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Activation of fly ash/cement systems using calcium sulfate anhydrite (CaSO4)

机译:使用无水硫酸钙(CaSO4)活化粉煤灰/水泥系统

摘要

A number of studies had been conducted on the activation of fly ash using gypsum and sodium sulfate. Anhydrite, another form of calcium sulfate, has not been used for this purpose. This paper presents an exploratory study on the effectiveness of anhydrite in activating fly ash cement systems. Anhydrite (10%) was added into cement mortars with up to 55% fly ash replacement. The prepared mortars were allowed to cure in steam at 65°C for 6 h before normal room temperature water curing. Significant strength increases (up to 70%) compared to the control mortars were observed as early as after 3 days curing. Improvements in the pore size distribution of the mortars were also observed due to the activation. The results of scanning electron microscopy (SEM) examination and quantitative X-ray diffraction (XRD) analysis show that, with accelerated curing, a large quantity of ettringite (AFt) was formed during the early stage of hydration of the anhydrite-activated fly ash cement pastes. This might be the main cause of the high early strength of the activated fly ash cement systems. A comparison was made using anhydrite and gypsum as activators. For an equivalent SO3 content, anhydrite is more effective in increasing the early-age strength of the cement/fly ash mortars, but less effective in increasing the later-age strength than gypsum.
机译:已经进行了关于使用石膏和硫酸钠活化飞灰的许多研究。硬石膏是硫酸钙的另一种形式,尚未用于此目的。本文提出了硬石膏在活化粉煤灰水泥体系中有效性的探索性研究。将硬石膏(10%)添加到水泥砂浆中,最多可替代55%的粉煤灰。在正常的室温水固化之前,将制备好的灰浆在65°C的蒸汽中固化6小时。早在固化三天后,就观察到与对照砂浆相比强度显着提高(高达70%)。由于活化,还观察到了灰浆的孔径分布的改善。扫描电子显微镜(SEM)检查和定量X射线衍射(XRD)分析的结果表明,随着固化的加速,在硬石膏活化的粉煤灰水化的早期阶段会形成大量的钙矾石(AFt)。水泥浆。这可能是活性粉煤灰水泥系统早期强度高的主要原因。使用硬石膏和石膏作为活化剂进行了比较。对于相等的SO3含量,无水石膏在提高水泥/粉煤灰砂浆的早期强度方面更有效,但在提高后期强度方面不如石膏有效。

著录项

  • 作者

    Poon CS; Kou SC; Lam L; Lin ZS;

  • 作者单位
  • 年度 2001
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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