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◆ Minerals2025-12-11· Fly ash

Alkali-Activated Binders from Copper–Nickel Slag and Fly Ash: A Synergistic Effect

А. М. Калинкин, Е. В. Калинкина, Ekaterina A. Kruglyak, Alla G. Ivanova

原始摘要(英文原文)· Original abstract
The cement industry’s significant carbon footprint has driven research into sustainable alternatives like alkali-activated materials (AAMs). This study investigates the synergistic effect of blending copper–nickel slag (CNS) with fly ash (FA) to produce high-performance AAMs. Mechanically activated mixtures of CNS and FA, with FA content varying from 0 to 100%, were alkali-activated with sodium silicate. A distinct synergy was observed, with the blend of 80% CNS and 20% FA (AACNS–80) achieving the highest compressive strength (99.9 MPa at 28 days), significantly outperforming the single-precursor systems. Analytical techniques including thermogravimetry, FTIR spectroscopy, and SEM–EDS were used to elucidate the mechanisms behind this enhancement. The results indicate that the AACNS–80 formulation promotes a greater extent of reaction and forms a denser, more homogeneous microstructure. The synergy is attributed to an optimal particle packing density and the co-dissolution of precursors, leading to the formation of a complex gel that incorporates magnesium and iron from the slag. This work demonstrates the potential for valorizing copper–nickel slag in the production of high-strength, sustainable binders.
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Alkali-Activated Binders from Copper–Nickel Slag and Fly Ash: A Synergistic Effect — 科研速览 Science Skim