DocumentCode :
1943229
Title :
Development of advanced lead acid batteries for electric vehicles. The use of additives to increase performance and extend life. II. Gel cells
Author :
Wertz, John A. ; Clough, T.J.
Author_Institution :
Trojan Battery Co., Santa Fe Springs, CA, USA
fYear :
2000
fDate :
11-14 Jan. 2000
Firstpage :
77
Lastpage :
82
Abstract :
In this work, additives have been incorporated in the paste materials to improve the capacity and the life of the lead-acid battery. The battery´s capacity is improved by additives that permanently increase the porosity of the positive active material and therefore the acid supply in the positive plate. Another material that has intrinsic conductivity was also added to permanently enhance the conductivity of the positive paste body. Antimony grids have historically given long service life at the cost of high water loss catalyzed by deposition of antimony on the negative active material. To combat the negative effects of antimony alloys, antimony-absorbing agents were dispersed into the negative active material to preferentially absorb and irreversibly bind the antimony ions, thereby protecting the active material. In this work, the authors have evaluated the use of these performance-improving additives in gelled electrolyte valve-regulated lead acid (VRLA) batteries.
Keywords :
electric vehicles; electrochemical electrodes; electrochemistry; electrolytes; gels; lead acid batteries; solid electrolytes; superionic conductivity; Pb; Pb-acid secondary cells; battery capacity; electric vehicle batteries; gel cells; gelled electrolyte; intrinsic conductivity; paste materials; positive active material; positive paste body conductivity; positive plate; Additives; Batteries; Conducting materials; Conductivity; Costs; Electric vehicles; Electrodes; Iron; Manufacturing; Valves;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Battery Conference on Applications and Advances, 2000. The Fifteenth Annual
Conference_Location :
Long Beach, CA, USA
ISSN :
1089-8182
Print_ISBN :
0-7803-5924-0
Type :
conf
DOI :
10.1109/BCAA.2000.838382
Filename :
838382
Link To Document :
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