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Calcined Kaolin Geopolymeric Powder: Influence of Water-togeopolymeric Powder Ratio

机译:煅烧高岭土地区聚合物粉末:水 - 辛聚酰胺粉末的影响

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This paper describes the synthesis of calcined kaolin geopolymeric powder from the alkaline activation of calcined kaolin followed by solidification and pulverizing process. The geopolymeric powder was used by just adding water to produce resulted geopolymer paste. In this paper, the effect of water-to-geopolymeric powder ratios on the properties of the resulted geopolymer paste was studied. This water-to-geopolymer powder ratio was similar to that of water-to-cement ratio in the case of ordinary Portland cement (OPC). However, the concept used here was based on geopolymerization process. The compressive strength, setting time and SEM analysis of the resulted geopolymer pastes were conducted. Highest strength was achieved at water-to-geopolymer powder ratio of 0.22. The resulted geopolymer paste could be handled up to 120 minutes and reached final setting after about 4 hours of setting. Microstructure showed the formation of geopolymeric gel after the addition of water to the geopolymeric powder.
机译:本文描述了来自煅烧高岭土的碱性活化的煅烧高岭土地壤膜的合成,然后凝固和粉碎方法。通过加入水以产生所产生的地缘聚合物浆料,使用地缘聚合物粉末。本文研究了水 - 地聚合物粉末比对所得地缘聚合物浆料性能的影响。这种水 - 地质粉末比与普通波特兰水泥(OPC)的水 - 水泥比相似。然而,这里使用的概念是基于地缘聚合物化过程。进行了所得地缘聚合物浆料的抗压强度,设定时间和SEM分析。在水 - 地缘聚合物粉末比为0.22的水中实现了最高强度。所产生的地缘聚合物浆料可以在约12小时后处理最多120分钟,并在约4小时后达到最终设置。微观结构显示在加入水中后聚酯凝胶的形成到地产聚物粉末之后。

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