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首页> 外文期刊>Journal of materials in civil engineering >Influence of Nitrate Corrosion Inhibitors on Phase Stability of Alkali-Activated Slag against Chloride Binding and Natural Carbonation
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Influence of Nitrate Corrosion Inhibitors on Phase Stability of Alkali-Activated Slag against Chloride Binding and Natural Carbonation

机译:硝酸盐缓蚀剂对碱渣对氯离子结合和天然碳酸化的相稳定性的影响

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Nitrate and nitrite-based corrosion inhibitors have been studied for decades for mitigating corrosion of steel embedded in ordinary portland cement (OPC) concrete; however, few studies are available regarding the effect of nitrate or nitrite on the performance of alkali-activated binders. This work, for the first time, investigates the influence of three nitrate-containing activators (i.e., sodium nitrate, magnesium nitrate, and aluminum nitrate, each mixed with sodium hydroxide solution) on the strength development, pore structure, phase assemblage, and phase stability of alkali-activated slag (AAS) binders upon exposure to chloride and natural carbonation. The results show that the addition of nitrate, regardless of its form, does not substantially alter the type of main reacted phases, i.e., calcium-aluminosilicate-hydrate (C-A-S-H) and Mg-Al layered double hydroxides (LDHs), in AAS; however, the addition of aluminum nitrate improves its compressive strength, boosts the formation of Ca-Al LDHs (AFm-type phase), and likely inserts nitrate anions in the interlayer of formed Ca-Al or Mg-Al LDHs. The findings suggest that the nitrate-intercalated Ca-Al LDHs and/or Mg-Al LDHs, if formed to some extent, can potentially release nitrate ions during chloride binding and carbonation, working as a smart corrosion inhibitor.
机译:为了减轻埋在普通硅酸盐水泥(OPC)混凝土中的钢的腐蚀,已经研究了硝酸盐和亚硝酸盐基腐蚀抑制剂数十年。然而,关于硝酸盐或亚硝酸盐对碱活化粘合剂性能的影响的研究很少。这项工作是第一次研究三种含硝酸盐的活化剂(即硝酸钠,硝酸镁和硝酸铝,分别与氢氧化钠溶液混合)对强度发展,孔结构,相组装和相的影响。碱活化矿渣(AAS)粘合剂在暴露于氯化物和自然碳酸中后的稳定性。结果表明,硝酸盐,无论其形式如何,都基本上不改变主要反应相的类型,即在AAS中钙铝硅酸盐水合物(C-A-S-H)和Mg-Al层状双氢氧化物(LDHs);但是,添加硝酸铝可提高其抗压强度,促进Ca-Al LDH(AFm型相)的形成,并可能在形成的Ca-Al或Mg-Al LDH的中间层中插入硝酸根阴离子。这些发现表明,硝酸根离子嵌入的Ca-Al LDHs和/或Mg-Al LDHs如果形成一定程度,可以在氯离子结合和碳酸化过程中潜在释放硝酸根离子,起到智能腐蚀抑制剂的作用。

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