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Potential of Using Industrial Wastes for Production of Geopolymer Binder as Green Construction Materials

机译:使用工业废物的潜力,用于生产地缘聚合物粘合剂作为绿色建筑材料

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Rice husk ash, Municipal Solid Incineration Ash and coal fly ash was served as aluminosilicate precursor in synthesis of one-part alkali activated geopolymer binder. These by-products industrial wastes were subjected to physio-chemical processing of materials (mechanochemical synthesis) together with different naturally originated sources of alkaline earth metal cations into one-part alkali activated (geopolymer) binder binders. The binder of hydraulic binders was assessed based on their strength development attributes and morphology with respect to silica content, diffusion of Calcium ions and compositions of Alkali activator. The particle size distribution, the chemical composition, mineralogy, bond environment, of binder particles and effective immobilization of heavy metals of hydrated binder pastes were also inspected. The results highlighted that the ternary blend of combustion ashes to produce hydraulic binders with strength development qualities and safe disposal as material for building construction. (C) 2019 Elsevier Ltd. All rights reserved.
机译:稻壳灰,城市固体焚烧灰和煤粉煤灰作为合成单部分碱活化的地质聚合物粘合剂的铝硅酸盐前体。这些副产品的产业废物与材料(机械化学合成)的物理化学加工以及不同的天然源地金属阳离子的不同源自源自碱活性(Geopolymer)粘合剂粘合剂。基于它们的强度发展属性和相对于二氧化硅含量,钙离子的扩散和碱活化剂的组合物来评估液压粘合剂的粘合剂。还检查了粒度分布,化学成分,矿物学,粘合环境,粘合剂颗粒和有效固定的水合粘合剂浆料的重金属的固定化。结果突出显示,燃烧灰烬的三元共混物生产具有强度发展品质和安全处置作为建筑结构的液压粘合剂。 (c)2019 Elsevier Ltd.保留所有权利。

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