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Life‐Cycle Assessment and Temporal Distributions of Emissions: Developing a Fleet‐Based Analysis

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  • Frank Field
  • Randolph Kirchain
  • Joel Clark

Abstract

Although the product‐centered focus of life‐cycle assessment has been one of its strengths, this analytical perspective embeds assumptions that may conflict with the realities of environmental problems. This article demonstrates, through a series of mathematical derivations, that all the products in use, rather than a single product, frequently should be the appropriate unit of analysis. Such a “fleet‐centered” approach supplies a richer perspective on the comparative emissions burdens generated by alternative products, and it eliminates certain simplifying assumptions imposed upon the analysis by a product‐centered approach. A sample numerical case, examining the comparative emissions of steel‐intensive and aluminum‐intensive automobiles, is presented to contrast the results of the two approaches. The fleet‐centered analysis shows that the “crossover time” (i.e., the time required before the fuel economy benefits of the lighter aluminum vehicle offset the energy intensity of the processes used to manufacture the aluminum in the first place) can be dramatically longer than that predicted by a product‐centered life‐cycle assessment. The fleet‐centered perspective explicitly introduces the notion of time as a critical element of comparative life‐cycle assessments and raises important questions about the role of the analyst in selecting the appropriate time horizon for analysis. Moreover, with the introduction of time as an appropriate dimension to life‐cycle assessment, the influences of effects distributed over time can be more naturally and consistently treated.

Suggested Citation

  • Frank Field & Randolph Kirchain & Joel Clark, 2000. "Life‐Cycle Assessment and Temporal Distributions of Emissions: Developing a Fleet‐Based Analysis," Journal of Industrial Ecology, Yale University, vol. 4(2), pages 71-91, April.
  • Handle: RePEc:bla:inecol:v:4:y:2000:i:2:p:71-91
    DOI: 10.1162/108819800569816
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    Cited by:

    1. Xiong, Siqin & Wang, Yunshi & Bai, Bo & Ma, Xiaoming, 2021. "A hybrid life cycle assessment of the large-scale application of electric vehicles," Energy, Elsevier, vol. 216(C).
    2. Das, Sujit, 2005. "Life cycle energy impacts of automotive liftgate inner," Resources, Conservation & Recycling, Elsevier, vol. 43(4), pages 375-390.
    3. Barbara V. Kasulaitis & Callie W. Babbitt & Andrew K. Krock, 2019. "Dematerialization and the Circular Economy: Comparing Strategies to Reduce Material Impacts of the Consumer Electronic Product Ecosystem," Journal of Industrial Ecology, Yale University, vol. 23(1), pages 119-132, February.

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