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Meeting 2020 TMS Annual Meeting & Exhibition
Symposium Advanced Materials for Energy Conversion and Storage VI
Presentation Title Life Cycle Analysis on Battery Energy Storage Systems: A Case Study on Flow Batteries and Lithium-ion Batteries
Author(s) Haoyang He, Shan Tian, Brian Tarroja, Oladele A. Ogunseitan, Scott Samuelsen, Julie M. Schoenung
On-Site Speaker (Planned) Haoyang He
Abstract Scope In order to mitigate the adverse environmental impacts of conventional energy resources, it is necessary to deploy energy storage systems to manage variable renewable resources. In recent years, several advanced energy storage technologies have been developed such as lithium-ion batteries and flow batteries. While significant research has focused on improving battery performance and efficiency, few studies have explored their potential environmental impact. In this study, we perform a life cycle analysis, based primarily on manufacturer-provided data, to evaluate the environmental impact due to the production of flow batteries including raw materials extraction, product manufacturing, and product assembly. Further, the environmental impact of lithium-ion batteries is also investigated, based on an up-to-date literature review, and the results are compared to those for the flow batteries, especially in the context of product design and material selection choices for these two novel energy storage technologies.
Proceedings Inclusion? Planned: Supplemental Proceedings volume

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E-11: A Critical Evaluation of Internal Temperature Sensors Implanted in the Lithium-ion Batteries
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E-13: A Novel Class of High-ionic Conductivity, Stable Electrolyte for Li-ion All-Solid-State Batteries
Hide details for [<a href="/PM/PM.nsf/ApprovedAbstracts/ACF2FB705F7F19078525842A0045D545?OpenDocument">E-16: Enhanced StabilityE-16: Enhanced Stability of B-site W Doped Pr0.6Sr0.4Fe1-xWxO3-δ Ceramic Membranes for Water Splitting
[Replication or Save Conflict]
[Replication or Save Conflict]
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