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Separators and organics for lead-acid batteries

机译:铅酸电池的隔膜和有机物

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This review discusses various interactions between organic compounds, brought into the lead-acid battery via the separator, and their subsequent effect on battery performance. Historically, the interrelationship started with certain 'expander' actions on the lead morphology due to lignms which leached out of the wooden separators of that time. Synthetic separator materials did not show this effect, but gained acceptance as they were far more stable in the hostile battery environment. The partially hydrophobic character of synthetic separators has been overcome by organic surfactants. Other organic compounds have been found to improve further the stability of separators against oxmation. Special organic molecules namely aldehydes and ketones, have been identified to retard, or even suppress, the adverse effects of metals such as antimony and thusprolong the cycle-life of traction batteries in heavy-duty applications or reduce water loss from automotive batteries. Knowledge about these interactions has opened ways to improve separators.
机译:这篇综述讨论了通过隔板进入铅酸电池的有机化合物之间的各种相互作用,以及它们随后对电池性能的影响。从历史上看,这种相互关系始于对铅形态的某些“膨胀机”作用,这是由于木质素从当时的木制隔板中浸出。合成隔板材料没有显示出这种效果,但是由于它们在恶劣的电池环境中更加稳定,因此获得了认可。合成隔板的部分疏水特性已被有机表面活性剂克服。已经发现其他有机化合物进一步改善了隔板抵抗肟化的稳定性。特殊的有机分子,即醛和酮,已被证实可延缓甚至抑制锑等金属的不利影响,从而延长重型应用中牵引电池的循环寿命,或减少汽车电池的水分流失。有关这些交互的知识为改进分隔符开辟了道路。

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