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PbSO is a key component in the charging and discharging of lead acid batteries-such as the cycling of automotive batteries. PbSO is a poor conductor that forms on the positive and negative electrodes during discharging and dissolves during charging of a lead acid battery. Over time, buildup of PbSO occurs on the electrodes, ultimately reducing the efficiency of the battery. This study aims to determine the nucleation and growth mechanisms of PbSO nanoparticles in various solutions to potentially reduce or control the buildup of PbSO on battery electrodes over time. The time dependency of particle morphology was observed using various reaction conditions. PbSO particles were created using premixed solutions at various times of reaction. HO, acetone, methanol, ethanol, and isopropanol were used to stop the reaction and development of the PbSO particles. The structure of the nanoparticles was characterized via transmission electron microscopy, high-angle annular dark field scanning transmission electron microscopy, and selected area electron diffraction. This study provides insight into the mechanism by which PbSO nanoparticles form in various solutions and reveals that the degree of complexity of the solution plays a large role in the nucleation and growth of the PbSO nanoparticles. This insight can provide avenues to reduce unwanted buildup of PbSO on battery electrodes over time, which can extend battery life and performance.
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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8153739 | PMC |
http://dx.doi.org/10.1021/acsomega.0c05722 | DOI Listing |
Molecules
January 2024
Department of Extractive Metallurgy, Escuela Politécnica Nacional, Ladrón de Guevara E11-253, P.O. Box 17-01-2759, Quito 170525, Ecuador.
In this study, we address the ecological challenges posed by automotive battery recycling, a process notorious for its environmental impact due to the buildup of hazardous waste like foundry slag. We propose a relatively cheap and safe solution for lead removal and recovery from samples of this type of slag. The analysis of TCLP extracts revealed non-compliance with international regulations, showing lead concentrations of up to 5.
View Article and Find Full Text PDFACS Omega
April 2021
RSR Technologies, Dallas, Texas 75247, United States.
PbSO is a key component in the charging and discharging of lead acid batteries-such as the cycling of automotive batteries. PbSO is a poor conductor that forms on the positive and negative electrodes during discharging and dissolves during charging of a lead acid battery. Over time, buildup of PbSO occurs on the electrodes, ultimately reducing the efficiency of the battery.
View Article and Find Full Text PDF