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Alkali-activated slag (AAS) paste: Correlation between durability and microstructural characteristics

机译:碱活性渣(AAS)粘贴:耐久性与微观结构特征之间的相关性

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摘要

This study was aimed at evaluating the effects of alkali activator solution and utilization of silica fume (SF) on durability and microstructural characteristics of alkali-activated ground granulated blast furnace slag (GGBFS) pastes. The pastes were activated with sodium silicate (SS) blended with NaOH (SH) solution with molar concentrations of 8 M, 12 M, and 16 M and SS:SH ratios of 1.0, 2.5, and 4.0. The same mixes were prepared with SF as partial replacement of GGBFS at a dosage of 10% by weight. The initial and final water absorption as well as the electrical resistivity of the specimens were measured. The optimal paste fabricated with 12 M NaOH solution and SS:SH ratio of 2.5 showed the lowest water absorption and the highest electrical resistivity. Inclusion of SF reduced the final water absorption by 29% and increased the electrical resistivity by 62% compared to the same mix without SF. The observations were confirmed by the results of scanning electron microscopy (SEM) where the optimal paste showed a dense matrix with few pores. Furthermore, the chemical composition of the pastes was studied through energy-dispersive spectrometry (EDS) and X-ray diffraction (XRD) analyses. Moreover, the resistance to aggressive environment conditions of the pastes was examined through exposure to 5% hydrochloric acid and nitric acid up to 90 days. Generally, specimens were more resistant to nitrates. The specimens showed about 5-8% increase in their compressive strength compared to the unconditioned specimens during the first 28 days; however, up to 22% reduction in compressive strength was noticed after 90 days of exposure. It was shown that SS:SH ratio has a higher contribution to acid attack resistance of alkali-activated slag (AAS) pastes. (C) 2020 Published by Elsevier Ltd.
机译:本研究旨在评估碱活化剂溶液和利用二氧化硅烟气(SF)对碱活化地颗粒高炉渣(GGBFS)糊剂的耐久性和微观结构特征的影响。用硅酸钠(SS)用与NaOH(SH)溶液共混的硅酸钠(SS)激活浆料,其摩尔浓度为8m,12m和16m,SS:SH比为1.0,2.5和4.0。用SF制备相同的混合物,作为10重量%的剂量为GGBF的部分替代。测量初始和最终吸水以及样品的电阻率。用12M NaOH溶液和SS制造的最佳糊剂:SH比为2.5的吸水率和最高电阻率。将SF的包含将最终吸收减少29%,与不含SF的相同混合相比,将电阻率增加62%。通过扫描电子显微镜(SEM)的结果证实了观察结果,其中最佳糊状物显示出浓密的基质,孔隙少。此外,通过能量分散光谱(EDS)和X射线衍射(XRD)分析来研究浆料的化学成分。此外,通过暴露于5%盐酸和硝酸,对浆料的侵蚀性环境条件的抗性达到90天。通常,标本更耐硝酸盐。在前28天期间,标本表现出与无条件标本相比其抗压强度的增加约5-8%;然而,在暴露90天后,注意到压缩强度的降低高达22%。表明SS:SH比对碱活化炉渣(AAS)浆料的酸侵蚀性具有更高的贡献。 (c)2020由elestvier有限公司发布

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