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- W4284897488 abstract "Compared with Portland cement, AAM was selected as the high-temperature resistant material. But there is still a trend toward a significant reduction in compressive strength at 600 ℃ and 800 ℃. Thus, in this paper, the Fe-based solid wastes, i.e., copper slag and iron tailing, were used to improve the compressive properties of fly ash-based AAM after high temperatures. The result shows that the residual compressive strength of the Fe-based solid waste samples is higher than that of the blank sample. The residual compressive strength increases by about 20 % at 800 ℃. Though the results of SEM-EDS, MIP, and XPS experiments, the mechanism of the effect of Fe-based solid wastes on the AAM could be summarized as follows: the iron element in the Fe-based solid waste samples is more concentrated after high temperature, which may be caused by the melting of the original iron mineral phase into a new mineral phase, filling the crack gap. And the formation of the Fe-O-Si amorphous phase would improve the densification of samples, resulting in the improvement of compressive strength." @default.
- W4284897488 created "2022-07-09" @default.
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- W4284897488 date "2022-12-01" @default.
- W4284897488 modified "2023-09-28" @default.
- W4284897488 title "Improvement of the thermal properties of alkali-activated fly ash after high temperature by the Fe-based solid wastes" @default.
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- W4284897488 doi "https://doi.org/10.1016/j.cscm.2022.e01303" @default.
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