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首页> 外文期刊>Journal of power sources >Three-layered absorptive glass mat separator with membrane for application in valve-regulated lead-acid batteries
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Three-layered absorptive glass mat separator with membrane for application in valve-regulated lead-acid batteries

机译:带膜的三层吸收式玻璃毡隔板,用于阀控式铅酸蓄电池

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摘要

During charge and discharge of the lead-acid cell equal amounts of H_2SO_4 participate in the reactions at the two types of plates (electrodes). However, the charge and discharge reactions at the positive plates involve also 2mol of water per every mole of reacted PbO_2. Consequently, a concentration difference appears in the electrolyte between the two electrodes (horizontal stratification), which affects the reversibility of the processes at the two electrodes and thus the cycle life of the battery. The present paper proposes the use of a three-layered absorptive glass mat (AGM) separator, the middle layer playing the role of a membrane that divides (separates) the anodic and cathodic electrolyte spaces, and controls the exchange rates of H_2SO_4, H+ ions. O_2 and H_2O flows between the two electrode spaces. To be able to perform this membrane function, the thinner middle AGM layer (0.2 mm) is processed with an appropriate polymeric emulsion to acquire balanced hydrophobic/hydrophilic properties, which sustain constant H_2SO_4 concentration in the two electrode spaces during cycling. Three types of polymeric emulsions have been used for treatment of the membrane: (a) polyvinylpyrollidonestyrene (MPVS), (b) polyvinylpyrrolidone "Luviskol" (MPVP), or (c) polytetrafluorethylene modified with Luviskol (MMAGM). It is established experimentally that the MMAGM membrane maintains equal acid concentration in the anodic and cathodic spaces (no horizontal stratification) during battery cycling and hence ensures longer cycle life performance.
机译:在铅酸电池的充电和放电过程中,等量的H_2SO_4参与了两种类型的板(电极)的反应。然而,每摩尔反应的PbO_2,在正极板上的充电和放电反应也包含2摩尔的水。因此,在两个电极之间的电解质中会出现浓度差异(水平分层),这会影响两个电极处过程的可逆性,从而影响电池的循环寿命。本文提出了使用三层吸收性玻璃毡(AGM)隔板的方法,中间层起着膜的作用,该膜可分隔(分离)阳极和阴极电解质空间,并控制H_2SO_4,H +离子的交换速率。 O_2和H_2O在两个电极空间之间流动。为了能够执行该膜功能,使用适当的聚合物乳液对较薄的中间AGM层(0.2 mm)进行处理,以获得平衡的疏水性/亲水性,在循环过程中在两个电极空间中维持恒定的H_2SO_4浓度。三种类型的聚合物乳液已用于处理膜:(a)聚乙烯吡咯烷酮苯乙烯(MPVS),(b)聚乙烯吡咯烷酮“ Luviskol”(MPVP)或(c)用Luviskol(MMAGM)改性的聚四氟乙烯。实验确定,在电池循环期间,MMAGM膜在阳极和阴极空间中保持相等的酸浓度(无水平分层),从而确保更长的循环寿命性能。

著录项

  • 来源
    《Journal of power sources》 |2009年第2期|730-735|共6页
  • 作者单位

    Institute of Electrochemistry and Energy Systems, Bulgarian Academy of Sciences, Acad. G, Bonchev Street, bl. 10, Sofia 1113, Bulgaria;

    Institute of Electrochemistry and Energy Systems, Bulgarian Academy of Sciences, Acad. G, Bonchev Street, bl. 10, Sofia 1113, Bulgaria;

    Institute of Electrochemistry and Energy Systems, Bulgarian Academy of Sciences, Acad. G, Bonchev Street, bl. 10, Sofia 1113, Bulgaria;

  • 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 battery; modified ACM separator; VRLAB; electrolyte stratification; polymeric emulsions; membrane;

    机译:铅酸蓄电池;改进的ACM分隔器;VRLAB;电解质分层;聚合物乳液;膜;

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