EFFECT OF CALCIUM ADDITION ON THE PROPERTIES AND MICROSTRUCTURE OF FLY ASH-BASED GEOPOLYMERS FOR APPLICATIONS IN SUSTAINABLE CONSTRUCTIONE

N. Klimenko, K. I. Kiseleva, L. Delitsyn, V. Sigaev
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Abstract

The article describes a study of the physical and mechanical properties and microstructure of geopolymer materials for construction based on low-calcium fly ash from CHP-22, depending on the type of activator, temperature and humidity conditions of curing and the introduction of an additional source of calcium (CaO) in the amount of 10, 15 and 20 wt. %. It was found that for the fly ash under study, the most promising type of activator is a sodium silicate solution with a silicate modulus SiO2 / Na2O = 1; the preferred curing mode is steam treatment at 90 °C. With the introduction of 15 % CaO into the geopolymer mixture, it was possible to increase the compressive strength by more than 2.5 times (to 38 МПа), the open porosity decreased from 24 to 7 %, and the water absorption from 15 to 3 %. However, a further increase in the CaO content leads to degradation of properties due to a significant reduction in the setting time of the raw mixture.
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掺钙对可持续建筑用粉煤灰基地聚合物性能和微观结构的影响
本文描述了一项基于CHP-22低钙粉煤灰的建筑用地聚合物材料的物理力学性能和微观结构的研究,这取决于活化剂的类型、养护的温度和湿度条件以及添加10%、15%和20%重量%的钙(CaO)的额外来源。研究发现,对于所研究的粉煤灰,最有前途的活化剂是硅酸盐模量SiO2 / Na2O = 1的水玻璃溶液;优选的固化方式为90℃的蒸汽处理。在地聚合物混合物中加入15%的CaO,可以将抗压强度提高2.5倍以上(达到38 МПа),开放孔隙率从24%降至7%,吸水率从15%降至3%。然而,由于原料混合物凝固时间的显著减少,CaO含量的进一步增加会导致性能的退化。
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