Contribution of Li-Ion Batteries to the Environmental Impact of Electric Vehicles
Вклад литий-ионных аккумуляторов в воздействие электромобилей на окружающую среду
2010-08-09
SCID: 54.1/9fbycee7
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Battery electric vehiclesEcoindicator 99Environmental impactLife cycle assessmentLithium-ion batteries
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Abstract (AI)
Battery-powered electric cars (BEVs) play a key role in future mobility scenarios. However, little is known about the environmental impacts of the production, use and disposal of the lithium ion (Li-ion) battery. This makes it difficult to compare the environmental impacts of BEVs with those of internal combustion engine cars (ICEVs). Consequently, a detailed lifecycle inventory of a Li-ion battery and a rough LCA of BEV based mobility were compiled. The study shows that the environmental burdens of mobility are dominated by the operation phase regardless of whether a gasoline-fueled ICEV or a European electricity fueled BEV is used. The share of the total environmental impact of E-mobility caused by the battery (measured in Ecoindicator 99 points) is 15%. The impact caused by the extraction of lithium for the components of the Li-ion battery is less than 2.3% (Ecoindicator 99 points). The major contributor to the environmental burden caused by the battery is the supply of copper and aluminum for the production of the anode and the cathode, plus the required cables or the battery management system. This study provides a sound basis for more detailed environmental assessments of battery based E-mobility.
Key Findings
1
Copper and aluminum supply for electrodes, cables, and the battery management system are the major contributors to battery-related environmental burdens.
2
Lithium extraction contributes less than 2.3% of the battery-related environmental impact according to Eco-indicator 99.
3
Mobility-related environmental burdens are dominated by the vehicle operation phase for both gasoline ICEVs and BEVs using European electricity.
4
The battery accounts for approximately 15% of the total environmental impact of electric mobility, measured in Eco-indicator 99 points.
5
The study compiles a detailed life-cycle inventory for lithium-ion batteries and a preliminary life-cycle assessment of battery-electric mobility.
Research Object
Li-ion batteries used in battery-powered electric vehicles (BEVs)
Research Subject
The life-cycle environmental impacts and contribution of Li-ion batteries to the environmental burden of electric mobility, including impacts from material supply, production, use, and disposal
Publication Details
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2010-08-09
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