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Development of a conceptual framework and its associated indicator to take the dissipation of non- energetic abiotic resources into account within Life Cycle Assessment (LCA)

Communication avec acte
Auteur
CHARPENTIER-PONCELET, Alexandre
24493 Institut des Sciences Moléculaires [ISM]
SONNEMANN, Guido
24493 Institut des Sciences Moléculaires [ISM]
ccLARATTE, Bertrand
LOUBET, Philippe
24493 Institut des Sciences Moléculaires [ISM]
MULLER, Stéphanie
18404 Bureau de Recherches Géologiques et Minières [BRGM]
VILLENEUVE, Jacques
18404 Bureau de Recherches Géologiques et Minières [BRGM]

URI
http://hdl.handle.net/10985/15143
Date
2019

Résumé

Life Cycle Assessment (LCA) is a tool allowing to assess environmental impacts of a product or service over its whole life cycle. It may serve as a support for product eco-design, policy- makers and decision-takers in governments and industries. LCA is relatively new, and methodological improvements are still required for it to be as robust as possible in order for it to fulfill its function and to be considered reliable and credible. A proper method to assess resource use in LCA has yet to be developed. In this regard, our work in progress is aiming at a better understanding and assessment of resource use impacts on Natural Resources Area of Protection in LCA with a dissipation approach.

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  • Institut de Mécanique et d’Ingénierie de Bordeaux (I2M)

Documents liés

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  • A necessary step forward for proper non-energetic abiotic resource use consideration in life cycle assessment: The functional dissipation approach using dynamic material flow analysis data 
    Article dans une revue avec comité de lecture
    CHARPENTIER-PONCELET, Alexandre; LOUBET, Philippe; ccLARATTE, Bertrand; MULLER, Stéphanie; VILLENEUVE, Jacques; SONNEMANN, Guido (Elsevier, 2019)
    The impact of non-energetic abiotic resource use in life cycle as- sessment (LCA) has been receiving much attention in the last decades, and even more so since the resource efficiency and circular economy have become ...
  • Life cycle impact assessment methods for estimating the impacts of dissipative flows of metals 
    Article dans une revue avec comité de lecture
    CHARPENTIER-PONCELET, Alexandre; HELBIG, Christoph; LOUBET, Philippe; BEYLOT, Antoine; MULLER, Stéphanie; VILLENEUVE, Jacques; ccLARATTE, Bertrand; THORENZ, Andrea; TUMA, Axel; SONNEMANN, Guido (Wiley, 2021)
    The dissipation of metals leads to potential environmental impacts, usually evaluated for product systems with life cycle assessment. Dissipative flows of metals become inaccessible for future users, going against the ...
  • Linkage of impact pathways to cultural perspectives to account for multiple aspects of mineral resource use in life cycle assessment 
    Article dans une revue avec comité de lecture
    CHARPENTIER-PONCELET, Alexandre; BEYLOT, Antoine; LOUBET, Philippe; ccLARATTE, Bertrand; MULLER, Stéphanie; VILLENEUVE, Jacques; SONNEMANN, Guido (Elsevier BV, 2022)
    Important advances have been made to define the multiple impact pathways relating mineral resource use to the area of protection (AoP) natural resources in life cycle assessment (LCA). Yet, the link between stakeholders’ ...
  • Towards interim characterization factors to account for the dissipation of non-energetic abiotic resource in life cycle assessment 
    Communication avec acte
    ccCHARPENTIER PONCELET, Alexandre; LOUBET, Philippe; ccLARATTE, Bertrand; MULLER, Stéphanie; VILLENEUVE, Jacques; SONNEMANN, Guido (2020)
    Towards interim characterization factors to account for the dissipation of non-energetic abiotic resource in life cycle assessment
  • Losses and lifetimes of metals in the economy 
    Article dans une revue avec comité de lecture
    CHARPENTIER PONCELET, Alexandre; HELBIG, Christoph; LOUBET, Philippe; BEYLOT, Antoine; MULLER, Stéphanie; VILLENEUVE, Jacques; ccLARATTE, Bertrand; THORENZ, Andrea; TUMA, Axel; SONNEMANN, Guido (Springer Nature, 2022-05-19)
    The consumption of most metals continues to rise following ever-increasing population growth, affluence and technological development. Sustainability considerations urge greater resource efficiency and retention of metals ...

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