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首页> 外文期刊>Applied clay science >Potassium-rich biomass ashes as activators in metakaolin-based inorganic polymers
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Potassium-rich biomass ashes as activators in metakaolin-based inorganic polymers

机译:偏高岭土类无机聚合物中富含钾的生物质灰作为活化剂

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摘要

The use of biomass ashes as an alkaline activator in the synthesis of metakaolin-based inorganic polymers was investigated in the present work. Maize stalk and maize cob ashes reached the highest pH after mixing with water, 13-14, and contained the largest amount of potassium, 30-32 wt.% K2O. Of these two, the maize cob ashes showed a higher reactivity and reaction extent when mixed with water and metakaolin calcined at an optimized temperature of 700 degrees C A maximum reaction enthalpy of -372 J/g was reached with a mixture with an ash to metakaolin mass ratio of 0.9. In attenuated total reflection Fourier-transformed infrared spectroscopy, the wavenumber shift of the Si-O-T (T: Si, Al) stretching band upon activation proved to be linearly related to the compressive strength of pressed samples, cured with all surfaces exposed at 80 degrees C or 60 degrees C for 48 h. A maximum strength of 27 MPa and a wavenumber shift of the Si-O-T stretching band of 52 cm(-1) were observed for samples with a maize cob ash to metakaolin mass ratio of 0.9 cured with an open surface at 80 degrees C. This shift and increase in strength is explained by a larger reaction extent, which was also observed using calorimetric techniques, and confirmed by electron probe micro-analysis. The curing conditions were altered to optimize the microstructure. The temperature was lowered to 60 degrees C, the samples were wrapped in plastic to avoid water evaporation, or the samples were subjected to a pre-cure of 24 h at 20 degrees C before curing at 80 degrees C. The latter resulted in the maximum compressive strength of 40 MPa. (C) 2015 Elsevier B.V. All rights reserved.
机译:在本工作中,研究了在偏高岭土基无机聚合物的合成中使用生物质灰分作为碱性活化剂。与水混合后,玉米秸秆和玉米穗轴灰达到13-14的最高pH,并含有最大量的钾,即30-32 wt。%K2O。在这两种中,玉米穗轴灰与水和偏高岭土混合,在最佳温度700度CA下煅烧时,显示出更高的反应性和反应程度,灰分与偏高岭土质量的混合物达到-372 J / g的最大反应焓。比为0.9。在衰减的全反射傅立叶变换红外光谱中,激活后Si-OT(T:Si,Al)拉伸带的波数位移证明与压制样品的抗压强度呈线性关系,固化后的所有表面均暴露于80度或60摄氏度持续48小时。对于在80°C开放表面固化的玉米芯粉与偏高岭土质量比为0.9的样品,观察到最大强度为27 MPa,Si-OT拉伸带的波数移位为52 cm(-1)。较大的反应程度解释了位移的变化和强度的增加,这也可以通过量热技术观察到,并通过电子探针显微分析得到证实。改变固化条件以优化微观结构。将温度降至60摄氏度,将样品包裹在塑料中以避免水分蒸发,或者将样品在20摄氏度下进行24小时的预固化,然后在80摄氏度下固化。抗压强度为40 MPa。 (C)2015 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Applied clay science》 |2016年第1期|401-409|共9页
  • 作者单位

    Katholieke Univ Leuven, Dept Mat Engn, B-3001 Louvain, Belgium;

    Vrije Univ Brussel, Dept Mat & Chem, B-1050 Brussels, Belgium;

    Katholieke Univ Leuven, Dept Mat Engn, B-3001 Louvain, Belgium;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Geopolymer; Metakaolin; Biomass ashes; Calorimetry; ATR-FTIR; EPMA;

    机译:地质聚合物;高岭土;生物质灰;量热法;ATR-FTIR;EPMA;

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