Articles & Issues
- Language
- English
- Conflict of Interest
- In relation to this article, we declare that there is no conflict of interest.
- This is an Open-Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/bync/3.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
Copyright © KIChE. All rights reserved.
All issues
THE EFFECTS OF CAPACITY RATIO ON THE PERFORMANCE OF ALKALINE BATTERIES
Korean Journal of Chemical Engineering, April 1995, 12(2), 146-151(6), 10.1007/BF02705638
Download PDF
Abstract
The effects of cathode/anode capacity ratio on the performance of mercury-free alkaline zinc-manganese dioxide batteries were studied. An alternating current impedance analysis and a continuous discharge test with constant electrical load were employed. The discharge and leakage performances of alkaline batteries varied strongly with capacity ratios and discharge rates. The lower capacity ratios favored discharge performance at high rates, whereas discharge performance at low rates depended only on the quantity of manganese dioxide present. In addition, the lower capacity ratios yielded high in-cell gassing with severe leakage problems, especially at partially discharged cell.
References
Bard AJ, Faulkner LR, "Electrochemical Method-Fundamentals and Applications," John Wiley & Sons, New York (1980)
Delahay P, "Double Layer and Electrode Kinetics," Interscience, New York (1965)
Falk SU, Salkind AJ, "Alkaline Storage Batteries," John Wiley & Sons, New York (1992)
Kordesch KV, "Handbook of Batteries & Fuel Cells," McGraw-Hill, New York (1984)
Larsen DM, Dopp RB, U.S. Patent, 4,857,424 (1989)
Miura A, Okazaki R, Takata K, Ohira T, U.S. Patent, 4,735,876 (1988)
Miura A, Takata K, Okazaki R, Uemura T, Kagawa K, U.S. Patent, 4,861,688 (1989)
Vignaud R, U.S. Patent, 4,606,984 (1986)
Vincent CA, "Modern Batteries. An Introduction to Electrochemical Power Sources," Edward Arnold, London (1984)
Yamazaki S, Abe M, Nagayama S, Suzuki K, Fukada T, Kinka M, Shibata K, Suzukida M, U.S. Patent, 4,847,669 (1989)
Delahay P, "Double Layer and Electrode Kinetics," Interscience, New York (1965)
Falk SU, Salkind AJ, "Alkaline Storage Batteries," John Wiley & Sons, New York (1992)
Kordesch KV, "Handbook of Batteries & Fuel Cells," McGraw-Hill, New York (1984)
Larsen DM, Dopp RB, U.S. Patent, 4,857,424 (1989)
Miura A, Okazaki R, Takata K, Ohira T, U.S. Patent, 4,735,876 (1988)
Miura A, Takata K, Okazaki R, Uemura T, Kagawa K, U.S. Patent, 4,861,688 (1989)
Vignaud R, U.S. Patent, 4,606,984 (1986)
Vincent CA, "Modern Batteries. An Introduction to Electrochemical Power Sources," Edward Arnold, London (1984)
Yamazaki S, Abe M, Nagayama S, Suzuki K, Fukada T, Kinka M, Shibata K, Suzukida M, U.S. Patent, 4,847,669 (1989)