Wang Yiren, Zhang Jiangtao, Liu Jie, Fan Deke, Qu Haiyang, Zhou Lingzhu, Zheng Sen
School of Environment and Civil Engineering, Dongguan University of Technology & Guangdong Provincial Key Laboratory of Intelligent Disaster Prevention and Emergency Technologies for Urban Lifeline Engineering, Dongguan 523808, China.
China Building Materials Academy, CNBM Zhongyan Technology Co., Ltd., Beijing 100024, China.
Materials (Basel). 2024 Apr 29;17(9):2087. doi: 10.3390/ma17092087.
Metakaolin-based geopolymers have substantial potential as replacements for cement, but their relatively inferior mechanical properties restrict their application. This paper aims to enhance the mechanical properties of metakaolin-based geopolymers by incorporating appropriate amounts of calcium sources. CaCO, Ca(OH), and CaSO are three types of calcium sources commonly found in nature and are widely present in various industrial wastes. Thus, the effects of these three calcium sources on the performance of metakaolin-based geopolymers were studied. Through the analysis of the mechanical properties, heat-release behavior during hydration, hydration products, and microstructure of geopolymers, the effectiveness of the aforementioned calcium sources in improving the performance of metakaolin-based geopolymer was evaluated, and the mechanisms of action were elucidated. The results indicate that the pozzolanic reaction between CH and MK could promote MK hydration and increase the proportion of CASH gel in the hydration products, thereby facilitating the setting of the geopolymer and enhancing its strength. CS could react with the active aluminates in MK to form ettringite, thus forming a higher early strength. CC had a lower reactivity with MK and does not improve the performance of MK-based geopolymers.
偏高岭土基地质聚合物作为水泥替代品具有巨大潜力,但其相对较差的力学性能限制了其应用。本文旨在通过掺入适量钙源来提高偏高岭土基地质聚合物的力学性能。CaCO₃、Ca(OH)₂和CaSO₄是自然界中常见的三种钙源,广泛存在于各种工业废弃物中。因此,研究了这三种钙源对偏高岭土基地质聚合物性能的影响。通过对地质聚合物的力学性能、水化过程中的放热行为、水化产物和微观结构进行分析,评估了上述钙源在改善偏高岭土基地质聚合物性能方面的有效性,并阐明了其作用机理。结果表明,CH与MK之间的火山灰反应可促进MK水化,提高水化产物中CASH凝胶的比例,从而促进地质聚合物的凝结并提高其强度。CS可与MK中的活性铝酸盐反应生成钙矾石,从而形成较高的早期强度。CC与MK的反应活性较低,不能改善MK基地质聚合物的性能。