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The impact of carbonation on the microstructure and solubility of major constituents in microconcrete materials with varying alkalinities due to fly ash replacement of ordinary Portland cement

机译:由于粉煤灰替代普通硅酸盐水泥,碳酸化对碱度不同的微混凝土材料中主要成分的微观结构和溶解度的影响

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The impact of alkalinity on the carbonation reaction in microconcrete mortars was assessed by evaluating the changes in the microstructure, solubility, and migration of major constituents (i.e., calcium, aluminum, and silicon) for cases of partial replacement of the Portland cement with different fly ashes having varying alkalinity. Several experimental techniques (i.e., SEM-EDS, U.S. EPA Method 1313, TIC, and TGA) were used and compared as tools to characterize changes due to the carbonation reaction. The rate and extent of carbonation was inversely related to the alkalinity of the material as evident by the increase in carbonation depth, reduction of the natural pH of the material, extent of the changes in the microstructure, and extent of reaction. Calcium migrated to the carbonated region while conversely silicon migrated from the carbonated region in response to relative solubility and therefore different diffusivity in the carbonated and uncarbonated regions for each constituent. (C) 2016 Published by Elsevier Ltd.
机译:通过评估在用不同粉煤灰部分替代波特兰水泥的情况下,通过评估微观结构,溶解度和主要成分(即钙,铝和硅)的迁移,评估了碱度对微混凝土砂浆中碳酸化反应的影响。具有不同碱度的骨灰。使用了几种实验技术(即SEM-EDS,美国EPA方法1313,TIC和TGA),并将其作为表征碳化反应变化的工具进行了比较。碳化的速率和程度与材料的碱度成反比,这可以通过碳化深度的增加,材料的天然pH值的降低,微观结构变化的程度以及反应程度来证明。钙迁移至碳酸化区域,而硅则响应于相对溶解度而从碳酸化区域迁移,因此,每种成分在碳酸化和非碳酸化区域的扩散系数不同。 (C)2016由Elsevier Ltd.出版

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