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Optimization studies of carbon additives to negative active material for the purpose of extending the life of VRLA batteries in high-rate partial-state-of-charge operation

机译:为延长VRLA电池在高速率部分充电状态下的寿命而对负极活性物质中碳添加剂进行的优化研究

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摘要

The negative plates of lead-acid batteries subjected to partial-state-of-charge (PSOC) operation fail because of the development of an electrically inert film of lead sulfate on their surfaces. It has been found that carbon additives to the negative active material can significantly increase their cycle life in this type of operation. In this paper we show that various types of carbon, including graphite, carbon black eliminate the surface development of lead sulfate and that, in their presence, the lead sulfate becomes homogeneously distributed throughout the active material. Examination of active material by energy dispersive spectroscopy after extensive cycling shows that lead formed during charge of lead sulfate preferentially deposits on the carbon particles that have been embedded in the active material. Electrochemical studies have been carried out on a number of types of carbon additives having a wide range of properties. These included flake, expanded and synthetic graphite, isotropically graphitized carbon, carbon black and activated carbon. We have investigated their effect on the resistivity and surface areas of the negative active material and also on such electrochemical properties as active material utilization and cycle life. Most of the carbon additives increase the utilization of the active material and impressive increases in cycle life have been obtained with over 6000 capacity turnovers having been achieved. However, at this time, we have not been able to correlate either the type or the properties of the carbon with capacity or cycle life. Further work is needed in this area. The increases that have been achieved in cycle life provide evidence that the lead-acid battery is a viable low cost option for hybrid-electric vehicle use.
机译:进行部分充电状态(PSOC)操作的铅酸电池负极板由于在其表面形成了硫酸铅的电惰性膜而失效。已经发现,在这种类型的操作中,负极活性材料中的碳添加剂可以显着增加其循环寿命。在本文中,我们证明了包括石墨,炭黑在内的各种类型的碳消除了硫酸铅的表面形成,并且在它们的存在下,硫酸铅变得均匀地分布在整个活性材料中。大量循环后,通过能量色散光谱对活性物质进行检查,结果表明,在硫酸铅充电过程中形成的铅优先沉积在已嵌入活性物质中的碳颗粒上。已经对多种具有广泛性能的碳添加剂进行了电化学研究。其中包括片状,膨胀和合成石墨,各向同性石墨化碳,炭黑和活性炭。我们已经研究了它们对负极活性物质的电阻率和表面积以及对电化学性质(如活性物质利用率和循环寿命)的影响。大多数碳添加剂可提高活性材料的利用率,并且在实现超过6000的容量转换后,可显着提高循环寿命。但是,目前我们还无法将碳的类型或特性与容量或循环寿命相关联。在这一领域需要进一步的工作。循环寿命的增加证明了铅酸电池是混合动力汽车使用的可行的低成本选择。

著录项

  • 来源
    《Journal of power sources》 |2010年第14期|p.4470-4493|共24页
  • 作者单位

    Hammond Expanders Division, Hammond Group. Inc., 6544 Osborn Avenue, Hammond, IN 46320, USA;

    Hammond Expanders Division, Hammond Group. Inc., 6544 Osborn Avenue, Hammond, IN 46320, USA;

    Hammond Expanders Division, Hammond Group. Inc., 6544 Osborn Avenue, Hammond, IN 46320, USA;

    Hammond Expanders Division, Hammond Group. Inc., 6544 Osborn Avenue, Hammond, IN 46320, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    lead-acid batteries; negative electrodes; cycle life; carbon additives; high-rate charging;

    机译:铅酸电池;负极;循环寿命;碳添加剂;高速率充​​电;
  • 入库时间 2022-08-18 00:25:25

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