Amin Khoshvaght Zegoloujeh
A Life Cycle Assessment of Lithium-Sulfur battery Cathodes.
Rel. Giovanni Andrea Blengini, Isabella Bianco. Politecnico di Torino, Master of science program in Environmental And Land Engineering, 2023
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Abstract
Since lithium-sulfur (Li-S) batteries have a far higher energy density than other batteries, they have a huge potential to replace current energy storage chemistries. Closing the current data gap is the necessary step for the estimation of the potential environmental implications related to Li-S cathodes to support the development of greener Li-S batteries. This study performs a comparative life cycle assessment (LCA) using cradle-to-gate boundaries of five Li-S battery cathodes with high sulfur loadings (1.5-15 mg/cm). The environmental impact can be decreased by a factor of up to 5 depending on the battery selected. When ordinary lithium-ion batteries and Li-S batteries are evaluated using secondary data from the Ecoinvent 3.6 database, the latter has a lower environmental effect per kWh of storage capacity.
It was also found that the electrolyte plays a significant part in the environmental impacts connected with the performance of Li-S batteries
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