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Comparative Life Cycle Assessment of Lithium-Ion Capacitors Production from Primary Ore and Recycled Minerals : Using LCA to balance environmental, economic and social performance in early phase research and development
Author(s) -
Peter I. Chigada,
Olivia Wale,
Charlotte Hancox,
Koen Vandaele,
Barbara Breeze,
A. W. T. Mottram,
Alexander J. Roberts
Publication year - 2021
Publication title -
johnson matthey technology review
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.571
H-Index - 49
ISSN - 2056-5135
DOI - 10.1595/205651321x16165776867357
Subject(s) - life cycle assessment , sustainability , environmental impact assessment , environmental science , production (economics) , lithium (medication) , waste management , engineering , environmental economics , medicine , ecology , macroeconomics , economics , biology , endocrinology
The life cycle assessment (LCA) methodology which allows quantification of environmental performance of products and processes based on complete product life cycle was utilised to evaluate the environmental burdens associated with manufacturing a 48 V lithium-ion capacitor (LIC) module. The prospective LCA compared the environmental impact of manufacturing a LIC module using primary ore materials and recycled materials from end-of-life LICs. For both the primary ore and recycled materials processes, the anode preparation stage was associated with the majority of the climate change and terrestrial acidification burdens. LIC module production utilising recovered materials from end-of-life LICs reduced the environmental impact compared to utilisation of primary ore resources. Application of the LCA methodology in early phase research and development (R&D) activities was demonstrated with a case study on reagent choice decision-making process that accounted for environmental impact, technical performance and costs in alignment with the sustainability triple bottom line concept.

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