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Efflorescence control in geopolymer binders based on natural pozzolan

机译:基于天然火山灰的地聚合物粘合剂的起花控制

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This paper addresses methods to reduce efflorescence in a geopolymer binder based on a pumice-type natural pozzolanic material from Taftan, Iran. Geopolymer pastes samples are analyzed for compressive strength and efflorescence formation after curing at 95% humidity for 28 days. To reduce the extent of efflorescence, Al-rich mineral admixtures such as metakaolin, ground granulated blast-furnace slag, and three types of calcium aluminate cements are incorporated into the dry binder at a range of concentrations. Hydrothermal curing at elevated temperatures also shows a positive effect in efflorescence reduction. Calcium aluminate cements show the greatest effect in efflorescence reduction, which is attributed to their dissolution in alkaline media releasing high amounts of alumina into the aluminosil-icate geopolymer gel. These results confirm that it is possible to develop a more reliable geopolymer binder with improved properties either by adding a suitable amount of active alumina to precursors such as natural pozzolan, or by manipulating the curing conditions to enhance alumina release from less-reactive precursor phases.
机译:本文探讨了基于伊朗塔夫坦浮石型天然火山灰材料降低地聚合物粘合剂中风化的方法。在95%湿度下固化28天后,分析了地质聚合物糊料样品的抗压强度和形成的风化。为了减少风化程度,将富含高铝的矿物掺合料(如偏高岭土,磨碎的高炉矿渣和三种类型的铝酸钙水泥)以一定范围的浓度掺入干燥的粘结剂中。高温下的水热固化也显示出减少风化的积极作用。铝酸钙水泥在减少风化方面显示出最大的效果,这归因于它们在碱性介质中的溶解,从而将大量的氧化铝释放到铝硅酸盐地质聚合物凝胶中。这些结果证实,通过将适量的活性氧化铝添加到诸如天然火山灰的前体中,或者通过控制固化条件以增强从反应性较低的前体相中释放氧化铝,有可能开发出具有改善的性能的更可靠的地质聚合物粘合剂。

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