READ ME File For Long term use of dual energy storage systems in electric vehicles – an environmental perspective. - supplementary data dataset DOI: 10.5258/SOTON/D2145 Date that the file was created: March, 2022 ------------------- GENERAL INFORMATION ------------------- ReadMe Author: Nicole Melzack, University of Southampton ORCID 0000-0002-5578-4020 Date of data collection: 18/06/2021-15/02/2022 Information about geographic location of data collection: Created using OpenLCA softare in the UK -------------------------- SHARING/ACCESS INFORMATION -------------------------- Licenses/restrictions placed on the data, or limitations of reuse: CC-BY Recommended citation for the data: N Melzack, Long term use of dual energy storage systems in electric vehicles – an environmental perspective - supplementary data, 2022 doi 10.5258/SOTON/D2145 This dataset supports the publication: AUTHORS: N Melzack, RGA Wills, AJ Cruden TITLE:Long term use of dual energy storage systems in electric vehicles – an environmental perspective JOURNAL: Frontiers in Energy Research PAPER DOI IF KNOWN: doi: 10.3389/fenrg.2023.1266670 Links to other publicly accessible locations of the data: n/a Links/relationships to ancillary or related data sets: created from compilations of data from the following publications Melzack, N., R. Wills, and A. Cruden, Cleaner Energy Storage: Cradle-to-Gate Life Cycle Assessment of Aluminum-Ion Batteries With an Aqueous Electrolyte. Frontiers in Energy Research, 2021. 9(290). Cossutta, M., et al., A comparative life cycle assessment of graphene and activated carbon in a supercapacitor application. Journal of Cleaner Production, 2020. 242: p. 118468. Peters, J.F. and M. Weil, Providing a common base for life cycle assessments of Li-Ion batteries. Journal of Cleaner Production, 2018. 171: p. 704-713. -------------------- DATA & FILE OVERVIEW -------------------- This dataset contains: ReadMe.txt - description of dataset and teh files contained within 1325.7 kg citybus Li-ion only.xlsx- resulting life cycle assessment dataset created in OpenLCA for an electric city-bus powered only by Li-ion batteries at BOL - multiply results by 3 for EOL. 1239.8 kg citybus SC_Li-ion.xlsx - resulting life cycle assessment dataset created in OpenLCA for an electric city-bus powered by Li-ion batteries and supercapacitor DESS - BOL and EOL 2073 kg citybus Al-Li-ion.xlsx - resulting life cycle assessment dataset created in OpenLCA for an electric city-bus powered by Li-ion batteries and Al-ion batteries DESS, results valid for BOL 2073 kg citybus Al-Li-ion 3Al.xlsx - resulting life cycle assessment dataset created in OpenLCA for an electric city-bus powered by Li-ion batteries and Al-ion batteries DESS, results valid for EOL 585 kg EV Li-ion only.xlsx- resulting life cycle assessment dataset created in OpenLCA for an electric car (EV) powered only by Li-ion batteries at BOL - multiply results by 3 for EOL. 589.92 kg EV SC_Li-ion.xlsx- resulting life cycle assessment dataset created in OpenLCA for an electric car (EV) powered by Li-ion batteries and supercapacitor DESS - BOL and EOL 1668 kg EVAl_Li-ion .xlsx - resulting life cycle assessment dataset created in OpenLCA for an electric car (EV) powered by Li-ion batteries and Al-ion batteries DESS, results valid for BOL 1668 kg citybus Al-Li-ion 3Al.xlsx - resulting life cycle assessment dataset created in OpenLCA for an electric car (EV) powered by Li-ion batteries and Al-ion batteries DESS, results valid for EOL Summary.xlsx - tabulated impacts for all cases summarised and plotted If data was derived from another source, list source: Melzack, N., R. Wills, and A. Cruden, Cleaner Energy Storage: Cradle-to-Gate Life Cycle Assessment of Aluminum-Ion Batteries With an Aqueous Electrolyte. Frontiers in Energy Research, 2021. 9(290). Cossutta, M., et al., A comparative life cycle assessment of graphene and activated carbon in a supercapacitor application. Journal of Cleaner Production, 2020. 242: p. 118468. Peters, J.F. and M. Weil, Providing a common base for life cycle assessments of Li-Ion batteries. Journal of Cleaner Production, 2018. 171: p. 704-713. -------------------------- METHODOLOGICAL INFORMATION -------------------------- Description of methods used for collection/generation of data: Results of Life cycle assessment taking inventories from Melzack et. al, Front. Energy Res., 24 June 2021 | https://doi.org/10.3389/fenrg.2021.699919 , Methods for processing the data: OpenLCA software using the European Union Environmental Footprint midpoint analysis Software- or Instrument-specific information needed to interpret the data, including software and hardware version numbers: OpenLCA software was used, with the EU Environmenetal Footprint midpoint analysis performed