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Hydration and characteristics of metakaolin pozzolanic cement pastes

机译:偏高岭土火山灰水泥浆的水化特性

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The industrial area produces lots of solid waste materials with CO2emission. One of the most effective ways to solve these problems is the utilization of these waste materials. The production process of cements from its raw materials produces a lot of CO2. The most effective way to decrease CO2emission of cement industry is the substitution of a proportion of cement with supplementary cementing materials. Cement blended with metakaolin (MK) is also required as a countermeasure to reduce the amount of CO2generation. Metakaolin (MK), Al2Si2O7, is a highly amorphous dehydration product of kaolinite, Al2(OH)4Si2O5. The aim of our research was to investigate the effect of up to 20wt% substitutions of OPC by MK on the hydration characteristics of MK-blended cement pastes. The physico-chemical properties of the hardened cement pastes were studied up to 90days of hydration. The hydration products of some selected samples were investigated using XRD, DTA and DTG techniques. The results indicated that substitution of up to 20wt% OPC by MK as pozzolanic materials resulted in an increase in the standard water of consistency, acceleration of the initial setting times, high compressive strength values at earlier ages and improvement of the mechanical and durability properties.
机译:工业区产生大量的固体废物,并排放二氧化碳。解决这些问题的最有效方法之一是利用这些废料。从其原料生产水泥的过程中会产生大量的二氧化碳。减少水泥工业二氧化碳排放的最有效方法是用辅助胶结材料代替一定比例的水泥。还需要将水泥与偏高岭土(MK)混合作为减少CO2产生量的对策。偏高岭土(MK)Al2Si2O7是高岭土Al2(OH)4Si2O5的高度无定形脱水产物。我们的研究目的是研究高达20wt%的MK取代OPC对MK混合水泥浆水化特性的影响。研究了水化90天后硬化水泥浆的理化性质。使用XRD,DTA和DTG技术研究了一些选定样品的水合产物。结果表明,用MK代替高达20wt%的OPC作为火山灰材料,可以提高标准水的稠度,加快初始凝固时间,提高早期抗压强度值并改善机械性能和耐久性。

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