细度
硅酸钠
氢氧化钠
熔渣(焊接)
硅酸盐水泥
硫酸钠
水泥
材料科学
硫酸盐
冶金
钠
碱金属
微观结构
粉煤灰
化学
废物管理
复合材料
有机化学
工程类
作者
Alaa M. Rashad,Yun Bai,Muhammed Basheer,N.B. Milestone,N.C. Collier
标识
DOI:10.1016/j.cemconcomp.2012.12.010
摘要
Interest in alkali-activated slag as a construction material is increasing, primarily due to its environmentally friendly nature. Although strong alkaline activators, such as sodium hydroxide and sodium silicate solution, are preferred for high strength, none of them exists naturally and their manufacturing process is quite energy intensive. Whilst sodium sulfate (Na2SO4) can be obtained from natural resources, the early strength of Na2SO4 activated slag is usually low. In this paper, the effects of slag fineness and Na2SO4 dosage on strength, pH, hydration and microstructure were investigated and compared with those of a pure Portland cement (PC). Test results indicated that increasing the slag fineness is a more effective approach than increasing Na2SO4 dosage for increasing both the early and long-term strength of Na2SO4 activated slags. In addition, increasing the slag fineness can also increase the strength without increasing the pH of the hardened matrix, which is beneficial for immobilizing certain types of nuclear waste containing reactive metals and resins.
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