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Fe-bearing magnesium silicate glasses for potential supplementary cementitious applications

Publiceringsår

2024

Upphovspersoner

Jiang, Chuqing; Santos, Hellen Silva; Yliniemi, Juho; Lindén, Johan; Ramteke, D. D.; Illikainen, Mirja; Cheeseman, Christopher; Kinnunen, Päivö

Abstrakt

<p>Supplementary cementitious materials (SCMs) are used to minimize CO<sub>2</sub> emissions associated with cement production. However, their global supply is insufficient to meet the growing market demand for cement and concrete, being essential to develop alternative SCMs based on abundant waste streams and low-cost resources. Fe-bearing Mg-based glasses are promising candidates with the potential to utilize high-volume feedstocks rich in Fe and Mg, but their effectiveness relies on deep understanding of the relationship between glass composition, reactivity, and pozzolanic properties. In this study, Fe-Mg silicate glasses with varying Fe concentrations were precisely engineered through a sol-gel route to better understand the impact of Fe on the glass structure and reactivity. While Fe<sup>3+</sup> typically acts as a glass network former, it was observed to also function as an intermediate cation, behaving either as a network former or modifier. Glass reactivity was assessed through aqueous dissolution tests, revealing that the composition and chemical environment of Fe<sup>3+</sup> within the glass network significantly influence the dissolution behavior. The introduction of Fe into Mg-Si glasses increased overall reactivity, potentially due to Fe-induced phase separation and the increasing of [FeO<sub>6</sub>] octahedra sites at higher Fe concentrations, which was also associated to network depolymerization. These findings deepen the understanding of the role of Fe<sup>3+</sup> in magnesium silicate glasses, provide key insights into optimizing glass reactivity by fine-tuning the composition, and indicate the potential of these glasses as promising SCMs.</p>
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Organisationer och upphovspersoner

Uleåborgs universitet

Jiang Chuqing

Ramteke Durgaprasad

Silva Santos Hellen

Yliniemi Juho Orcid -palvelun logo

Kinnunen Päivö Orcid -palvelun logo

Illikainen Mirja Orcid -palvelun logo

Åbo Akademi

Lindén Johan Orcid -palvelun logo

Publikationstyp

Publikationsform

Artikel

Moderpublikationens typ

Tidning

Artikelstyp

En originalartikel

Målgrupp

Vetenskaplig

Kollegialt utvärderad

Kollegialt utvärderad

UKM:s publikationstyp

A1 Originalartikel i en vetenskaplig tidskrift

Publikationskanalens uppgifter

Förläggare

Frontiers media

Volym

11

Artikelnummer

1509403

Publikationsforum

81370

Publikationsforumsnivå

1

Öppen tillgång

Öppen tillgänglighet i förläggarens tjänst

Ja

Öppen tillgång till publikationskanalen

Helt öppen publikationskanal

Licens för förläggarens version

CC BY

Parallellsparad

Ja

Parallellagringens licens

CC BY

Publiceringsavgift för öppen tillgång €

3408

Betalningsår för den öppen tillgång publiceringsavgiften

2024

Övriga uppgifter

Vetenskapsområden

Fysik; Materialteknik

Nyckelord

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Publiceringsland

Schweiz

Förlagets internationalitet

Internationell

Språk

engelska

Internationell sampublikation

Ja

Sampublikation med ett företag

Nej

DOI

10.3389/fmats.2024.1509403

Publikationen ingår i undervisnings- och kulturministeriets datainsamling

Ja