This book aims at quantifying the environmental burdens caused by an average German
battery electric vehicle (BEV) throughout its entire life cycle. For this purpose, first, the
technical components of a battery electric vehicle are discussed in detail. Based on this, a
vehicle is defined that represents the registered BEVs in Germany. The next section
addresses the method used for quantifying environmental burdens named life cycle
assessment (LCA). Subsequently, the method is applied to the average German BEV. The
impacts of a BEV on the environment are assessed considering two scenarios: the first
scenario involves the present energy generation structure, whereas the second scenario
assumes an energy generation structure based on renewable energy sources. The focus
of the assessment is on global warming with a time horizon of 100 years, acidification,
photochemical ozone formation, and resource use of energy carriers.
The results of the assessment point out the impacts originating from the production, use,
and end of life phase of an average German BEV. In addition, the sensitivities of the
results on specifications like energy consumption or battery lifetime are examined.
The book is addressed to professionals, students, and interested non-professionals.
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This book aims at quantifying the environmental burdens caused by an average German
battery electric vehicle (BEV) throughout its entire life cycle. For this purpose, first, the
technical components of a battery electric vehicle are discussed in detail. Based on this, a
vehicle is defined that represents the registered BEVs in Germany. The next section
addresses the method used for quantifying environmental burdens named life cycle
assessment (LCA). Subsequently, the method is applied to th...
»