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Errors in Conventional and Input‐Output—based Life—Cycle Inventories

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  • Manfred Lenzen

Abstract

Conventional process‐analysis‐type techniques for compiling life‐cycle inventories suffer from a truncation error, which is caused by the omission of resource requirements or pollutant releases of higher‐order upstream stages of the production process. The magnitude of this truncation error varies with the type of product or process considered, but can be on the order of 50%. One way to avoid such significant errors is to incorporate input‐output analysis into the assessment framework, resulting in a hybrid life‐cycle inventory method. Using Monte‐Carlo simulations, it can be shown that uncertainties of input‐output– based life‐cycle assessments are often lower than truncation errors in even extensive, third‐order process analyses.

Suggested Citation

  • Manfred Lenzen, 2000. "Errors in Conventional and Input‐Output—based Life—Cycle Inventories," Journal of Industrial Ecology, Yale University, vol. 4(4), pages 127-148, October.
  • Handle: RePEc:bla:inecol:v:4:y:2000:i:4:p:127-148
    DOI: 10.1162/10881980052541981
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    Cited by:

    1. Ida Karlsson & Johan Rootzén & Alla Toktarova & Mikael Odenberger & Filip Johnsson & Lisa Göransson, 2020. "Roadmap for Decarbonization of the Building and Construction Industry—A Supply Chain Analysis Including Primary Production of Steel and Cement," Energies, MDPI, vol. 13(16), pages 1-40, August.
    2. Wang, Changbo & Zhang, Lixiao & Chang, Yuan & Pang, Mingyue, 2021. "Energy return on investment (EROI) of biomass conversion systems in China: Meta-analysis focused on system boundary unification," Renewable and Sustainable Energy Reviews, Elsevier, vol. 137(C).
    3. Venkatraj, V. & Dixit, M.K., 2021. "Life cycle embodied energy analysis of higher education buildings: A comparison between different LCI methodologies," Renewable and Sustainable Energy Reviews, Elsevier, vol. 144(C).
    4. Lara Allende, Alejandro & Stephan, André, 2022. "Life cycle embodied, operational and mobility-related energy and greenhouse gas emissions analysis of a green development in Melbourne, Australia," Applied Energy, Elsevier, vol. 305(C).
    5. Piñero, Pablo & Pérez-Neira, David & Infante-Amate, Juan & Chas-Amil, María L. & Doldán-García, Xoán R., 2020. "Unequal raw material exchange between and within countries: Galicia (NW Spain) as a core-periphery economy," Ecological Economics, Elsevier, vol. 172(C).
    6. Stephan, André & Stephan, Laurent, 2020. "Achieving net zero life cycle primary energy and greenhouse gas emissions apartment buildings in a Mediterranean climate," Applied Energy, Elsevier, vol. 280(C).

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