Rare earth element recovery potentials from end-of-life hybrid electric vehicle components in 2010-2030
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作者:
Yano, Junya
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Kyoto Univ, Environm Preservat Res Ctr, Sakyo Ku, Yoshida Honmachi, Kyoto 6068501, JapanKyoto Univ, Environm Preservat Res Ctr, Sakyo Ku, Yoshida Honmachi, Kyoto 6068501, Japan
Yano, Junya
[1
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Muroi, Takanori
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Kyoto Univ, Environm Preservat Res Ctr, Sakyo Ku, Yoshida Honmachi, Kyoto 6068501, JapanKyoto Univ, Environm Preservat Res Ctr, Sakyo Ku, Yoshida Honmachi, Kyoto 6068501, Japan
Muroi, Takanori
[1
]
Sakai, Shin-ichi
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Kyoto Univ, Environm Preservat Res Ctr, Sakyo Ku, Yoshida Honmachi, Kyoto 6068501, JapanKyoto Univ, Environm Preservat Res Ctr, Sakyo Ku, Yoshida Honmachi, Kyoto 6068501, Japan
Sakai, Shin-ichi
[1
]
机构:
[1] Kyoto Univ, Environm Preservat Res Ctr, Sakyo Ku, Yoshida Honmachi, Kyoto 6068501, Japan
End-of-Life Vehicle (ELV);
Hybrid electric vehicle (HEV);
NiMH battery;
Rare earth element (REE);
Recovery potential;
GENERATION;
STOCKS;
JAPAN;
D O I:
10.1007/s10163-015-0360-4
中图分类号:
X [环境科学、安全科学];
学科分类号:
08 ;
0830 ;
摘要:
Increasing attention is currently given to the management of end-of-life (EoL) hybrid electric vehicles (HEVs), because approximately two decades have passed since they were first introduced to the market. A HEV would be one of the largest consumers of rare earth elements (REEs), and hence represents the greatest potential for REE recovery in the future. The purpose of this study is to clarify the present and future recovery potential of REEs that are disposed of as EoL HEVs. This study first estimated the numbers of EoL HEVs during fiscal years (FYs) 2010-2030, and then clarified the potential for recovery of REEs from two HEV-specific components-the hybrid transmission and NiMH battery unit. The results suggest that 0.51-0.65 million HEVs will reach the EoL stage in FY2030, compared with only 11,000 HEVs in FY2010. As of FY2030, REE recovery potentials will increase to 220 tons and 2900 tons for EoL hybrid transmission and NiMH battery units, respectively. A total of 49,000 tons of REEs will be contained within HEV-specific components of HEVs still in use. Moreover, the potential for recovery of REEs from EoL hybrid transmissions and NiMH battery units is estimated to equal 35.4 and 92.1 % of respective demand.
机构:
School of Chemistry, The University of Melbourne, Victoria,3010, AustraliaSchool of Chemistry, The University of Melbourne, Victoria,3010, Australia
Croft, Charles F.
Almeida, M. Inês G.S.
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School of Chemistry, The University of Melbourne, Victoria,3010, AustraliaSchool of Chemistry, The University of Melbourne, Victoria,3010, Australia
Almeida, M. Inês G.S.
Kolev, Spas D.
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School of Chemistry, The University of Melbourne, Victoria,3010, Australia
Department of Chemical Engineering, The University of Melbourne, Victoria,3010, Australia
Faculty of Chemistry and Pharmacy, Sofia University St. Kl. Ohridski, 1 James Bourchier Blvd., Sofia,1164, BulgariaSchool of Chemistry, The University of Melbourne, Victoria,3010, Australia
机构:
Laboratory for Strategic Materials, University of Toronto, Department of Chemical Engineering and Applied Chemistry, 200 College Street, Toronto,ON,M5S 3E5, CanadaLaboratory for Strategic Materials, University of Toronto, Department of Chemical Engineering and Applied Chemistry, 200 College Street, Toronto,ON,M5S 3E5, Canada
机构:
Univ Fed Rio Grande do Sul, Dept Mat Engn, Postgrad Program Min Met & Mat Engn, BR-91509900 Porto Alegre, RS, BrazilUniv Fed Rio Grande do Sul, Dept Mat Engn, Postgrad Program Min Met & Mat Engn, BR-91509900 Porto Alegre, RS, Brazil
Munchen, Daniel Dotto
Stein, Ronei Tiago
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Univ Fed Rio Grande do Sul, Dept Mat Engn, Postgrad Program Min Met & Mat Engn, BR-91509900 Porto Alegre, RS, BrazilUniv Fed Rio Grande do Sul, Dept Mat Engn, Postgrad Program Min Met & Mat Engn, BR-91509900 Porto Alegre, RS, Brazil
Stein, Ronei Tiago
Veit, Hugo Marcelo
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Univ Fed Rio Grande do Sul, Dept Mat Engn, Postgrad Program Min Met & Mat Engn, BR-91509900 Porto Alegre, RS, BrazilUniv Fed Rio Grande do Sul, Dept Mat Engn, Postgrad Program Min Met & Mat Engn, BR-91509900 Porto Alegre, RS, Brazil
机构:
Tampere Univ, Fac Engn & Nat Sci, POB 541, FI-33104 Tampere, FinlandTampere Univ, Fac Engn & Nat Sci, POB 541, FI-33104 Tampere, Finland
Rasoulnia, Payam
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Barthen, Robert
Lakaniemi, Aino-Maija
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Tampere Univ, Fac Engn & Nat Sci, POB 541, FI-33104 Tampere, Finland
Ctr Technol, POB 310, FI-06101 Porvoo, FinlandTampere Univ, Fac Engn & Nat Sci, POB 541, FI-33104 Tampere, Finland
Lakaniemi, Aino-Maija
Ali-Loytty, Harri
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Tampere Univ, Surface Sci Grp, Photon Lab, POB 692, FI-33014 Tampere, FinlandTampere Univ, Fac Engn & Nat Sci, POB 541, FI-33104 Tampere, Finland
Ali-Loytty, Harri
Puhakka, Jaakko A.
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Tampere Univ, Fac Engn & Nat Sci, POB 541, FI-33104 Tampere, FinlandTampere Univ, Fac Engn & Nat Sci, POB 541, FI-33104 Tampere, Finland
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Tampere University, Faculty of Engineering and Natural Sciences, P.O. Box 541, Tampere,FI-33104, FinlandTampere University, Faculty of Engineering and Natural Sciences, P.O. Box 541, Tampere,FI-33104, Finland
Rasoulnia, Payam
Barthen, Robert
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Tampere University, Faculty of Engineering and Natural Sciences, P.O. Box 541, Tampere,FI-33104, FinlandTampere University, Faculty of Engineering and Natural Sciences, P.O. Box 541, Tampere,FI-33104, Finland
Barthen, Robert
Lakaniemi, Aino-Maija
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Tampere University, Faculty of Engineering and Natural Sciences, P.O. Box 541, Tampere,FI-33104, FinlandTampere University, Faculty of Engineering and Natural Sciences, P.O. Box 541, Tampere,FI-33104, Finland
Lakaniemi, Aino-Maija
Ali-Löytty, Harri
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Tampere University, Surface Science Group, Photonics Laboratory, P.O. Box 692, Tampere,FI-33014, FinlandTampere University, Faculty of Engineering and Natural Sciences, P.O. Box 541, Tampere,FI-33104, Finland
Ali-Löytty, Harri
Puhakka, Jaakko A.
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Tampere University, Faculty of Engineering and Natural Sciences, P.O. Box 541, Tampere,FI-33104, FinlandTampere University, Faculty of Engineering and Natural Sciences, P.O. Box 541, Tampere,FI-33104, Finland