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The influence of the NaOH solution on the properties of the fly ash-based geopolymer mortar cured at different temperatures

机译:NaOH溶液对不同温度下固化的粉煤灰基聚合物砂浆性能的影响

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In this study, geopolymer mortar was produced using Class F fly ash from the thermal power plant in Kuetahya Seyitoemer (Turkey). The changes caused by the geopolymerization on the properties of the final product were investigated by applying curing on geopolymer mortars in different NaOH concentrations at different temperatures and for different curing times. The purpose of this process was to determine the relationship between alkali solution concentration, curing temperature and curing time. In order to determine the effect of NaOH concentration on geopolymer mortars, three different molarities of NaOH concentrations (3 M, 6 M and 9 M) were used together with sodium silicate (water glass) solution. The samples were cured at two different temperatures (65 and 85 ℃). Physical properties such as porosity, bulk density, apparent density and water absorption, and mechanical properties such as flexural strength and compressive strength were determined from the 7-day geopolymer mortar samples after the curing process. As a result, this study determined that curing temperature and curing time had an effect on the physical properties of the geopolymer mortars. It was observed that NaOH concentration had a clear effect on the properties of the mortar cured at 85 ℃. Compressive strength values of 21.3 MPa and 22 MPa were obtained from the mortar of 6 M concentration cured at 65 ℃ for 24 h and from a sample of the same mortar cured at 85 ℃, respectively. Compressive strength values of the geopolymer mortars cured at 85 ℃ increased depending on the curing time and the increase in NaOH concentration. Given the strength values obtained, the optimal thermal curing temperature and the optimal NaOH concentration were 85 ℃ and 6 M, respectively.
机译:在这项研究中,地聚合物砂浆是使用来自Kuetahya Seyitoemer(土耳其)的热电厂的F级粉煤灰生产的。通过在不同的NaOH浓度,不同的固化时间,不同的NaOH浓度下对地质聚合物砂浆进行固化,研究了由地质聚合引起的最终产品性能的变化。该过程的目的是确定碱溶液浓度,固化温度和固化时间之间的关系。为了确定NaOH浓度对地质聚合物砂浆的影响,将三种不同摩尔浓度的NaOH浓度(3 M,6 M和9 M)与硅酸钠(水玻璃)溶液一起使用。样品在两个不同的温度(65和85℃)下固化。在固化过程后,由7天的地质聚合物砂浆样品确定了物理性能(如孔隙率,堆积密度,表观密度和吸水率)以及机械性能(如弯曲强度和抗压强度)。结果,该研究确定固化温度和固化时间对地质聚合物砂浆的物理性能有影响。观察到NaOH浓度对85℃固化的砂浆性能有明显影响。从65℃固化24h的6 M浓度砂浆和85℃固化的相同砂浆样品分别获得21.3 MPa和22 MPa的抗压强度值。在85℃固化的土工聚合物砂浆的抗压强度值随固化时间和NaOH浓度的增加而增加。根据获得的强度值,最佳热固化温度和最佳NaOH浓度分别为85℃和6M。

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