砂中硫酸盐对偏高岭土聚合物砂浆抗压强度的影响

Sara Thamer, Layth A. Al- Jaberi
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引用次数: 0

摘要

在建筑材料工业中,水泥替代品的进步是可持续发展的基础。地聚合物是普通硅酸盐水泥的最佳替代品,其产生的二氧化碳排放量比普通硅酸盐水泥少80%。以偏高岭土为原料进行地聚合。本研究考察了每摩尔浓度NaOH中三种不同的硫酸盐(0.00038、1.532和16.24)%的含量对偏高岭土基地聚合物砂浆(MK-GPM)抗压强度的影响。制备了两种不同摩尔浓度(8M和12M)的样品,并在室温下固化。当硫酸盐含量较低(0.00038%),浓度为12M时,28 d的抗压强度最高(56.98MPa)。此外,砂中硫酸盐含量的增加与(MK-GPM)抗压强度值呈反比关系。28天的抗压强度降低幅度较大(每8M/NaOH降低60.88%),每12M/NaOH降低62.23%),砂中SO3的含量较高(16.24%)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of Sulfate in the Sand on the Compressive Strength of Metakaolin-Based Geopolymer Mortar
The advancement of cement alternatives in the construction materials industry is fundamental to sustainable development. Geopolymer is the optimal substitute for ordinary Portland cement, which produces 80% less CO2 emissions than ordinary Portland cement. Metakaolin was used as one of the raw materials in the geopolymerization process. This research examines the influence of three different percentages of sulfate (0.00038, 1.532, and 16.24) % in sand per molarity of NaOH on the compressive strength of metakaolin-based geopolymer mortar (MK-GPM). Samples were prepared with two different molarities (8M and 12M) and cured at room temperature. The best compressive strength value (56.98MPa) was recorded with 12M with lower sulfate content (0.00038%) at 28 days. Also, an inverse relationship is recorded between the increasing sulfate percentages in the sand and the compressive strength values of (MK-GPM). A higher reduction in the compressive strength results at 28 days (60.88% per 8M/NaOH) and (62.23% per 12M/NaOH) was associated with a higher percentage of SO3 in the sand (16.24%).
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