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Strength and Microstructural Properties of Mortar Containing Soluble Silica from Sugarcane Bagasse Ash

机译:甘蔗砂浆中砂浆的强度和微观结构性能甘蔗

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Sugarcane bagasse is among the abundantly available waste in agriculture industry. The proportion of siliceous ashes after the incineration process is one of the attractive features in sugarcane bagasse. However, its low bulk density would result in an additional issue for further use as cement replacement material, since higher replacement volume will bring more hydrophilic particles of sugarcane bagasse ash into the mixture. Therefore this research aims to extract the reactive silica from sugarcane bagasse ash and increase its bulk density by converting it into soluble form. The process was divided into three stages, which were pre-treatment and incineration of sugarcane bagasse, conversion into soluble form, and production of mortar specimen. Soluble silica from sugarcane bagasse ash was used to partially replace cement content in mortar, hence its effect on the hydration process can be evaluated. Compression test and scanning electron microscope analysis were performed to observe its effect on the strength and microstructural development of mortar framework. The results show that the inclusion of soluble silica would enhance the early hydration rate and improve the consolidation of cement matrix via additional calcium silicate hydrate formation, which would increase the capability of internal mortar framework to distribute loads and achieve higher strength.
机译:Sugarcane Bagasse是农业产业中的丰富浪费。焚烧过程后硅质灰的比例是甘蔗甘蔗棒中有吸引力的特征之一。然而,其低批量密度会导致进一步用作水泥替代材料的额外问题,因为更高的替代体积将使甘蔗甘蔗酸灰的更多亲水颗粒进入混合物中。因此,该研究旨在通过将其转化为可溶性形式,从甘蔗囊灰灰萃取反应性二氧化硅并增加其堆积密度。该过程分为三个阶段,这是预处理和甘蔗渣的焚烧处理,转化成可溶形式,和生产砂浆试样。来自甘蔗的可溶性二氧化硅用于部分代替砂浆中的水泥含量,因此可以评估其对水合过程的影响。进行压缩试验和扫描电子显微镜分析以观察其对砂浆框架的强度和微观结构的影响。结果表明,可溶性二氧化硅的夹杂物将增强早期水化率,提高通过附加硅酸钙水合物的形成,这将增加内部砂浆框架的能力以分散负载并实现更高的强度水泥基体的合并。

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