Menéndez Esperanza, Sanjuán Miguel Ángel, García-Roves Ricardo, Argiz Cristina, Recino Hairon
The Eduardo Torroja Institute for Construction Science (Spanish National Research Council, CSIC), C/Serrano Galvache, 4, 28033 Madrid, Spain.
Civil Engineering School, Technical University of Madrid (UPM), C/Profesor Aranguren, 3, Ciudad Universitaria, 28040 Madrid, Spain.
Materials (Basel). 2021 May 29;14(11):2948. doi: 10.3390/ma14112948.
Alkali-silica reaction (ASR) is a swelling reaction that occurs in concrete structures over time between the reactive amorphous siliceous aggregate particles and the hydroxyl ions of the hardened concrete pore solution. The aim of this paper is to assess the effect of pozzolanic Portland cements on the alkali-silica reaction (ASR) evaluated from two different points of view: (i) alkali-silica reaction (ASR) abatement and (ii) climatic change mitigation by clinker reduction, i.e., by depleting its emissions. Open porosity, SEM microscopy, compressive strength and ASR-expansion measurements were performed in mortars made with silica fume, siliceous coal fly ash, natural pozzolan and blast-furnace slag. The main contributions are as follows: (i) the higher the content of reactive silica in the pozzolanic material, the greater the ASR inhibition level; (ii) silica fume and coal fly ash are the best Portland cement constituents for ASR mitigation.
碱-硅反应(ASR)是一种随着时间推移在混凝土结构中发生的膨胀反应,它发生在活性无定形硅质骨料颗粒与硬化混凝土孔隙溶液中的氢氧根离子之间。本文的目的是从两个不同角度评估火山灰质波特兰水泥对碱-硅反应(ASR)的影响:(i)减轻碱-硅反应(ASR);(ii)通过减少熟料(即减少其排放)来缓解气候变化。对用硅灰、硅质粉煤灰、天然火山灰和高炉矿渣制成的砂浆进行了开孔率、扫描电子显微镜观察、抗压强度和ASR膨胀测量。主要贡献如下:(i)火山灰质材料中活性二氧化硅含量越高,ASR抑制水平越高;(ii)硅灰和粉煤灰是减轻ASR的最佳波特兰水泥成分。