Abstract
The current distribution on anode surface of sealed lead acid batter under different discharge current and degree was studied by chemical analytical method for the first time. We can conclude that the current distribution is not even. The current density on the edge of the electrode surface and the electrode terminal are bigger than other areas, that is, there are edge effect and terminal effect, and these effect are more obvious when the discharge current is 100 A and degree is 100%.
Keywords
Lead acid battery, Current density, Electrode surface
Publication Date
1996-11-28
Online Available Date
1996-11-28
Revised Date
1996-11-28
Received Date
1996-11-28
Recommended Citation
Renao Gu, Jianlin Yao, Zhengfa Deng, Ru Sun.
The Current Distribution on the anode Surface of the Seale Oval Tubular Lead acid Battery[J]. Journal of Electrochemistry,
1996
,
2(4): Article 10.
DOI: 10.61558/2993-074X.3089
Available at:
https://jelectrochem.xmu.edu.cn/journal/vol2/iss4/10
References
1IblN.ComprehensiveTreatiseofElectrochemistry.NewYork:Plenumpres,1983,6:42NewmanJ.ElectrochemicalSystems.EnglewoodNewJersey:PrenticeHal,Inc.press,1973:2973NewmanJ.Engineeringdesignofelecrochemicalsystems.IndustrialandEngineeringChemisry,1968,60(4):12~274WagnerC.Thescopeofelectrochemicalengineering.AdvancesinElectrochemistryandElectrochemicalEngineering.,1962,2:1~145NewmanJ,TobiasCW.Theoreticalanalysisofcurrentdistributioninporouselectrodes.J.ElectrochemicalSociety.,1962,109:1183~11916JohnsonAM,NewmanJ.DesaltingbyMeansofporouscarbonelectrodes.J.ElectrochemicalSociety.,1971,118:510~5177吴立人.第十五届全国化学与物理电源会议论文选集.北京:中国电子学会化学与物理电源学会出版,1981:1658刘广林编著.铅酸蓄电池技术手册.北京:宇航出版社,1992:185~187
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