Abstract
The major cause of deterioration in lead-acid batteries is sulfation. There are patents on the use of high-frequency pulse desulfators to desulfate lead-acid batteries. Also, many products available in the market worldwide claim to use this technique to effectively desulfate lead-acid batteries that deteriorate due to sulfation. But there are little or no systematic studies to evaluate the performance of these products to know whether they do what their manufacturers claim. This research, therefore, aims at empirically evaluating one of such products. Four fully charged 100 Ampere-hour Valve Regulated Lead-Acid Gel batteries were discharged with an electronic-load battery discharger to ascertain their capacities. Thereafter, a high-frequency pulse desulfator was connected to desulfate the battery bank consisting of the four batteries. The battery bank was connected to be charged at the same time by a photovoltaic system. The desulfation experiment lasted for ten weeks but the batteries were tested to know their capacities after two, six, and ten weeks. The results show that the desulfation device works in desulfating lead-acid batteries as there are different degrees of improvement on the capacity of all the batteries. The percentage improvement in the capacity of the batteries is 89.5%, 75.9%, 1.6% and 1.4%, for batteries 1, 2, 3 and 4, respectively.
Reference31 articles.
1. D. Pavlov, “Invention and development of the lead–acid battery,” in Lead-Acid Batteries: Science and Technology, Amsterdam: Elsevier B.V., 2017, pp. 3–32.
2. S. Ikeda, “Innovations of lead-acid batteries,” Electrochem., vol. 76, no. 1, pp. 32–37, 2008.
3. W. Jamratnaw, “Desulfation of lead - acid battery by high-frequency pulse,” In Proc. 2017 14th Int. Conference on Electrical Engineering / Electronics, Computer, Telecommunications and Information Technology, June 27 – 30, Phuket, Thailand, pp. 676–679.
4. C. A. C. Sequeira, and M. R. Pedro, “Lead-acid battery storage,” Sci. Technol. Mater., vol. 19, no. 1/2, 2007.
5. D. Pavlov, “Fundamentals of lead–acid batteries,” in Lead-Acid Batteries: Science and Technology, Amsterdam: Elsevier B.V., 2017, pp. 33–129.
Cited by
2 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
1. Resonance Frequency-Based Desulfator Design for Lead-Acid Batteries;Proceedings of the 2023 6th International Conference on Electronics, Communications and Control Engineering;2023-03-24
2. Commercial Vehicle SLI-Battery Life Enhancement through On-Board Dual-Pulsed Charging;SAE Technical Paper Series;2022-03-29