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首页> 外文期刊>Journal of thermal analysis and calorimetry >Properties and performance of metakaolin pozzolanic cement pastes
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Properties and performance of metakaolin pozzolanic cement pastes

机译:Metakaolin Pozzolanic水泥浆料的性能和性能

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Abstract Cement industry produces the 7% of the global CO2 emission. The most effective way to decrease CO2 emission of cement industry is the substitution of a proportion of cement with supplementary cementing materials. Metakaolin (MK) is a silica-based product that, on reaction with Ca(OH)2 (CH), produces C–S–H gel at ambient temperature. MK also contains alumina that reacts with CH to produce additional alumina-containing phases, including C4AH13, C2ASH8 and C3AH6. The aim of our research is to investigate the effect of MK up to 20?mass% substitutions of OPC on the hydration characteristics of MK-blended cement pastes. The physico-chemical properties of the hardened cement pastes were studied up to 90?days of hydration. The hydration products of some selected samples were investigated using XRD, DTA and TG techniques. The results indicated that substitution of up to 20?mass% OPC by MK as a 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, durability properties as well as performance of MK pozzolanic cement pastes.]]>
机译:<![cdata [<标题>抽象 ara id =“par1”>水泥行业产生全局CO <下标> 2 发射的7%。降低CO <下标> 2 水泥行业排放的最有效的方法是用补充胶结材料替换一部分水泥。 Metakaolin(MK)是一种基于二氧化硅的产物,即在与Ca(OH)<下标> 2 (CH)的反应中,在环境温度下产生C-S-H凝胶。 MK还含有氧化铝,其与CH反应以产生含有额外的含氧氧化铝相,包括C <下标> 4 ,C <下标> 2 ASH <下标> 8 和c <下标> 3 ah 6 。我们的研究目的是探讨MK高达20μm的影响OPC对MK共混水泥浆料的水化特性的影响。研究了硬化水泥浆料的物理化学性质,高达90℃的水合。使用XRD,DTA和TG技术研究一些选定样品的水合产物。结果表明,通过MK取代高达20μl质量%的OPC作为火山灰材料导致了一致性的标准水的增加,初始凝固时间的加速度,更高的脉冲强度值和机械的改善,耐久性和MK Pozzolanic水泥浆料的性能。]]>

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