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Mutual activation of blast furnace slag and a high-calcium fly ash rich in free lime and sulfates

机译:高炉渣与富含游离石灰和硫酸盐的高钙粉煤灰相互活化

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摘要

Alkaline activation of fly ash and blast furnace slag has gained interest due to a desire to avoid Portland cement in mixtures. Outstanding mechanical performance and durability is reported, but often when the activator dosage is high which can have various negative environmental impacts that can overshadow the carbon reduction benefit. This study investigates the use of a ground slag, and a high-lime fly ash, rich in free lime and sulfates, to activate each other and render mortars which don't incorporate any Portland cement or an added chemical activator, but still have useful strengths. The ash, which does not conform to standards for use in concrete, hence is nearly completely landfilled, is used as-received or after grinding. 28-day compressive strengths surpassing 13 MPa and 20 MPa were recorded, for samples cured at 23 degrees C or at 80 degrees C. Various combinations of the two powders have heats of hydration lower than that of a typical Portland cement. Ettringite and CSH are determined to be responsible for the early and ultimate strength gain. The effect of adding gypsum to the system as a low-impact activator is also investigated. (C) 2016 Elsevier Ltd. All rights reserved.
机译:由于希望避免混合物中的波特兰水泥,粉煤灰和高炉矿渣的碱活化引起了人们的兴趣。报道了出色的机械性能和耐用性,但通常在活化剂用量高时会产生各种不利的环境影响,从而使减碳效益蒙上阴影。这项研究调查了使用矿渣和富含游离石灰和硫酸盐的高石灰粉煤灰相互活化的方法,使砂浆不掺入任何波特兰水泥或添加化学活化剂,但仍然有用。长处不符合用于混凝土的标准的灰烬因此几乎完全被填埋,可以直接使用或在研磨后使用。对于在23摄氏度或80摄氏度下固化的样品,记录的28天抗压强度超过13 MPa和20 MPa。两种粉末的各种组合的水化热均低于典型的波特兰水泥。钙矾石和CSH被确定是导致早期和最终强度增加的原因。还研究了向系统中添加石膏作为低冲击活化剂的效果。 (C)2016 Elsevier Ltd.保留所有权利。

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