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Research on the mechanical properties and mechanism of alkali-activated saline soil composite materials

机译:碱活性盐水复合材料的力学性能及机理研究

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Saline soils, which are mainly found in the arid/semi-arid climatic areas and coastal regions, are widespread all of the world, having limited potential for cultivation. This paper presents a study explored an alternative way by using alkali activated saline soil combined with fly ash to form geopolymer to develop the building materials with ultra-low embodied energy and CO2 for sustainable construction. The properties of the alkali-activated geopolymer made with saline soil-fly ash combination were evaluated. With the study on the effects of the mix proportions and process technics, the production of the geopolymer was optimised. The study indicates that the ideal conditions for the dissolution of SiO2 and Al2O3 were 10 M NaOH at 60 degrees C for 24 hours. The saline soil-fly ash combination has good physical and mechanical properties and durability, which were increased with the fly ash content from 20% to 60%. XRD, FTIR and SEM were applied to analyse the reaction mechanism and microstructures of the alkali-activated saline soil-fly ash system. After alkali-activation, depolymerisation and reconstruction of the activated silicate and aluminate formed zeolite-liked gel products and generated aluminium silicate network structures, which is the key for the performance of the material obtained. The microstructure of product varied with the fly ash content in the system, affecting the density of the products.
机译:盐水土壤主要发现,主要发现在干旱/半干旱气候和沿海地区,普遍存在世界上,具有有限的培养潜力。本文提出了一项研究通过使用碱性活性盐水土壤与粉煤灰结合形成地质聚合物的替代方法,以形成具有超低实施能量和二氧化碳的建筑材料,可持续建设。评估了用盐水粉煤灰组合制备的碱活化的地质聚合物的性质。通过研究混合比例和工艺技术的影响,优化了地质聚合物的生产。该研究表明,在60℃下,SiO 2和Al2O3溶解的理想条件为10m NaOH 24小时。盐水土蝇灰组合具有良好的物理和机械性能和耐久性,其粉煤灰含量增加到20%至60%。 XRD,FTIR和SEM被应用于分析碱活性盐水土 - 粉煤灰系统的反应机理和微观结构。在碱活化后,活化硅酸盐的解聚和重建和铝酸盐形成沸石 - 喜欢的凝胶产物,并产生铝硅酸铝网络结构,这是所获得的材料性能的关键。产品的微观结构随系统的粉煤灰含量而变化,影响产品的密度。

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