Economies of scale for future lithium-ion battery recycling infrastructure
Tài liệu tham khảo
Arsova, 2008, The state of garbage in America, Biocycle, 49, 22
Bell, 2010, 10
Berdichevsky, 2006, The tesla roadster battery system, Tesla Motors, 1
Chilton, 1950, Six-tenths factor applies to complete plant costs, Chemical Engineering, 57, l12
Content, 2012, Johnson Controls to launch $150 million battery recycling center, Milwaukee. Wisconsin Journal Sentinel
Dewulf, 2010, Recycling rechargeable lithium ion batteries: critical analysis of natural resource savings, Resources, Conservation and Recycling, 54, 229, 10.1016/j.resconrec.2009.08.004
Enterprise, 2009
European, 2003, Directive 2002/95/EC on the restriction of the use of certain hazardous substances in electrical and electronic equipment (RoHS), Official Journal of the European Union, L37, 19
European, 2003, The Waste Electrical and Electronic Equipment Directive WEEE 02/96/EC, Official Journal L, 37, 24
Fenton, 2001
Gaines, 2011
GarbOilPower, 2010
Garrison, 2003
Graedel, 2011
Hernandez, 2011
Joint Venture, 2011
Kahhat, 2008, Exploring e-waste management systems in the United States, Resources, Conservation and Recycling, 52, 955, 10.1016/j.resconrec.2008.03.002
Kang, 2005, Electronic waste recycling: a review of U.S. infrastructure and technology options, Resources, Conservation and Recycling, 45, 368, 10.1016/j.resconrec.2005.06.001
Kang, 2010, Recovery of cobalt sulfate from spent lithium ion batteries by reductive leaching and solvent extraction with Cyanex 272, Hydrometallurgy, 100, 168, 10.1016/j.hydromet.2009.10.010
Krikke, 1999, Business case Oce: reverse logistic network re-design for copiers, OR-Spektrum, 21, 381, 10.1007/s002910050095
Labouze, 2003
Lain, 2001, Recycling of lithium ion cells and batteries, Journal of Power Sources, 97, 736, 10.1016/S0378-7753(01)00600-0
Li, 2009, A combined recovery process of metals in spent lithium-ion batteries, Chemosphere, 77, 1132, 10.1016/j.chemosphere.2009.08.040
Lindhqvist, 2000, Extended producer responsibility in cleaner production: policy principle to promote environmental improvements of product systems, International Institute for Industrial Environmental Economics Dissertations, 2000
Lowry, 2009, Nanomaterial transport, transformation, and fate in the environment, Nanomaterials: Risks and Benefits, 125
Lucas, 2012
Marano, 2009, Lithium-ion batteries life estimation for plug-in hybrid electric vehicles, IEEE, 536
McMichael, 1998, Recycling batteries, Spectrum, IEEE, 35, 35, 10.1109/6.648673
Mikolajczak, 2011, 71
Moore, 1959, Economies of scale: some statistical evidence, The Quarterly Journal of Economics, 73, 232, 10.2307/1883722
Moura Bernardes, 2003, Collection and recycling of portable batteries: a worldwide overview compared to the Brazilian situation, Journal of Power Sources, 124, 586, 10.1016/S0378-7753(03)00810-3
Nan, 2005, Recovery of metal values from spent lithium-ion batteries with chemical deposition and solvent extraction, Journal of Power Sources, 152, 278, 10.1016/j.jpowsour.2005.03.134
New York State Rechargeable Battery Law. Environmental Conservation Law Title 18 Rechargeable Battery Recycling (27-1801–27-1811), 2011.
Notter, 2010, Contribution of Li-ion batteries to the environmental impact of electric vehicles, Environmental Science & Technology, 44, 6550, 10.1021/es903729a
O'Sullivan, 2007
Ponce-Cueto, 2011, 104
Rechargeable Battery Recycling Act of 2006. Public Resources [42451.–42456.]
Richa, 2013, A future perspective on lithium-ion battery waste flows from electric vehicles, Resources, Conservation, and Recycling
Ritchie, 2006, Recent developments and likely advances in lithium-ion batteries, Journal of Power Sources, 162, 809, 10.1016/j.jpowsour.2005.07.014
Roell, 2011, Power forward
Russo, 2012
Schneider, 2007, Who's resuscitating the electric car?, American Scientist, 95, 403, 10.1511/2007.67.403
Shapek, 1995, Local government household battery collection programs: costs and benefits, Resources, Conservation and Recycling, 15, 1, 10.1016/0921-3449(95)00025-E
Sibley, 2004
Sibley, 2011
USGS, 2012
Viscusi, 2009
Wang, 2013, Economic and environmental characterization of an evolving Li-ion battery waste stream, Journal of Environmental Management
Zhang, 1998, Hydrometallurgical process for recovery of metal values from spent lithium-ion secondary batteries, Hydrometallurgy, 47, 259, 10.1016/S0304-386X(97)00050-9
Zhao, 2004, Recovery of copper from waste printed circuit boards, Minerals and Metallurgical Processing, 21, 99