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Alkali-activated binders based on ground granulated blast furnace slag and phosphogypsum

机译:基于地面粒状高炉渣和磷酸缺口的碱活化粘合剂

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The effect of phosphogypsum (PG) in alkali-activated ground granulated blast furnace slag (GGBFS) on the reactivity, strength development and final matrix properties was investigated, as a function of alkali activator. The results were compared with alkali-activated reference samples from GGBFS. PG completely dissolves and takes part in solid reaction product formation. Upon PG incorporation, portlandite and ettringite are initially formed after dissolution. The hardened binder consists mainly of amorphous hydration products, intermixed with thenardite and minor amounts of secondary gypsum and merwinite. PG incorporation resulted in faster initial and delayed final setting time, while it enhanced the compressive strength and amorphous phase development when sodium hydroxide was used. PG gave rise to a decrease of Al/Si and Ca/Si ratios in the C-A-S-H gels and a higher polymerized network. (C) 2019 Elsevier Ltd. All rights reserved.
机译:研究了磷酸缺口(PG)在碱活化地粒状高炉炉渣(GGBF)对反应性,强度显影和最终基质特性的影响,作为碱活化剂的函数。将结果与来自GGBFs的碱活化的参考样品进行比较。 PG完全溶解并参与固体反应产物形成。在PG掺入时,溶解后最初形成波特兰石和Ettringite。淬硬粘合剂主要由非晶水合作用品组成,与单打和少量的二级石膏和Merwinite混合。 PG掺入导致初始和延迟的最终设定时间更快,而当使用氢氧化钠时,它增强了抗压强度和无定形相显性。 PG在C-A-S-H凝胶和更高的聚合网络中产生了Al / Si和Ca / Si比率的降低。 (c)2019 Elsevier Ltd.保留所有权利。

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