电池(电)
阿累尼乌斯方程
航程(航空)
材料科学
大气温度范围
活化能
动能
汽车工程
电流(流体)
能量(信号处理)
工作温度
二次方程
热力学
温度测量
温度系数
功能(生物学)
核工程
环境科学
计算机科学
二次函数
高效能源利用
电气工程
价值(数学)
学位(音乐)
作者
Maurizio Bressan,Elena Campagnoli,Valter Giaretto
出处
期刊:Batteries
[Multidisciplinary Digital Publishing Institute]
日期:2025-11-26
卷期号:11 (12): 439-439
被引量:1
标识
DOI:10.3390/batteries11120439
摘要
The current energy transition highlights the importance not only of energy production, but also of its efficient storage, for which lithium-ion batteries are currently the leading technology. In many applications, these devices operate outdoors at temperatures below 0 °C, and consequently, their performance is reduced due to the lower mobility of the ions. With the aim of evaluating this decrease in performance, measurements were carried out on a commercial LiFePO4 module in the temperature range −20–+55 °C. The results show that the battery capacity decreases by 15% compared to the value measured at room temperature when the operating temperature drops to approximately −10 °C, and by 35% at approximately −20 °C. The paper also introduces a modified version of the Arrhenius kinetic model that allows for the analytical evaluation of the change in battery capacity as a function of temperature. The modified model proposes a quadratic dependence of the activation energy on the temperature through a temperature coefficient that for the two tested modules is equal to 8.0 × 10−5 eV/K2 and 6.7 × 10−5 eV/K2, respectively.
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