22 Analysis of Electric Vehicle Batteries Recoverability …
323
J (eds) Recycling of lithium-ion batteries. sustainable production, life cycle engineering and
management. Springer, Cham
Dunn JB, Gaines L, Barnes M, Sullivan J, Wang M (2012) Material and energy flows in the materials
production, assembly, and end-of-Life stages of the automotive lithium-ion battery life cycle.
Argonee National Laboratory ANL/ESD/12–3
Egoitz Martinez-Laserna, Elixabet Sarasketa-Zabala, Igor Villareal Sarria, Daniel-Ioan Stroe,
Maciej Swierczynski, Alexander Warnecke, Jean-Marc Timmermans, Shovon Goutam, Noshin
Omar, Pedro Rodriguez (2018) Technical viability of battery second life: a study from the ageing
perspective. IEEE Trans Ind Appl 54(3):2703–2713
Ellingsen LA, Majeau-Bettez G, Singh B, Srivastava AK, Valøen LO, Strømman AH (2013) Life
cycle assessment of a lithium-ion battery vehicle pack. J Indus Ecol 18(1):113–124
European Union (2013) Document 2006L0066—EN—30.12.2013–003.001–1
Gaines L (2014) The future of automotive lithium-ion battery recycling: charting a sustainable
course. Sustain Mater Technol 1:2–7
Honda Motor Co (2017) Advanced recycling of lithium ion batteries. https://www.env.go.jp/policy/
kenkyu/special/houkoku/data_h28/pdf/3K152013.pdf
International Energy Agency (2009) Transport Energy and CO2: Moving towards sustainability
Japan Automobile Recycling Promotion Center (2017). Vehicle recycling data book 2017. https://
www.jarc.or.jp/renewal/wp-content/uploads/2017/07/DataBook_2017.pdf
Leila Ahmadi, Young Steven B, Michael Fowler, Fraser Roydon A, Achachlouei Mohammad A
(2017) A cascaded life cycle: reuse of electric vehicle lithium-ion battery packs in energy storage
systems. Int J Life Cycle Assess 22(1):111–124
Ministry of Environment, Government of Japan (2015) Industrial structure council, industrial technology environmental working group, waste. Recycling subcommittee, automobile recycling
working group. central environment council, recycling social committee, automobile recycling
technical committee, joint meeting. Report on evaluation and examination of the implementation
status of the automobile recycling system, Sept 2015. https://www.env.go.jp/council/03recycle/
y033-43/mat03_2.pdf
Ministry of the Environment Government of Japan (2010) Strategy for diffusion of environmental
vehicles. https://www.env.go.jp/air/report/h22-02/06_chpt3.pdf
Next Generation Vehicle Promotion Center (2018) Strategy for diffusing the next generation vehicles
in Japan. http://www.cev-pc.or.jp/event/pdf/xev_in_japan_eng.pdf
Next Generation Vehicle Promotion Center (2019a) http://www.cev-pc.or.jp/tokei/hanbai3.html
Next Generation Vehicle Promotion Center (2019 b) http://www.cev-pc.or.jp/tokei/hanbai.html
OECD (2018) GDP long-term forecast (indicator)
Olivetti Elsa A, Gerbrand Ceder, Gaustad Gabrielle G, Xinkai Fu (2017) Lithium-ion battery supply
chain considerations: Analysis of potential bottlenecks in critical metals. Joule 2017(1):229–243
The world bank (2019) Population estimates and projections. https://datacatalog.worldbank.org/dat
aset/population-estimates-and-projections
U.S. Energy Information Administration (2016) International energy outlook 2016. DOE/EIA-0484
Vensim PLP x32 [Computer software] (2019)
Winslow KM, Laux SJ, Townsend TG (2018) A review on the growing concern and potential
management strategies of waste lithium-ion batteries. Resour Conserv Recycl 129:263–277
Zheng X, Zhu Z, Lin X, Zhang Y, He Y, Cao H et al (2018) A mini-review on metal recycling from
spent lithium ion batteries. Engineering 4:361–370
323
J (eds) Recycling of lithium-ion batteries. sustainable production, life cycle engineering and
management. Springer, Cham
Dunn JB, Gaines L, Barnes M, Sullivan J, Wang M (2012) Material and energy flows in the materials
production, assembly, and end-of-Life stages of the automotive lithium-ion battery life cycle.
Argonee National Laboratory ANL/ESD/12–3
Egoitz Martinez-Laserna, Elixabet Sarasketa-Zabala, Igor Villareal Sarria, Daniel-Ioan Stroe,
Maciej Swierczynski, Alexander Warnecke, Jean-Marc Timmermans, Shovon Goutam, Noshin
Omar, Pedro Rodriguez (2018) Technical viability of battery second life: a study from the ageing
perspective. IEEE Trans Ind Appl 54(3):2703–2713
Ellingsen LA, Majeau-Bettez G, Singh B, Srivastava AK, Valøen LO, Strømman AH (2013) Life
cycle assessment of a lithium-ion battery vehicle pack. J Indus Ecol 18(1):113–124
European Union (2013) Document 2006L0066—EN—30.12.2013–003.001–1
Gaines L (2014) The future of automotive lithium-ion battery recycling: charting a sustainable
course. Sustain Mater Technol 1:2–7
Honda Motor Co (2017) Advanced recycling of lithium ion batteries. https://www.env.go.jp/policy/
kenkyu/special/houkoku/data_h28/pdf/3K152013.pdf
International Energy Agency (2009) Transport Energy and CO2: Moving towards sustainability
Japan Automobile Recycling Promotion Center (2017). Vehicle recycling data book 2017. https://
www.jarc.or.jp/renewal/wp-content/uploads/2017/07/DataBook_2017.pdf
Leila Ahmadi, Young Steven B, Michael Fowler, Fraser Roydon A, Achachlouei Mohammad A
(2017) A cascaded life cycle: reuse of electric vehicle lithium-ion battery packs in energy storage
systems. Int J Life Cycle Assess 22(1):111–124
Ministry of Environment, Government of Japan (2015) Industrial structure council, industrial technology environmental working group, waste. Recycling subcommittee, automobile recycling
working group. central environment council, recycling social committee, automobile recycling
technical committee, joint meeting. Report on evaluation and examination of the implementation
status of the automobile recycling system, Sept 2015. https://www.env.go.jp/council/03recycle/
y033-43/mat03_2.pdf
Ministry of the Environment Government of Japan (2010) Strategy for diffusion of environmental
vehicles. https://www.env.go.jp/air/report/h22-02/06_chpt3.pdf
Next Generation Vehicle Promotion Center (2018) Strategy for diffusing the next generation vehicles
in Japan. http://www.cev-pc.or.jp/event/pdf/xev_in_japan_eng.pdf
Next Generation Vehicle Promotion Center (2019a) http://www.cev-pc.or.jp/tokei/hanbai3.html
Next Generation Vehicle Promotion Center (2019 b) http://www.cev-pc.or.jp/tokei/hanbai.html
OECD (2018) GDP long-term forecast (indicator)
Olivetti Elsa A, Gerbrand Ceder, Gaustad Gabrielle G, Xinkai Fu (2017) Lithium-ion battery supply
chain considerations: Analysis of potential bottlenecks in critical metals. Joule 2017(1):229–243
The world bank (2019) Population estimates and projections. https://datacatalog.worldbank.org/dat
aset/population-estimates-and-projections
U.S. Energy Information Administration (2016) International energy outlook 2016. DOE/EIA-0484
Vensim PLP x32 [Computer software] (2019)
Winslow KM, Laux SJ, Townsend TG (2018) A review on the growing concern and potential
management strategies of waste lithium-ion batteries. Resour Conserv Recycl 129:263–277
Zheng X, Zhu Z, Lin X, Zhang Y, He Y, Cao H et al (2018) A mini-review on metal recycling from
spent lithium ion batteries. Engineering 4:361–370
