<  Retour au portail Polytechnique Montréal

Spatialized life cycle assessment of fluid milk production and consumption in the United States

Andrew D. Henderson, Anne Asselin-Balencon, Martin C. Heller, Jasmina Burek, Daesoo Kim, Lindsay Lessard, Manuele Margni, Rosie Saad, Marty D. Matlock, Greg Thoma, Ying Wang et Olivier Jolliet

Article de revue (2023)

Document en libre accès dans PolyPublie et chez l'éditeur officiel
[img]
Affichage préliminaire
Libre accès au plein texte de ce document
Version officielle de l'éditeur
Conditions d'utilisation: Creative Commons: Attribution (CC BY)
Télécharger (2MB)
[img]
Affichage préliminaire
Libre accès au plein texte de ce document
Matériel supplémentaire
Conditions d'utilisation: Creative Commons: Attribution (CC BY)
Télécharger (2MB)
Afficher le résumé
Cacher le résumé

Abstract

Purpose: Understanding the main factors affecting the environmental impacts of milk production and consumption along the value chain is key towards reducing these impacts. This paper aims to present detailed spatialized distributions of impacts associated with milk production and consumption across the United States (U.S.), accounting for locations of both feed and on-farm activities, as well as variations in impact intensity. Using a Life Cycle Analysis (LCA) approach, focus is given to impacts related to (a) water consumption, (b) eutrophication of marine and freshwater, (c) land use, (d) human toxicity and ecotoxicity, and (e) greenhouse gases. Methods: Drawing on data representing regional agricultural practices, feed production is modelled for 50 states and 18 main watersheds and linked to regions of milk production in a spatialized matrix-based approach to yield milk produced at farm gate. Milk processing, distribution, retail, and consumption are then modelled at a national level, accounting for retail and consumer losses. Custom characterization factors are developed for freshwater and marine eutrophication in the U.S. context. Results and discussion: In the overall life cycle, up to 30% of the impact per kg milk consumed is due to milk losses that occur during the retail and consumption phases (i.e., after production), emphasizing the importance of differentiating between farm gate and consumer estimates. Water scarcity is the impact category with the highest spatial variability. Watersheds in the western part of the U.S. are the dominant contributors to the total water consumed, with 80% of water scarcity impacts driven by only 40% of the total milk production. Freshwater eutrophication also has strong spatial variation, with high persistence of emitted phosphorus in Midwest and Great Lakes area, but high freshwater eutrophication impacts associated with extant phosphorus concentration above 100 µg/L in the California, Missouri, and Upper Mississippi water basins. Overall, normalized impacts of fluid milk consumption represent 0.25% to 0.8% of the annual average impact of a person living in the U.S. As milk at farm gate is used for fluid milk and other dairy products, the production of milk at farm gate represents 0.5% to 3% of this annual impact. Dominant contributions to human health impacts are from fine particulate matter and from climate change, whereas ecosystem impacts of milk are mostly due to land use and water consumption. Conclusion: This study provides a systematic, national perspective on the environmental impacts of milk production and consumption in the United States, showing high spatial variation in inputs, farm practices, and impacts.

Mots clés

Matériel d'accompagnement:
Département: Département de mathématiques et de génie industriel
Centre de recherche: CIRAIG - Centre international de référence sur le cycle de vie des produits, procédés et services
Organismes subventionnaires: Dairy Research Institute
URL de PolyPublie: https://publications.polymtl.ca/52748/
Titre de la revue: Sustainability (vol. 15, no 3)
Maison d'édition: MDPI
DOI: 10.3390/su15031890
URL officielle: https://doi.org/10.3390/su15031890
Date du dépôt: 18 avr. 2023 14:58
Dernière modification: 11 août 2026 15:37
Citer en APA 7: Henderson, A. D., Asselin-Balencon, A., Heller, M. C., Burek, J., Kim, D., Lessard, L., Margni, M., Saad, R., Matlock, M. D., Thoma, G., Wang, Y., & Jolliet, O. (2023). Spatialized life cycle assessment of fluid milk production and consumption in the United States. Sustainability, 15(3), 1890 (23 pages). https://doi.org/10.3390/su15031890

Statistiques

Total des téléchargements à partir de PolyPublie

Téléchargements par année

Provenance des téléchargements

Dimensions

Actions réservées au personnel

Afficher document Afficher document