DocumentCode :
2897060
Title :
Semi-suspension technology for preparation of tetrabasic pastes for positive lead-acid battery plates
Author :
Pavlov, D. ; Ruevski, S.
Author_Institution :
Central Lab. of Electrochem. Power Sources, Bulgarian Acad. of Sci., Sofia, Bulgaria
fYear :
2001
fDate :
2001
Firstpage :
199
Abstract :
Summary form only given, as follows. A new technology for production of 4BS pastes for the positive (lead dioxide) plates of lead-acid batteries has been developed based on an Eirich Evactherm(R) mixer. The basic principle of this new technology is that 4BS crystals with dimensions between 20 and 25 μm are formed first from a semi-suspension at a temperature higher than 90°C and then the excess water is removed from the semi-suspension under vacuum until the desired paste density is obtained. During the vacuum treatment, the temperature of the paste decreases and small 4BS and PbO crystals are formed. During the paste formation procedure, the large 4BS crystals build up the PbO2 skeleton of the PAM, whereas the small crystals form the energetic PbO2 structure, which participates in the charge-discharge processes on cycling of the battery. It has been found, through XRD and thermo-gravitational analysis, that the 4BS particles comprise crystal and amorphous zones. The crystal zones contain water molecules part of which can be easily removed from the particles under vacuum treatment and curing as a result of which the crystallinity of the 4BS particles decreases. Another part of the bound water remains in the 4BS particles after curing of the pastes and can leave them only after heating to 250°C. The ability of water to leave the particles depends on the density of the semi-suspension used for preparation of the paste. The higher the H2O content in the semi-suspension the easier it leaves the 4BS crystals on vacuum treatment. Experimental tests have shown that the best battery performance is obtained when the paste is prepared under the following conditions: degree of lead oxidation in the leady oxide (LO) 85% PbO/LO, H2SO4/LO ratio 5-6%, liquid content (H2SO4+H2O) in tile semi-suspension 240-260 ml/kg LO, temperature of the semi-suspension equal to or higher than 90°C, duration of paste mixing about 15 min. The new semi-suspension technology of 4BS paste preparation facilitates the formation of stable PAM structure that ensures high capacity and long cycle life of the positive plates of lead-acid batteries
Keywords :
electrochemical electrodes; electrochemistry; lead acid batteries; lead compounds; suspensions; 20 to 25 mum; 250 C; 4BS crystals; 90 C; Eirich Evactherm(R) mixer; Pb; PbO; PbO2; XRD; amorphous zones; battery capacity; battery cycle life; charge-discharge processes; crystal zones; excess water removal; lead-acid battery; paste density; paste formation procedure; positive Pb-acid battery plates; semi-suspension technology; stable PAM structure; tetrabasic pastes preparation; thermo-gravitational analysis; vacuum treatment; Batteries; Crystallization; Crystals; Curing; Lead compounds; Production; Skeleton; Temperature; Vacuum technology; X-ray scattering;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Applications and Advances, 2001. The Sixteenth Annual Battery Conference on
Conference_Location :
Long Beach, CA
ISSN :
1089-8182
Print_ISBN :
0-7803-6545-3
Type :
conf
DOI :
10.1109/BCAA.2001.905125
Filename :
905125
Link To Document :
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