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Geopolymer Development by Powders of Metakaolin and Wastes in Thailand

机译:泰国偏高岭土粉和废物粉开发地聚合物

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Geopolymer has been developed as an alternative material to Portland cement. Geopolymer is based on the polymerization of alkaline activation and oxide of silicon and aluminium. These oxides can be found in many pozzolanic materials such as metakaolin and the wastes from industries and agricultures in Thailand, e.g., fly ash, bagasse ash and rice husk ash. Pozzolanic materials were selected as source materials for making geopolymers into 4 different types. Sodium hydroxide concentration of 10 Molar (l0MNaOH) and sodium silicate (Na_2SiO_3) solutions were used as alkaline activators by the mass ratio of Na_2SiO_3/NaOH at 1.5. The mixtures were cast in 25×25×25 mm. cubes. After casting, the geopolymers were cured at 80°C for 24 hrs. in an oven and then at room temperature for 7 days. The pozzolanic materials effects, the Si/Al molar ratio and the Na/Al molar ratio were studied and characterized. An X-ray fluorescence (XRF) was chosen to determine the percentages of silica and alumina in order to verify the proper ratio of the fly ash, Rice husk ash, Bagasse ash and Metakaolin.The study also included the impact on mechanical and physical properties such as compressive strength, water absorption, density and porosity.
机译:地质聚合物已被开发为波特兰水泥的替代材料。地质聚合物基于碱性活化以及硅和铝的氧化物的聚合。这些氧化物存在于许多火山灰材料中,例如偏高岭土和泰国工业和农业产生的废物中,例如粉煤灰,蔗渣灰和稻壳灰。选择火山灰材料作为将地聚合物制成4种不同类型的原料。浓度为1.5的Na_2SiO_3 / NaOH的浓度为10摩尔的氢氧化钠(10MNaOH)和硅酸钠(Na_2SiO_3)溶液用作碱性活化剂。将混合物浇铸成25×25×25mm。立方体。铸造后,将地质聚合物在80°C下固化24小时。在烤箱中,然后在室温下放置7天。研究和表征了火山灰材料的影响,Si / Al摩尔比和Na / Al摩尔比。为了验证粉煤灰,稻壳灰,甘蔗渣灰和偏高岭土的适当比例,选择了X射线荧光(XRF)来确定二氧化硅和氧化铝的百分比,该研究还包括对机械和物理性能的影响。例如抗压强度,吸水率,密度和孔隙率。

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