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Effect of molar ratios on strength, microstructure & embodied energy of metakaolin geopolymer

机译:摩尔比对Metakaolin地质聚合物强度,微观结构和实施能的影响

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In this study, twenty-five geopolymer (GP) mixes were prepared by varying the alkaline solids to Metakaolin (MK) and sodium silicate to NaOH ratios from 0.1 to 0.5 and 0.2 to 1.0, respectively, thus giving a wide range of molar ratios of silica to alumina, sodium oxide to alumina and water to sodium oxide. The compressive strength of these GP mixes was determined for four curing schemes involving oven curing at 100?C for 24 h and three ambient curing with the curing ages of 3, 14, and 28 days. The test results revealed that for the manufacture of GP binder for structural applications of strength up to 90 MPa, the molar ratio of silica to alumina should be greater than 2.3, sodium oxide to alumina should be between 0.6 to 1.2, and water to sodium oxide should not exceed 12. The compressive strength of ambient cured GP mortar gets stabilized at 28 days of ambient curing. Experimental findings were also corroborated by GP microstructure analysis. The embodied energy of MK-based GP mortars, especially of high strength, is significantly less than the cement mortar of equivalent strength.
机译:在该研究中,通过将碱性固体(分别为NaOH比例为0.1至0.5和0.2-1.0,将碱性固体和硅酸盐和NaOH比例改变了25个地质聚合物(GP)混合物。从而提供了各种摩尔比二氧化硅到氧化铝,氧化钠与氧化铝和水至氧化钠。这些GP混合物的抗压强度用于四种固化方案,涉及在100℃下固化的四种固化方案24小时,并具有3,14和28天的固化剂的三个环境固化。测试结果表明,为了制造GP粘合剂的强度高达90MPa的结构,二氧化硅与氧化铝的摩尔比应大于2.3,氧化钠应在0.6-1.2之间,水至氧化钠。不应超过12.环境固化的GP砂浆的抗压强度在28天的环境固化下稳定。通过GP微结构分析还具有实验结果。基于MK的GP砂浆的体现能量,特别是高强度,显着小于当量强度的水泥砂浆。

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