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Towards Sustainable Material: Optimizing Geopolymer Mortar Formulations for 3D Printing: A Life Cycle Assessment Approach

  • Charlotte Roux
  • , Julien Archez
  • , Corentin Le Gall
  • , Myriam Saadé
  • , Adélaïde Féraille
  • , Jean François Caron
  • Mines ParisTech
  • Université Paris-Est

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

Geopolymer-based concretes have been elaborated among others for their potential to lower the environmental impact of the construction sector. The rheology and workability of fresh geopolymers make them suitable for new applications such as 3D printing. In this paper, we aim to develop a potassium silicate- and metakaolin-based geopolymer mortar with sand and local earth additions suited for 3D printing and an environmental assessment framework for this material. The methodology aims at the optimization of both the granular skeleton and the geopolymer matrix for the development of a low-environmental-impact material suited for 3D printing. Using this approach, various metakaolin/earth geopolymer mortars are explored from a mechanical and environmental point of view. The environmental assessment of the lab-scale process shows an improvement for the climate change category but a degradation of other indicators, compared to Portland-cement-based concrete. Several promising options exist to further optimize the process and decrease its environmental impacts. This constitutes the main research perspective of this work.

langue originaleAnglais
Numéro d'article3328
journalSustainability (Switzerland)
Volume16
Numéro de publication8
Les DOIs
étatPublié - 1 avr. 2024
Modification externeOui

SDG des Nations Unies

Ce résultat contribue à ou aux Objectifs de développement durable suivants

  1. SDG 7 - Énergie abordable et propre
    SDG 7 Énergie abordable et propre
  2. SDG 12 - Consommation et production responsables
    SDG 12 Consommation et production responsables
  3. SDG 13 - Action climatique
    SDG 13 Action climatique

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