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Mechanical properties and setting time of geopolymer paste and mortar produced from ferrochrome slag

机译:铬铁渣和砂浆机械性能和凝固时间由铬铁渣生产

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Many researches have been done to investigate using raw materials in the production of geopolymer cements. The aim of this paper is the effect of dosage of alkali and silica modulus when using sodium metasilicate solution at different curing conditions on the geopolymerisation of ferrochrome slag (FS). As alkali activation for geopolymerization, NaOH and Na2SiO3 solution were used. Geopolymer cement was produced using FS and 3 different silica modulus (0.50, 0.60, and 0.70) and 4 different Na2O concentrations (4, 7, 10, and 12%). The setting time, heat of hydration and compressive strength of geopolymer paste samples and compressive strength of geopolymer mortar samples were obtained. The setting time varies between 120 and 870 min, it shows variability depending on content of Na2O. As a result of the highest 28 day strength of the geopolymer paste sample was obtained at Na2O concentration of 7% and at silica modulu of 0.70. Geopolymer mortars were prepared for the determination of compressive strength by adding FS:sand:alkali activator ratio 1∶2∶0.30, 0.35 and 0.40. The specimens were cured at 60°C, 80°C kept in 20 hours and the other mortars were stored under laboratory conditions. Compressive strength of the material decreases, when w/b ratio increases. The highest 28 day strength of the geopolymer mortar was obtained at 0.30 w/b ratio and at curing temperature laboratory conditions. The hydration heat of geopolymer paste samples was found to be less than normal Portland cements. Microstructural changes in the specimens were studied with SEM and XRD.
机译:已经完成了许多研究来调查在地缘聚合物水泥的生产中使用原材料。本文的目的是当在不同固化条件下使用碳酸钠溶液时,碱金属和二氧化硅模量的用量效果在铬铁(FS)的地质聚合物上使用碳酸钠溶液。作为地缘聚合物化的碱活化,使用NaOH和Na2SiO 3溶液。使用Fs和3种不同的二氧化硅模量(0.50,0.60和0.70)和4种不同的Na 2 O浓度(4,7,10和12%)制备地质聚合物水泥。获得了凝固时间,水化热量和地质聚合物浆料样品的抗压强度的抗压强度。设定时间在120到870分钟之间变化,因此取决于Na2O的内容。由于在7%的Na 2 O浓度和0.70的二氧化硅Modulu的Na 2 O浓度下获得了最高的28天的强度。通过添加Fs:砂:碱活化剂比1:2:0.30,0.35和0.40,制备地质聚合物砂浆来确定压缩强度的测定。试样在60℃下固化,在20小时内保持80℃,并在实验室条件下储存其他砂浆。当W / B比增加时,材料的抗压强度降低。在0.30W / B的比例和固化温度实验室条件下获得地质聚合物研钵的最高28天强度。发现地缘聚合物浆料样品的水化热量小于正常的波特兰水泥。使用SEM和XRD研究了标本的微观结构变化。

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