首页> 外文期刊>Industrial and organizational psychology >Alkali Activation of Waste Clay Bricks: Influence of The Silica Modulus, SiO2/Na2O, H2O/Na2O Molar Ratio, and Liquid/Solid Ratio
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Alkali Activation of Waste Clay Bricks: Influence of The Silica Modulus, SiO2/Na2O, H2O/Na2O Molar Ratio, and Liquid/Solid Ratio

机译:废粘土砖的碱活化:二氧化硅模量,SiO2 / Na 2 O,H 2 O / Na 2 O摩尔比的影响和液/实线

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摘要

This study was conducted to investigate the influence of various reaction conditions, namely the silica modulus SiO2/Na2O, H2O/Na2O molar ratio, and liquid/solid ratio on the geopolymerization reaction of the waste fired clay bricks (Grog). The starting raw material and the generated geopolymer specimens produced by different geopolymerization reaction conditions have been characterized using different techniques: X-ray diffraction (XRD), Fourier-transform infrared spectroscopy (FTIR), scanning electron microscope (SEM) and thermal analysis. Furthermore, physico-mechanical characterization has been carried out through the determination of bulk density, porosity, water absorption, and compressive strength for each sample at interval curing times of up to 28 days. The results indicated that the geopolymerization system of the waste fired clay bricks is influenced by the investigated reaction conditions at room temperature. The compressive strength of the geopolymer sample produced at optimum conditions increased significantly by up to 37.5 MPa, in comparison with 4.5 MPa for other conditions. Finally, an optimum recommendation and useful conclusions concerning the recycling and utilization of this waste material through the geopolymerization process are made for compatibility with construction applications.
机译:进行该研究以研究各种反应条件,即二氧化硅模量SiO 2 / Na 2 O,H 2 O / Na 2 O摩尔比和液体/实线对废物燃烧粘土砖(Grog)的地质聚合物化反应的影响。使用不同的技术:X射线衍射(XRD),傅里叶变换红外光谱(FTIR),扫描电子显微镜(SEM)和热分析,已经表征了不同的地质聚合物化反应条件产生的起始原料和产生的产生的地质聚合物样本。此外,通过测定堆积密度,孔隙率,吸水性和每个样品的抗压强度,在最多28天的间隔固化时间中测定堆积密度,孔隙率,吸水性和抗压强度进行了物理机械表征。结果表明,废物烧结粘土砖的地质聚合体系受室温下研究的反应条件的影响。与4.5MPa用于其他条件,最佳条件下产生的地质聚合物样品的抗压强度显着增加至多37.5MPa。最后,通过地质聚合物化方法进行了关于回收利用该废料的最佳推荐和有用的结论,用于与施工应用相容。

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