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Use of Gypsum as a Preventive Measure for Strength Deterioration during Curing in Class F Fly Ash Geopolymer System

机译:在F级粉煤灰土聚合物系统中使用石膏作为固化过程中强度降低的预防措施

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This study discusses strength deterioration during the curing process of fly ash geopolymer and the use of CaSO4·2H2O (gypsum) as a deterioration remedy when the ash was synthesized using a 10M NaOH and Na-silicate solution. The strength decline was mainly due to the widespread formation of nanometer-sized cracks that were related to excessive Na and Si concentrations at an early age. Use of 2 wt% CaSO4·2H2O resulted in the best measured strength by temporarily reducing Na and Si concentrations; Na was absorbed by SO42−, up to 11% in the matrix within one day, and formed Na2SO4 (thenardite), which gradually dissolved over time, slowly releasing Na ions. However, more than 4% gypsum suppressed overall strength development because too many Na ions were locked into Na2SO4 and could not participate in geopolymerization. The addition of gypsum impeded glass dissolution and even halted the process when more than 4% gypsum was used.
机译:本研究探讨了粉煤灰地质聚合物固化过程中的强度劣化,以及使用CaSO 4 ·2H 2 O(石膏)作为灰烬合成灰烬时的劣化补救措施。 10M NaOH和硅酸钠溶液。强度下降主要是由于纳米裂纹的广泛形成,这与早期的Na和Si浓度过高有关。使用2 wt%的CaSO 4 ·2H 2 O可通过暂时降低Na和Si的浓度来获得最佳的测量强度。 Na被SO 4 2-吸收,一天之内在基质中的吸收率高达11%,并形成Na 2 SO 4 (钠长石),随着时间的流逝逐渐溶解,并缓慢释放Na离子。然而,超过4%的石膏抑制了整体强度的发展,因为太多的Na离子被锁定在Na 2 SO 4 中并且无法参与地聚。当使用超过4%的石膏时,添加石膏会阻碍玻璃的溶解,甚至停止该过程。

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