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The hydration of slag, part 1: reaction models for alkali-activated slag

机译:矿渣的水化,第1部分:碱活化矿渣的反应模型

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摘要

Reaction models are proposed to quantify the hydration products and to determine the composition of C–S–H from alkali-activated slags (AAS). Products of the slag hydration are first summarized from observations in literature. The main hydration products include C–S–H, hydrotalcite, hydrogarnet, AFm phases (C4AH13 and C2ASH8) and ettringite. Then, three stoichiometric reaction models are established correlating the mineral composition of slag (the glass part) with the hydration products. Using the proposed models, quantities of hydration products and composition of C–S–H are determined. The models are validated with a number of experimental investigations reported in literature, yielding good agreement, i.e., these models can successfully predict the hydration reaction of AAS. The models are furthermore applied to calculate the retained water in the hydration products of AAS in different hydration states and a general hydration equation of AAS is derived. As an illustration to one of the model applications, chemical shrinkage of the AAS cement paste in different hydration states are predicted. The chemical shrinkage of AAS is shown to be remarkably higher than OPC. Furthermore, phase distribution in the hardened AAS paste and the porosity are calculated.
机译:提出了反应模型以量化水合产物并确定碱活化矿渣(AAS)中C–S–H的组成。炉渣水合的产物首先从文献观察中总结出来。主要的水合产物包括C–S–H,水滑石,水石榴石,AFm相(C4 AH13 和C2 ASH8 )和钙矾石。然后,建立了三个化学计量反应模型,将炉渣(玻璃部分)的矿物成分与水合产物相关联。使用建议的模型,可以确定水合产物的量和C–S–H的组成。通过文献报道的大量实验研究验证了该模型,产生了良好的一致性,即,这些模型可以成功预测AAS的水合反应。将该模型用于计算不同水化状态下AAS水化产物中的残留水,并推导了AAS的一般水化方程。作为模型应用之一的例证,预测了在不同水化状态下AAS水泥浆的化学收缩。 AAS的化学收缩率明显高于OPC。此外,计算了硬化AAS糊中的相分布和孔隙率。

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  • 来源
    《Journal of Materials Science 》 |2007年第2期| 428-443| 共16页
  • 作者

    W. Chen; H. J. H. Brouwers;

  • 作者单位

    Construction Management ampamp Engineering Department of Civil Engineering Faculty of Engineering Technology University of Twente P.O. Box 217 Enschede 7500 AE The Netherlands;

    Construction Management ampamp Engineering Department of Civil Engineering Faculty of Engineering Technology University of Twente P.O. Box 217 Enschede 7500 AE The Netherlands;

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