Determination of optimal formation conditions for tubular positive electrodes of lead/acid batteries
Author:
Publisher
Elsevier BV
Subject
Electrochemistry,General Chemical Engineering
Reference10 articles.
1. Recent advances in lead—acid cell research and development
2. The effect of current density and thickness of the active mass upon the corrosion rate of the spines of lead-acid battery plates
3. Effect of changes in engineering design on the distribution of reaction products and the electrochemical properties of tubular electrodes
4. Factors affecting the formation of lead/acid tubular positives
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1. Effect of particle size on phase transitions of positive active materials made from novel leady oxide during soaking process and its influence on lead-acid battery capacity;Journal of Energy Storage;2020-04
2. Lead-acid battery response to various formation levels – Part A: Recommended formation levels for off-grid solar and conventional applications;Sustainable Energy Technologies and Assessments;2015-09
3. The addition of red lead to flat plate and tubular valve regulated miners cap lamp lead–acid batteries;Journal of Power Sources;2006-04
4. Processes taking place in the paste of lead-acid battery plates during soaking prior to formation and their influence on battery performance;Journal of Power Sources;2005-01
5. The influence of the pickling and curing processes in the manufacturing of positive tubular electrodes on the performance of lead-acid batteries;Journal of Power Sources;2003-07
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