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Influence of source materials and the role of oxide composition on the performance of ternary blended sustainable geopolymer mortar

机译:原料和氧化物成分对三元混合可持续地质聚合物砂浆性能的影响

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This research article reports the contribution of different oxides present in rice husk ash (RHA), ground granulated blast furnace slag (GGBS) and metakaolin (MK) on the performance of geopolymer mortars. Twenty-six mixes were designed with combined base materials and varied NaOHaq concentration, that was used as one of the activators. RHA, GGBS and MK contents were varied between 15% and 70%, 0% and 75%, and 0% and 40%, respectively. The binder/fine aggregate, water/binder and alkaline activator/binder ratios were kept constant while all the specimens were cured at 65 degrees C for 24 h. The mixture (ternary) that contained 25% RHA, 25% MK and 50% GGBS (M(25)R(25)G(50)) produced the highest compressive strength of 48 MPa; in addition, it produced better flow rate and lower density than any binary combinations. The findings through microstructural and characterization tools show that regardless of the source, SiO2 and CaO present in the base materials contributed to the strength, while Al2O3 influenced the amorphorsity of the products. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这篇研究文章报道了稻壳灰(RHA),磨碎的高炉矿渣(GGBS)和偏高岭土(MK)中存在的不同氧化物对地质聚合物砂浆性能的影响。设计了26种混合物,其中使用了混合的基础材料和不同的NaOHaq浓度,将其用作活化剂之一。 RHA,GGBS和MK含量分别在15%和70%,0%和75%,0%和40%之间变化。粘合剂/细骨料,水/粘合剂和碱性活化剂/粘合剂的比例保持恒定,而所有样品均在65摄氏度下固化24小时。包含25%RHA,25%MK和50%GGBS(M(25)R(25)G(50))的混合物(三元态)产生的最高抗压强度为48 MPa;此外,与任何二元组合相比,它产生的流速更高,密度更低。通过微结构和表征工具的发现表明,无论来源如何,存在于基材中的SiO2和CaO都有助于强度,而Al2O3会影响产品的非晶性。 (C)2017 Elsevier Ltd.保留所有权利。

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