耐腐蚀的正栅极,新型分离器和负极板添加剂,增加VRLA电池寿命

R. Prengaman, A. Siegmund
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引用次数: 1

摘要

阀控电池有几个湿电池没有的问题。与湿电池相比,它们的寿命相对较短,尽管ALABC节目的信息显示了如何显着延长寿命。相对于淹水式电池,VRLA电池的容量有所减少,尽管比能量可能更高。VRLA电池要正确充电要困难得多,在电池的使用寿命期间,由于栅格、活性物质、电解质的数量和组成以及极板的电化学电位的变化,通常必须修改充电方法。VRLA电池有三个主要问题,导致它们过早失效。这些是突然丧失容量,逐渐丧失容量,以及无法给负极板充电。这些情况被ALABC认为是过早的能力丧失。本文论述了密封VRLA电池存在的问题,以及ALABC项目的研究成果如何应用到电池材料中,以提高VRLA电池的寿命和性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Corrosion resistant positive grids, novel separators, and negative plate additives for increased VRLA battery life
Valve-regulated batteries suffer several problems not seen in wet batteries. They have a relatively shorter life compared to wet batteries, although the information from the ALABC programs has shown how to significantly extend life. VRLA batteries suffer somewhat reduced capacity compared to flooded batteries although the specific energy may be higher. VRLA batteries are much more difficult to charge correctly and the charging practices generally have to be modified during the life of the battery because of changes within the grids, active material, amount and composition of the electrolyte, as well as the electrochemical potentials of the plates. There are three major problems with VRLA batteries which cause them to fail prematurely. These are the sudden loss of capacity, gradual loss of capacity, and the inability to recharge the negative plate. These conditions have been deemed premature capacity loss by the ALABC. This paper deals with the problems of sealed VRLA batteries and how the ALABC program research results have flowed into battery materials to improve the life and performance of VRLA batteries.
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