞。

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