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深入分析大型锂离子电池电解质中使用的溶剂的安全性。

In-depth safety-focused analysis of solvents used in electrolytes for large scale lithium ion batteries.

机构信息

Institut National de l'Environnement Industriel et des Risques (INERIS), Parc Technologique Alata, Verneuil-en-Halatte, France.

出版信息

Phys Chem Chem Phys. 2013 Jun 21;15(23):9145-55. doi: 10.1039/c3cp51315g. Epub 2013 May 7.

Abstract

To better rule out the complex fire risk related to large format lithium ion cells, a detailed and systematic evaluation, both at component and cell levels, could be an invaluable milestone. Therefore, combustion analysis was conducted for major single organic solvents and their mixtures used in lithium ion battery technology, both in oxygen rich and lean environments using a Tewarson calorimeter. Well controlled test conditions have enabled the determination of key parameters governing the fire induced hazards such as flash point, ease of ignition, heat release rate, effective heat of combustion, specific mass loss rate, as well as the assessment of fire induced toxicity. Moreover, a rule of thumb for the screening of new solvents including the safety perspective such as the Boie correlation and N-factor were introduced for predicting the heat of combustion and combustion kinetics, respectively, prior to conducting any experimental work. Fire induced toxicity of single solvents and their mixtures was also briefly examined by performing toxic gas measurements.

摘要

为了更好地排除与大尺寸锂离子电池相关的复杂火灾风险,在组件和电池级别进行详细而系统的评估可能是一个非常有价值的里程碑。因此,使用 Tewarson 量热仪在富氧和贫氧环境中对锂离子电池技术中使用的主要有机溶剂及其混合物进行了燃烧分析。通过良好控制的测试条件,可以确定控制火灾风险的关键参数,如闪点、点火容易度、热释放率、有效燃烧热、比质量损失率以及火灾诱导毒性的评估。此外,引入了包括安全性观点在内的新溶剂筛选规则,如 Boie 相关和 N 因子,分别用于在进行任何实验工作之前预测燃烧热和燃烧动力学。通过进行有毒气体测量,还简要检查了单一溶剂及其混合物的火灾诱导毒性。

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