M J Cleland, J P Maloney, B H Rowe
Index: J. Emerg. Med. 18(3) , 305-9, (2000)
Full Text: HTML
Emergency Medical Services (EMS) rely on batteries to power external cardiac defibrillators. While maintenance protocols should be followed to ensure that batteries possess adequate capacity to power their defibrillator, they are not often applied to new batteries. This study examines the effects of prolonged storage on sealed lead acid (SLA) batteries, the number of batteries that are affected by lead sulfate, and the ability of a protocol to restore the capacity in SLA batteries. A prospective cohort of new batteries was subjected to testing and discharge protocols. Initial battery capacities were measured using a battery analyzer. An "over-discharge" protocol fully discharged the battery over a 24-h period, and batteries were recharged and reanalyzed. Capacity measurements were repeated twice. Sulfate buildup was defined a priori as final capacity measurements greater than predischarge measurements. There were 126 batteries studied, a mean of 14 months after manufacture. Overall, 47 batteries (36.5%) had measured capacity that was insufficient (< 65% capacity). Batteries possessing very low initial capacities (< 55%) responded with a significant improvement on average of 54.7% compared with batteries within a normal capacity range (> 65%) whose average improvement was 9.3%. After discharge, there was an average of 17% improvement in the measured capacity, with no differences in the final capacity readings in each battery type. In conclusion, sealed lead acid batteries are affected by prolonged storage. The loss of capacity created by accumulation of lead sulfate can be reversed if battery maintenance protocols are used as part of EMS quality assurance programs.
Structure | Name/CAS No. | Molecular Formula | Articles |
---|---|---|---|
![]() |
Lead sulfate
CAS:7446-14-2 |
O4PbS |
Chemical transformations of lead compounds under humid condi...
2013-02-01 [Environ. Geochem. Health 35(1) , 153-9, (2013)] |
Phosphate-induced lead immobilization from different lead mi...
2008-03-01 [Environ. Pollut. 152(1) , 184-92, (2008)] |
Mature experimental constructed wetlands treating urban wate...
2002-01-01 [Biotechnol. Prog. 18(6) , 1257-64, (2002)] |
Low temperature catalytic conversion of methane to methanol ...
2005-05-07 [Chem. Commun. (Camb.) (17) , 2238-40, (2005)] |
Heterogeneous chemistry between PbSO4 and calcite microparti...
2006-08-01 [Spectrochim. Acta. A. Mol. Biomol. Spectrosc. 64(5) , 1095-101, (2006)] |
Home | MSDS/SDS Database Search | Journals | Product Classification | Biologically Active Compounds | Selling Leads | About Us | Disclaimer
Copyright © 2024 ChemSrc All Rights Reserved