Publication | Closed Access
Mathematical Modeling of a Primary Zinc/Air Battery
71
Citations
1
References
1992
Year
EngineeringBattery TechnologyChemical EngineeringSodium BatteryAir ElectrodeMaterials ScienceElectrical EngineeringBattery Electrode MaterialsLithium-ion BatteriesEnergy StorageElectrochemistryElectric BatteryLi-ion Battery MaterialsPrimary Zn‐air BatteryMetal AnodeBattery ConfigurationCathode MaterialsMathematical ModelBatteriesAnode MaterialsPrimary Zinc/air Battery
The mathematical model developed by Sunu and Bennion has been extended to include the separator, precipitation of both solid and , and the air electrode, and has been used to investigate the behavior of a primary Zn‐Air battery with respect to battery design features. Predictions obtained from the model indicate that anode material utilization is predominantly limited by depletion of the concentration of hydroxide ions. The effect of electrode thickness on anode material utilization is insignificant, whereas material loading per unit volume has a great effect on anode material utilization; a higher loading lowers both the anode material utilization and delivered capacity. Use of a thick separator will increase the anode material utilization, but may reduce the cell voltage.
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