Modeling the effects of state of charge and temperature on calendar capacity loss of nickel-manganese-cobalt lithium-ion batteries

IF 8.9 2区 工程技术 Q1 ENERGY & FUELS Journal of energy storage Pub Date : 2022-05-01 DOI:10.1016/j.est.2022.104105
Boman Su , Xinyou Ke , Chris Yuan
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引用次数: 7

Abstract

Lithium-ion (Li-ion) batteries with nickel-manganese-cobalt (NMC) cathode and graphite anode are popularly used in portable electronic devices and electric vehicles. Calendar loss of the lithium-ion battery is a dominating factor in battery degradation during long-term usage. However, only a few physics-based modeling works were reported on studying the calendar capacity loss of NMC-graphite Li-ion batteries, while none of them can depict the complete voltage behavior during the storage period. In this work, a Pseudo-2D model for an NMC-graphite Li-ion battery was developed and applied to investigate its calendar loss behavior. Various factors affecting the calendar loss of the NMC-graphite batteries were systematically studied, with the results validated using experimental data of a Sanyo 18,650 cylindrical cell. It was found that at 25 °C working temperature and 100% state of charge (SOC), the capacity drops 6.3% of its original capacity after 10 months. Our simulation results demonstrate that a lower SOC and a proper cell working temperature could prolong the battery life during the storage period. This modeling work can help improve understanding of the calendar loss behavior of NMC-graphite Li-ion batteries and provide valuable guidance for battery performance optimization in the future.

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模拟充电状态和温度对镍锰钴锂离子电池日历容量损失的影响
镍锰钴(NMC)阴极和石墨阳极的锂离子(Li-ion)电池广泛应用于便携式电子设备和电动汽车。锂离子电池的日历损耗是电池在长期使用过程中退化的主要因素。然而,研究nmc -石墨锂离子电池日历容量损失的基于物理的建模工作报道很少,而且没有一个能够完整地描述存储期间的电压行为。在这项工作中,建立了nmc -石墨锂离子电池的伪二维模型,并应用于研究其日历损耗行为。系统研究了影响nmc -石墨电池日历损耗的各种因素,并利用三洋18650圆柱电池的实验数据对结果进行了验证。研究发现,在25°C的工作温度和100%的充电状态(SOC)下,10个月后容量下降了6.3%。仿真结果表明,较低的SOC和适当的电池工作温度可以延长电池在存储期间的使用寿命。这项建模工作有助于提高对nmc -石墨锂离子电池日历损耗行为的理解,并为未来电池性能优化提供有价值的指导。
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来源期刊
Journal of energy storage
Journal of energy storage Energy-Renewable Energy, Sustainability and the Environment
CiteScore
11.80
自引率
24.50%
发文量
2262
审稿时长
69 days
期刊介绍: Journal of energy storage focusses on all aspects of energy storage, in particular systems integration, electric grid integration, modelling and analysis, novel energy storage technologies, sizing and management strategies, business models for operation of storage systems and energy storage developments worldwide.
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