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Comparative reactivity and microstructural characterization of mineral wastes in alkali activated binders

  • Amr Hassan
  • , Stefanie Radinger
  • , Ognjen Rudic
  • , Bettina Ratz
  • , Florian Roman Steindl
  • , Florian Mittermayr
  • , Anna Jodlbauer
  • , Martin Wilkening
  • , Cyrill Grengg
  • CD-Labor für Reststoffbasierte Geopolymer Baustoffe in der CO2-neutralen Kreislaufwirtschaft
  • Technische Universität Graz
  • Universität Innsbruck

Publikation: Beitrag in FachzeitschriftArtikelForschungBegutachtung

Abstract

The development of alkali-activated materials (AAMs) based on mineral wastes and/or secondary raw materials (WSRM) as main binder components offers a great potential to increase material circularity and to reduce environmental implications related to material production. This study assesses the behavior of 6 Austrian WSRMs when utilized as major binder components alongside metakaolin (MK) (45 wt% WSRM/ 55 wt% MK) in potassium water glass activated binders. The utilized WSRMs comprised two types of steel slags, three types of construction and demolition waste including mineral stone wool, and glass waste. Highly functional binders with 90-day strengths ranging from 71 to 106 MPa were obtained. Nevertheless, the wide variety of setting behavior, strength, and microstructural characteristics revealed the distinct properties yielded by each WSRM. Steel slags showed relatively quick setting, high heat release, high strengths, and a strong indication on the coexistence of C-A-S-H gel with K(C)-A-S-H gel as the main binder phase. The other WSRMs exhibited longer setting times, lower early strengths and strength gain rates with indications of the dominance of K(C)-A-S-H gel phases in the reaction products. The outcomes of this paper foster the strong potential of the used WSRMs as primary AAM binder components and lays the foundation for further optimizations and investigation of WSRM-based AAMs.
OriginalspracheEnglisch
Aufsatznummer143697
Seitenumfang15
FachzeitschriftConstruction & building materials (Construction and building materials)
Jahrgang2025
AusgabenummerVolume 495, 17 October
DOIs
PublikationsstatusElektronische Veröffentlichung vor Drucklegung. - 19 Sept. 2025

Bibliographische Notiz

Publisher Copyright: © 2025 The Authors

UN SDGs

Dieser Output leistet einen Beitrag zu folgendem(n) Ziel(en) für nachhaltige Entwicklung

  1. SDG 8 – Anständige Arbeitsbedingungen und wirtschaftliches Wachstum
    SDG 8 – Anständige Arbeitsbedingungen und wirtschaftliches Wachstum
  2. SDG 12 – Verantwortungsvoller Konsum und Produktion
    SDG 12 – Verantwortungsvoller Konsum und Produktion

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