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蔗糖基碳泡沫作为负极添加剂对高率部分荷电状态下铅酸电池性能的影响

Effect of sucrose-based carbon foams as negative electrode additive on the performance of lead-acid batteries under high-rate partial-state-of-charge condition.

作者信息

Xie Fazhi, Ma Yujia, Zhang Meng, Yang Shaohua, Dai Yuan, Fang Liang, Shao Yonggang

机构信息

School of Materials and Chemical Engineering, Anhui Jianzhu University, Hefei 230601, China.

School of Environment and Energy Engineering, Anhui Jianzhu University, Hefei 230601, China.

出版信息

Heliyon. 2024 May 16;10(10):e31339. doi: 10.1016/j.heliyon.2024.e31339. eCollection 2024 May 30.

Abstract

Lead-acid batteries are noted for simple maintenance, long lifespan, stable quality, and high reliability, widely used in the field of energy storage. However, during the use of lead-acid batteries, the negative electrode is prone to irreversible sulfation, failing to meet the requirements of new applications such as maintenance-free hybrid vehicles and solar energy storage. In this study, in order to overcome the sulfation problem and improve the cycle life of lead-acid batteries, active carbon (AC) was selected as a foaming agent and foam fixing agent, and carbon foams (CF) with layered porous structure was prepared by mixing with molten sucrose. Sucrose as raw material is green and cheap, and the material preparation process is simple. The prepared CF material was then added as an additive to the negative electrode plate, and the electrochemical performance of the electrode plate and the battery was studied. The results proved that the addition of CF could effectively inhibit the sulfate formation of the negative electrode plate, with the 1.0 % CF negative electrode plate showing the best electrochemical performance. Specifically, according to the result of battery cycle testing, the simulated battery with CF had a cycle life of 3642 times, which was 2.87 times that of the blank group and 2.39 times of the AC group. Meanwhile, rate testing showed that the simulated battery with CF could maintain a high capacity even under high-rate discharge conditions.

摘要

铅酸电池以维护简单、寿命长、质量稳定和可靠性高而著称,广泛应用于储能领域。然而,在铅酸电池的使用过程中,负极容易发生不可逆的硫酸化,无法满足免维护混合动力汽车和太阳能储能等新应用的要求。在本研究中,为了克服硫酸化问题并提高铅酸电池的循环寿命,选择活性炭(AC)作为发泡剂和泡沫固定剂,并通过与熔融蔗糖混合制备了具有层状多孔结构的碳泡沫(CF)。蔗糖作为原料绿色且廉价,材料制备过程简单。然后将制备的CF材料作为添加剂添加到负极板中,并研究了极板和电池的电化学性能。结果证明,添加CF可以有效抑制负极板的硫酸盐形成,1.0%CF负极板表现出最佳的电化学性能。具体而言,根据电池循环测试结果,含CF的模拟电池的循环寿命为3642次,是空白组的2.87倍,是AC组的2.39倍。同时,倍率测试表明,含CF的模拟电池即使在高倍率放电条件下也能保持高容量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/71e1/11133821/aeb0be8f89e3/ga1.jpg

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